Skip to main content

Ethnobotanical study of wild edible plants in Dibatie district, Metekel zone, Benishangul Gumuz Regional State, western Ethiopia

Abstract

Background

Plants deliver livelihood and food for millions of people in the world. Indeed, wild edible plants support rural communities in developing countries to overcome seasonal unfavorable conditions. In rural areas of Ethiopia, wild edible plants play an indispensable role in fighting food insecurity as emergency or supplementary foods. Hence, this research was aimed at studying the ethnobotanical assessment of wild edible plants in Dibatie district, Metekel zone, western Ethiopia.

Methods

Ethnobotanical data was collected using a semi-structured interview, field observation, focus group discussions, a market survey, and the ranking of selected plants. Besides, voucher specimens were collected and stored at the National Herbarium of Ethiopia. Descriptive statistics, preference ranking, direct matrix ranking, and familiarity index were computed for data analysis.

Results

This study has documented 54 wild edible plant species belonging to 33 plant families and 46 genera. Of these, most (38.90%) had tree growth habits. Wild edible plants bear mostly fruits (72.20%) as edible parts. Local people usually consume these plants freshly raw as complementary foods, though some wild edibles require processing. They were mostly harvested in the January (31.48%) and May (27.78%) months, with the least collected in September (7.41%). Most wild edible plants (78.57%) were available in uncontrolled habitats, while others (21.43%) live in farmlands, home gardens, and as live fences. Out of the recorded plants, about 98% had additional uses besides their nutritional values.

Conclusion

Wild edible plants assist the livelihoods of the local people in food security, agriculture, energy sources, construction, medicines, ecological services, aesthetics, income generation, and household utensils. Nevertheless, wild edible plants are recently threatened due to various anthropogenic factors in the study area. Thus, they need wise use and in-situ and ex-situ conservation measures from all the concerned bodies for sustainable use in the future.

Introduction

Plants supply livelihood and food in the form of non-timber forest products (NTFPs) for about 300 million people worldwide [1]. These NTFPs are used as food and medicine, especially in tropical and low-income countries [2]. For instance, in areas of poverty and malnutrition, forests serve as the source of edible wild mammals, birds, reptiles, insects, wild spinaches, wild mushrooms, and wild fruits that supplement domestic diets [3]. Predominantly wild edible plants are crucial for human diet, especially in poor rural communities during periods of food scarcity [4].

Wild edible plants contribute a lot to households in rural Africa by decreasing their sensitivity to environmental changes and coping with less favorable conditions [5]. Because they mitigate malnutrition of micro- and macronutrients in addition to their role in enhancing food security [6]. Since some wild edible plants (WEPs) are rich in essential nutrients, they can be used to generate dietetic diversity and avoid overdependence on limited food resources [7, 8]. Besides, they play an important role in income generation for certain local residents [9]. Numerous wild edible plants are believed to have positive effects on human health owing to their medicinal functions [10]. These plants are called ‘nutraceutical plants’ since they provide both nutritional and pharmaceutical benefits [11].

In Ethiopia, WEPs are very helpful to combat food insecurity during periods of hardship (e.g., war, drought, low crop production, etc.) as emergency or supplementary foods [7]. Malnutrition and food insecurity are still among the major humanitarian crises in some parts of the country [12]. Some rural people rely on wild edible plant resources for dietary supplementation and income generation during famine periods [9]. However, the diversity of WEPs is gradually decreasing with the associated indigenous knowledge due to various factors such as agricultural expansion, overgrazing, misuse, and less attention to the preservation of indigenous knowledge [13,14,15]. Besides, WEPs are underestimated among different indigenous people, as they are considered foods of the poor in some communities of the country [6, 8, 16, 17], and the associated knowledge is transmitted by oral means [9]. They are much more marginalized to document and conserve due to the changes in food habits and lifestyles [18] and the emphasis many researchers placed on cultivated cereal, oil, and industrial crops in the current Ethiopia [19]. As a result, WEPs need safeguarding attention from researchers, governmental and non-governmental administrators, policymakers, local communities, community leaders, religious leaders, and other stakeholders, along with the associated indigenous knowledge.

Although some studies [9, 12, 15, 17, 20,21,22,23,24,25,26] have progressed to document WEPs in different regions of Ethiopia, there is still a need for documentation and investigation of new research concerning WEPs due to their nutritional, medicinal, economic, ecological, and other uses, as well as the incidence of threats currently facing them. The study area, Dibatie district in Metekel zone, is rich in ethnic and plants diversity [27]. Different ethnic groups in the area consume WEPs as dietary supplements, famine resilience, and confectionery foods in addition to their other uses. However, the literature indicates that these crucial wild food plants in the present study area are not documented with the associated indigenous knowledge up-to-date. Therefore, this study was aimed at investigating the ethnobotany of wild edible plants in Dibatie district, Metekel zone, Benishangul Gumuz Regional State, western Ethiopia.

Materials and methods

Study area

The study was conducted in Dibatie district, Metekel zone, Benishangul Gumuz Regional State in western Ethiopia (Fig. 1). Dibatie district is among the seven administrative districts in Metekel zone. It is located about 550 km north-west of Addis Ababa, which is the capital city of the country. The district contains a total of 30 kebeles (the smallest administrative units in Ethiopia), which are 25 rural kebeles and 5 town kebeles. The current study was carried out in 11 kebeles, which are Dibatie_02, Parzeyit, Lega-buna, Berber, Jan, Donben, Gipho, Tuski-gambela, Galessa, Qorqa, and Sombo-sire kebeles (Fig. 1). The district is inhabited by Agaw, Amhara, Gumuz, Oromo, and Shinasha ethnic groups. Out of these, however, Gumuz ethnic groups have not participated in this study due to a long-lasting ethnic conflict that burst in the area during data collection.

Fig. 1
figure 1

Map of Ethiopia showing Benishangul Gumuz Regional State and the study district (details of the study sites are also presented in Table 1)

The study area is found in the elevation range of 1475–2370 m above sea level. It has a mono-modal rainfall pattern, which occurs usually from May to October, with maximum rainfall appearing in July and August. The average annual rainfall in the area is 1211 mm, and the mean annual minimum temperature is 9.3 °C in the highlands, while the mean maximum temperature is found to be 29.3 °C in the lowland areas (Fig. 2). Agro-ecologically, the study area includes lowland (Qola), mid-highland (Weyina-Dega), and highland (Dega) agro-climatic zones.

Fig. 2
figure 2

Climadiagram showing mean annual temperature and rainfall from 1998 to 2019. Data source: National Meteorological Services Agency, 2022

The livelihood of the local community is mainly dependent on rain-fed cereal-based mixed agricultural systems [28]. Hence, the local people practice traditional lifestyles, including the cultivation of staple food crops (e.g., maize, finger millet, sorghum, tef, lablab, vegetables, cherry pepper, pumpkin, and beans), fruits (e.g., mango, papaya, and banana), oil crops (e.g., groundnut, linseed, niger seed, sesame, castor, and sunflower), and the husbandry of livestock, such as cattle, donkeys, sheep, and goats [27, 29]. Additionally, some (especially Gumuz people) practice ancient activities, i.e., hunter-gatherer and inactive agricultural lifestyles [27].

Sampling methods and socio-demographic characteristics of informants

The study sites (kebeles) were selected purposefully based on the geographic variations, native ethnic group composition, security of the area, and road access to the study site. Accordingly, 11 kebeles with 9879 total households were selected as representative study sites. Out of these householders, a total of 374 informants were selected as representative respondents using the formula developed by Cochran’s (1977) at a 95% confidence level [30]. The representative informants include 220 randomly selected general householders and 154 purposively selected key informants, such as community elders, administrative leaders, and religious leaders. Accordingly, 34 informants were interviewed from each kebele.

In perspective of their socio-demographic feature, 274 male and 100 female informants participated in the interview. Out of the total of 374 informants, Agaw, Amhara, Oromo, and Shinasha ethnic groups were represented by 10, 64, 158, and 142 respondents, respectively. These ethnic groups were found differently within the study sites (kebeles) and participated in the data collection accordingly. The informants speak Amharic, Agawgna, Afaan oromoo, and Shinashigna languages, in which a particular individual can speak more than one language. Regarding their religion, informants follow Islam (45, 12.03%), Orthodox (163, 43.58%), and Protestant (166, 44.39%) religion types. Informants in the age group greater than 18 years old participated in the interview. Accordingly, respondents of age categories 18–40 years (109, 29.14%), 41–60 years (167, 44.65%), 61–80 years (87, 23.26%), and above 80 years (11, 2.94%) were interviewed. Most (319, 85.29%) informants were farmers, some (28, 7.49%) were civil servants, some others (23, 6.15%) were merchants, and a few (4, 1.07%) were laborers. The details of the socio-demographic profiles of interviewees are presented in Table 1.

Table 1 Sampled administrative kebeles with their position, elevation, number of householders, and socio-demographic profiles of interviewed informants

Data collection

The ethnobotanical information was collected by using a semi-structured interview, field observation, market survey, and ranking of selected plants based on their roles to fight famine and multiple uses [31]. In addition, a focus group discussion was conducted in each kebele with the community elders, cattle herders, and school boys, as described in [32].

The interview was carried out in Afaan oromoo, Agawgna, Amharic, and Shinashigna languages, with the help of translators, while the researchers were not able to understand the native languages of participants. The interviews focused on the edible parts, harvesting time, occasions and modes of consumption, adverse effects, and additional uses of wild edible plants. Additionally, it included the local name of plants, marketability, threats to, and management methods of wild edible plants in the study area. The field survey was conducted through guided field observation, focus group discussions, and the collection of voucher specimens for identification. One group discussion, with five to ten participants, was conducted in each kebele with the key informants. The discussion emphasized the traditional uses, preferences, and conservation practices of common WEPs in their locality. Later, the identification of voucher specimens was carried out at the National Herbarium of Addis Ababa University (ETH). The identified botanical names were confirmed by taxonomic experts at ETH and then cross-checked for taxonomic updates by referring to the website Plants of the World Online (POWO).

Data analysis

The collected ethnobotanical data were analyzed through descriptive statistics (percentage and frequency distribution). Preference ranking and direct matrix ranking were applied to assess the degree of preference of selected wild edible plants [31]. The familiarity index (Fi) was calculated to indicate the relative popularity of wild edible plants within the community [33] using the formula: \({\text{Fi}} = \frac{{\text{Number of times a given species was mentioned as food}}}{{\text{Total number of respondents}}} \times 100\). Microsoft Excel version 2013 and R-statistical packages (climatol, ggplot2, scales, and dplyr) were used for data analysis.

Results and discussion

Taxonomic diversity of wild edible plants

The study has documented 54 wild edible plant species belonging to 33 plant families and 46 genera. The family Rubiaceae was represented by 5 plant species (9.26%), followed by the Malvaceae, Moraceae, Myrtaceae, and Solanaceae families, each containing 3 edible plant species (5.56%). All the other families were denoted by two or less wild edible plant species. The genus Ficus had relatively the highest number (3 wild edible plant species), followed by Dioscorea, Grewia, Rumex, Searsia, Solanum, and Syzygium, each of which contains 2 species, while each of the remaining genera was represented by a single species (Table 2).

Table 2 List of WEPs including their local names, families, growth habits, edible parts, modes of consumption, additional uses and habitats

In this study, the family Rubiaceae was represented by the highest number of wild edible plant species, unlike other studies conducted in Ethiopia [9, 13, 24, 25]. Moreover, the number of WEPs recorded in the study area was higher compared to the number of wild edible plant species documented by other studies [9, 13, 14, 24] in various parts of Ethiopia. The higher number of WEPs in the study area indicates the diversity of wild edible plant resources and the dependence of the local people on their consumption [17]. The relatively higher diversity of WEPs in the specific area also implies a strong interaction between the plants and the local communities [34]. In addition, the number of preserved WEPs depends on the proximity of the area to the city and the lifestyles of the residents [35].

Compared to the previous ethnobotanical studies in Ethiopia, the studies conducted in Midakegn district, central Ethiopia [17], Soro district, southern Ethiopia [22], and Bullen district, northwest Ethiopia [36] reported the most overlaps of WEPs (18 species each) recorded in the present study. In addition, the study conducted by [25] in lowland areas of Ethiopia reported high (16 species) overlaps of WEPs with the current study, followed by [12] in North Wollo, northeastern Ethiopia (12 species), [24] in Sedie Muja district, northwest Ethiopia (12 species), [37] in Ensaro district, central Ethiopia (12 species), [14] in Quara district, northwest Ethiopia (11 species), [15] in Berek district, central Ethiopia (11 species), and [26] in Yilmana Densa and Quarit districts, northwest Ethiopia (11 species). Whereas all the other ethnobotanical studies showed less than 11 overlapping wild edible plant species (Table 2). The similarity in the distribution of WEPs along with their traditional use might be due to the geographical similarity and the cultural sharing between local communities inhabiting different areas [9]. However, some WEPs could be used differently in various parts of the country. For instance, the seed powder of Amaranthus caudatus L. was eaten being prepared into porridge in the present study and in Burji district, southern Ethiopia [13], and reported to be consumed as a leafy vegetable in Soro district [22] and in Derashe and Kucha districts of southern Ethiopia [38].

Out of the 54 recorded WEPs in the study area, 4 species, such as Keetia zanzibarica (Klotzsch) Bridson, Lippia abyssinica (Otto & A.Dietr.) Cufod., Physalis lagascae Roem. & Schult., and Psychotria orophila E.M.A.Petit were not reported in the previous studies conducted in different parts of Ethiopia, as well as in 413 WEPs reviewed by [7]. On the other hand, some WEPs, such as Carissa spinarum L., Cordia africana Lam., Ficus sur Forssk., and Ximenia americana L., were highly reported by the previous studies and widely consumed in many areas of the country.

Growth forms of wild edible plants

Wild edible plants in the study area exhibit different growth forms. Out of the reported WEPs, most plant species were trees (38.90%), followed by shrubs (33.30%), climbers (13.00%), herbs (13.00%), and culms (1.90%) (Fig. 3). In the current study, wild edible trees were dominant, in line with the studies conducted by [15] in Berek district, central Ethiopia, [21] in Metema district, northwestern Ethiopia, and [22] in Soro district, southern Ethiopia. However, studies conducted in Mieso district, eastern Ethiopia [9], Burji district, southern Ethiopia [13] and Sedie Muja district, northwestern Ethiopia [24] reported the dominance of shrubs, and the study by [26] in Yilmana Densa and Quarit districts, northwest Ethiopia, stated the dominance of wild edible herbs. The similarity or variation in growth habits of WEPs might be owing to their distribution in similar or different climatic conditions, topographies, and altitudes [9, 24].

Fig. 3
figure 3

Growth habits of wild edible plants in the Dibatie district

Edible parts of wild edible plants in the area

Wild edible plants in the study area have various edible parts, mostly fruits (72.20%), followed by multiple edible parts (13.00%), tubers (5.60%), nectar (3.70%), young shoots (3.70%), and seeds (1.90%) (Fig. 4). Multiple edible parts are those in which two or more parts of a single species are eaten. For instance, the bark and fruits of Grewia mollis Juss., the trunk heart and fruits of Phoenix reclinata Jacq., and the leaves, young shoots, and fruits of Solanum villosum Mill. were consumed by different ethnic groups at the same or different times in the area (Table 2).

Fig. 4
figure 4

Edible parts of wild edible plants in the Dibatie district

Fruits were the predominantly eaten wild edible plant parts (72.20%) in the study area, similar to the dominance of fruit edibility mentioned in the reports of other studies [9, 13, 14, 20] across the country. This might be due to the ease of consuming fruits raw, without processing, by livestock herders, travelers, and schoolchildren. Moreover, the consumption of multiple edible parts of a single plant (13.00%) was reported in the current study, consistent with the previous findings reported by [7]. Such plants have a potent effect on food security in that they provide alternative edible parts at different periods of the year for society [21]. In the study area, for example, young leaves and shoots of Momordica foetida Schumach. were eaten roasted, usually by Gumuz ethnic groups and sometimes by Oromo and Shinasha communities, and its ripe fruits were eaten uniformly by all ethnic groups in the area. Previous studies [14, 22, 37, 42, 55] conducted in other parts of the country also confirmed the consumption of M. foetida fruits in different communities. However, its boiled tuber is consumed as a root vegetable by the Meinit community living in Bench-Maji zone, southwest Ethiopia [53]. This indicates the potency of M. foetida, which needs to be promoted and developed as a leafy and root vegetable as well as a fruit-bearing plant at the national level throughout the country. On the other hand, the current study and other studies [26, 36, 54] conducted in northwest Ethiopia reported Ensete ventricosum (Welw.) Cheesman as a wild edible plant in which its ripe fruits were edible rather than its stem. Besides, other studies conducted in north-central [15] and west-central Ethiopia have reported E. ventricosum as an underutilized wild edible plant with edible fruit and stem. In the southern parts of Ethiopia, however, it is cultivated and taken as a staple or co-staple food crop, and its processed stem is regularly consumed by about 25 million people throughout the year [61]. It is also reported that E. ventricosum is rich in dietary starch and fiber content and less susceptible to short-term climate changes [62]. Therefore, the habits of its management and utilization practices in the southern parts of Ethiopia needs to be expanded to other parts of the country in order to enhance its role in food security.

In the present study, the bark mucilage of G. mollis was prepared into the edible souse with spices such as Allium sativum, Capsicum annuum, Foeniculum vulgare, Zingiber officinale, and salt and eaten with porridge or local bread (Enjera), mainly by Gumuz and Shinasha ethnic groups and rarely by others. Small-scale farmers consume the souse of its bark mucilage as a substitute for homemade stew during normal times and during short-term food scarcity. The bark mucilage consumption of G. mollis was previously reported only by the studies conducted in Bullen district, northwest Ethiopia [36] and in the Amaro Special District of southern Ethiopia [34], while the fruit edibility was highly described by other studies [11, 14, 23, 32] in the country. In other African countries, a ripe fruit is edible in Uganda [63], a bark mucilage is used as an additives in local cake preparation, and a bark powder is used to improve the texture of foods in Nigeria [64]. This shows the vital attributes of G. mollis in traditional food preparations and fighting against food insecurity in Ethiopia as well as in Africa.

Harvesting periods of wild edible plants

Harvesting periods indicate the seasonal availability of wild edible plants in the area. The majority of WEPs in the area were harvested in January (31.48%), May (27.78%), February (25.93%), December (25.93%), April (24.07%), March (20.37%), June (20.37%), July (20.37%), August (20.37%), and November (20.37%), and rarely collected in October (9.26%) and September (7.41%). Certain wild edible plants (11.11%) are still eaten throughout the year (Fig. 5). For example, tubers of Dioscorea spp. (D. praehensilis Benth. and D. schimperiana Hochst. ex Kunth), the trunk heart of P. reclinata, the bark of G. mollis, and the young shoots of Borassus aethiopum Mart. were consumed year-round.

Fig. 5
figure 5

Harvesting periods of wild edible plants in the Dibatie district

This finding revealed that WEPs were mainly collected in the January, May, February, and December months and relatively rare in September and October. Contrary to the current study, the study conducted by [23] in Raya-Azebo district, northern Ethiopia, described September and October as the main harvesting months for wild edible plants. In another study [9], March, April, and May months were reported as the major harvesting periods in Mieso district, eastern Ethiopia. February and March were also reported by [16] as the major collecting months for wild edible plants. Thus, the seasonal availability of WEPs might vary slightly from region to region in Ethiopia, and this could be due to variations in the agro-ecological and climatic conditions [12, 25, 35, 38] and dissimilarity in plant species [54]. Herbaceous edible vegetables are usually available during the rainy season and sometimes in irrigated areas during the dry season [38]. Whereas shrubby and tree edible fruit species are harvested mainly during the dry season [39].

Similar to the present finding, the study conducted by [9] has described some WEPs that were collected throughout the year. These year-round harvested plants may have a huge contribution to reduce food insecurity due to their availability during all seasons of the year [14, 65]. Indeed, the above-described examples of year-round WEPs in the present study area were reported to be consumed mainly during seasonal food shortages and to relieve hunger during normal times. Therefore, they have the ability to combat famine and food insecurity in the current study area and throughout the country.

Mode of consumption

The local communities in the study area are endowed with indigenous knowledge of how to use wild edible plants. Usually, they consumed wild edible fruits and vegetables freshly raw without any processing (31 species, 57.41%). Local people sometimes ate wild edible plants in a fresh, raw, or dry state (8 species, 14.81%). Besides, some wild plants were eaten fresh raw or cooked (4 species, 7.41%), dry raw (3 species, 5.56%), boiled or roasted (2 species, 3.70%), cooked (2 species, 3.70%), fresh raw or roasted (2 species, 3.70%), and in porridge (1 species, 1.85%) and spice (1 species, 1.85%) forms (Table 3).

Table 3 Mode of consuming wild edible plants in the area

Wild edible plants were usually consumed freshly or dry as emergency or supplementary foods by livestock herders, travelers, schoolchildren, and fuel wood collectors. Likewise, outdoor consumption of unprocessed WEPs was reported in different parts of the country in agricultural fields, during cattle herding, traveling, and firewood collection [13, 17, 32]. However, some plants require different preparation techniques to be consumed at home or at work. Particularly green leafy vegetables and tubers need to be boiled, roasted, or cooked before consumption. Because cooking was required to reduce the level of anti-nutritional factors, such as phytates, tannins, and oxalates in green vegetables and tubers [66]. Besides, seeds of Amaranthus caudatus were reported to be powdered with cultivated cereals (e.g., Eleusine coracana (L.) Gaertn., Eragrostis tef (Zucc.), etc.) and eaten as porridge during the shortage of staple food. This result is consistent with the study conducted by [13] in Burji district, southern Ethiopia, indicating the similarity in the indigenous knowledge of the local people living about thousand kilometers away from each other. On the other hand, tubers of Rumex abyssinicus Jacq. were processed as spice with other plants like Allium sativum, Coriandrum sativum, Foeniculum vulgare, and Zingiber officinale even during normal periods. Informants confirmed that it gives a yellowish color to the spice used in food stew. Similarly, the study conducted by [37] in Ensaro district, north-central Ethiopia, reported the use of powdered tuber as a spice in cooking food. The other studies conducted in North Wollo [12] and Raya-Azebo district [23], northern Ethiopia, reported the use of R. abyssinicus tuber as tea spice, and other studies conducted in Yilmana Densa and Quarit districts, northwest Ethiopia [26], and in Chelia district, west-central Ethiopia [42], revealed the use of its tuber for butter refining and as an ingredient for local tea preparation. In addition, several researchers [20, 22, 24, 42, 53] verified that the young shoots of R. abyssinicus are consumed raw in different regions of the country. This implies the diverse nutritional roles of WEPs and the rich associated indigenous knowledge of the local communities living in different areas.

Occasions of consuming wild edible plants

Results showed that WEPs in the study area were eaten as complementary foods (70%), both as complementary and famine foods (19%), and as famine foods (11%) (Fig. 6). Here, local communities consume the majority (38 species, 70%) of WEPs mainly as additional foods due to their pleasant tastes, though staple foods are plentiful. However, some WEPs (16 species, 30%) in the study area were consumed to relieve hunger while spending time at schools, farming places, and livestock herding, and during the scarcity of staple food staff in the area. Thus, local communities depend on WEPs as alternative foods and as famine foods to fill the food gaps during the scarcity of popular crops. In agreement with the present study, the study conducted by [14] reported the consumption of nearly 70% of WEPs as supplementary foods and a few (about 35%) WEPs as famine or drought foods. However, contrary to the current finding, other studies [9, 40] conducted in different areas of Ethiopia have reported that most WEPs are consumed as famine foods. This implies that consumption of WEPs might be more dependent on the productivity and/or access to popular crops in different parts of the country [54, 60]. Moreover, the collection and consumption of WEPs depend on the wealth status of households [58]. This indicates that the lower the wealth category of the households, the more they are dependent on WEPs, and vice versa. Such habits of the local people underestimate the nutritional values of WEPs and their contribution to food security.

Fig. 6
figure 6

Consuming occasions of wild edible plants in the Dibatie district

As the study area consists of three types of agro-ecological zones (lowland, mid-highland, and highland areas) with sufficient monomodal rainfall, the frequency of drought-induced famine is lower compared to other lowland and semi-arid areas of the country, like the Afar, Somali, and southern Oromia regions. As a result, most (70%) WEPs in the area are reported to be consumed as supplementary foods. On the other hand, informants verified that some WEPs, such as Amaranthus caudatus, Corchorus olitorius L., Dioscorea schimperiana, and Oxytenanthera abyssinica (A.Rich.) Munro, were eaten only during the seasonal food shortage but not during the normal periods. Especially A. caudatus and C. olitorius were considered weeds of cultivated crops during normal times. In other parts of the country, however, these plants are commonly eaten and prepared in the form of various products. For example, in southern Ethiopia, the seed powder of A. caudatus is reported to be consumed in the forms of pan cake, porridge, and local beverages [13], and its leaves and seeds are also eaten cooked [22]. In the Afar region of eastern Ethiopia, young shoots and leaves of C. olitorius are consumed cooked as vegetables, and its dried leaves were reported to be sold in supermarkets and exported to the neighboring country (Djibouti) [19]. It is also reported as a preferable leafy vegetable in the southern [38, 40] and the northwestern [14, 21, 47] parts of Ethiopia. This indicates the food source potential of A. caudatus and C. olitorius, which needs attention from the agriculture and food policies of the country. Because these plants are short-season annual plants, they can be harvested more than once per year.

In the present study, boiled or roasted tubers of Dioscorea praehensilis and Dioscorea schimperiana were stated to be consumed during seasonal food gaps. D. praehensilis was also reported as a favorite supplementary food for rural communities. These tuberous WEPs consist of stored food reserves (carbohydrates) that help with their growth and are rich in essential nutrients [49]. For example, D. praehensilis is described as a cheap source of macro- and micronutrients, combating malnutrition in some rural communities in Ethiopia [48, 66]. Moreover, root and tuber crops like sweet potato (Ipomoea batatas L.) and Dioscorea spp. are drought-resistant and productive even on marginalized lands with low soil nutrients compared to cereal crops, such as maize, wheat, triticale, and so on [67, 68]. Thus, it is better to domesticate and propagate such multiple stress-resistant and nutrient-full tuberous WEPs to reduce hunger, malnourishment, and poverty, and to use them consistently in the future. That is because it is essential for developing countries like Ethiopia to look for alternative food sources in order to ensure sustainable food and nutrition security [19].

A preference ranking was carried out by seven key informants to rank seven commonly used WEPs based on their contribution to combating famine, their taste, and their safety to eat. Key informants were requested to give values (1–7) according to their point of view on the selected plants, where number 7 represents the most likely preferred plant and number 1 denotes the least likely plant. Accordingly, Syzygium guineense (Wild.) DC. subsp. macrocarpum (Engl.) F.White was ranked 1st, followed by Syzygium guineense (Wild.) DC. subsp. guineense, Ximenia americana, Vitex doniana Sweet, Carissa spinarum, Dioscorea praehensilis, and Ficus sycomorus L., with their corresponding ranks of 2nd, 3rd, 4th, 5th, 6th, and 7th, respectively (Table 4). The scores depend on the views of key informants who participated, since the habit of using WEPs varies from person to person.

Table 4 Preference ranking of the seven selected wild edible plants according to the views of respondents

Additional uses of wild edible plants in the study area

Out of the reported wild edible plants, about 98% of them had additional uses beyond their food values across the community (Table 2). These additional uses include utilization as bee forages, beehive hanging trees, beehive materials, charcoal, cleaning materials, construction materials, fences, soil fertilizers, fodders, fuel woods, lubricants, traditional medicines, as ornamentals, tooth brushes, shade, timber, traditional soaps, and household utensils. For example, both S. guineense subsp. guineense and S. guineense subsp. macrocarpum were important sources of bee forage and charcoal. In addition, Cordia africana was reported as an important source of timber, Phoenix reclinata was identified as a good raw material for the preparation of traditional mats, and Oxytenanthera abyssinica was reported as a nice raw material for the construction of traditional houses and the preparation of household utensils, and figs of Ficus spp. (F. sycomorus, F. sur, and F. vasta Forssk.) were used as fodder for livestock and soil fertilizer, among others. Different studies [9, 12,13,14, 25] in various parts of Ethiopia have also reported additional uses of WEPs besides their food values.

Direct matrix ranking

Results of direct matrix ranking revealed that out of the selected seven multipurpose wild edible plants, C. africana, S. guineense subsp. guineense, and O. abyssinica were ranked 1st, 2nd, and 3rd, respectively, based on ten use categories. Whereas F. sycomorus, F. sur, G. mollis, and P. reclinata were ranked 4th, 5th, 6th, and 7th, respectively (Table 5). The use categories were bee forage, charcoal, construction, fence, fodder, food, fuel wood, household utensils, medicine, and shade. Like the current result, other studies undertaken by [13] in Burji district, southern Ethiopia, and [15] in Oromia special zone, central Ethiopia, have ranked C. africana as the most commonly used plant in the societies. This indicates the extreme requirements of C. africana for several values within the country. However, widely used plants are usually threatened due to overexploitation for various purposes. Studies [13, 23, 25] revealed that WEPs are usually exploited for purposes other than nutritional value. According to the present study, for example, C. africana was usually utilized for its timber production and fodder, whereas S. guineense subsp. guineense and O. abyssinica were highly required for construction purposes within the community. As a result, C. africana and O. abyssinica were highly declined from the natural forests and started to be propagated in the gardens.

Table 5 Direct matrix ranking of 7 multipurpose wild edible plants based on 10 use criteria (7, most likely used; 1, least likely used; 0, not used)

On the other hand, out of the listed use categories, utilization of WEPs for food, household utensils, and construction were ranked 1st, 2nd, and 3rd, respectively, while the rest of the use categories were, respectively, fuel wood (4th), fodder (5th), medicine (6th), shade (7th), bee forage (8th), charcoal (9th), and fence (10th) (Table 5). Thus, extensive use of WEPs as household utensils, construction materials, fuel wood, fodder, medicine, charcoal, and fence might be considered the major threatening factors of multipurpose plants.

Familiarity index (Fi) of wild edible plants in the study area

A familiarity index (Fi) was conducted to indicate the relative popularity of the major and minor wild edible plants. Indeed, the top ten WEPs were revealed based on their popularity as wild foods. Accordingly, S. guineense subsp. macrocarpum was the most popular (Fi = 31.36) wild edible plant, followed by V. doniana (Fi = 25.91) in the area (Table 6). These commonly edible wild plants play an important role in combating food insecurity, in addition to the cultivated plants in the area. Especially S. guineense subsp. macrocarpum provides a high yield and is consumed well for the entire 2 months (April and May) in the study area. Hence, local people usually talk about how children may grow by eating this wild fruit, though staple foods are scarce.

Table 6 Familiarity index (Fi) of top ten popular wild edible plants

Nutraceutical wild edible plants

The current finding showed that 21 plant species (38.89%) were reported to have both medicinal and nutritional roles (Table 2). These plants are known as nutraceuticals because their various parts provide dietary and therapeutic values. Out of the reported nutraceuticals, for example, unripe, roasted fruits of C. spinarum and fruits of C. africana with seeds were swallowed to expel ascaris, trunk hearts of P. reclinata were consumed to relieve malaria, and tubers of D. praehensilis were eaten to treat impotency in men. Because nutraceutical plants have phytocomplexes, which play important roles in therapeutic properties owing to the natural active principles they contain [69]. Indeed, WEPs are rich in micronutrients and bioactive secondary metabolites; some also have antioxidant and antimicrobial properties [70]. For instance, Amaranthus hybridus L., Haplocarpha rueppellii (Sch.Bip.) Beauverd, Haplocarpha schimperi Beauverd, and Rumex nervosus Vahl [59], as well as Cleome gynandra L. and Solanum nigrum L. [71], are potential WEPs with good sources of phenolics, flavonoids, and antioxidant agents, treating oxidative stress-related diseases.

In addition to the above examples, informants in the present study confirmed that the decoction of Embelia schimperi fruit with seed was commonly used traditionally to treat tapeworm, beyond the nutritional role of a ripe fleshy fruit berry. Similarly, the previous studies [26, 37, 42, 52, 53] reported the nutritional and medicinal contributions of this plant from different areas of the country. This indicates the nutraceutical potential of E. schimperi that can be improved in the development of various drugs and food products.

Marketability of wild edible plants

Results showed that some WEPs were reported to serve as sources of income. Out of the reported WEPs in the area, about 13% were marketable as food or spice in the local market, towns, and schools. For instance, tubers of R. abyssinicus were prepared as spice with other spice plants and sold in the local markets. Besides, X. americana, S. comorensis, G. mollis, V. doniana, B. aethiopum, and Mimusops kummel Bruce ex A.DC. were other marketable WEPs mainly vended in towns and schools for consumption. Wild edible plants were mostly collected and sold by youths, schoolchildren, and sometimes mothers. This is in agreement with the reports of previous studies conducted in different parts of Ethiopia [32, 38, 43]. This implies that community members living in different parts of the country have similar perceptions about consuming and selling wild edible plants.

However, 87% of WEPs were not marketable as foods, although some of them were sold within the community for other purposes or products such as timber, charcoal, mats, construction materials, and so on. Similarly, an earlier study conducted by [26] reported that the majority of WEPs were not marketable owing to their limited access and low habits of consumption compared to domesticated plants. Furthermore, other studies [34, 38] have described the marketability of some WEPs for other products or uses (e.g., timber, agricultural tools, construction, and firewood) rather than nutritional purposes. This indicates an insignificant level of market value chain in the trade of WEPs, though they are highly valuable foods within or outside the country. On the other hand, studies conducted in Quara district [14] and Metema district [21], northwest Ethiopia, reported the export of WEPs, such as Adansonia digitata L., Balanites aegyptiaca (L.) Delile, and Tamarindus indica L., to the neighboring country (Sudan). The report by [19] also revealed the high marketability of dried and packed leaves of C. olitorius in the Afar region of eastern Ethiopia and sent them to Djibouti.

Adverse side effects of consuming wild edible plants

Results showed that the majority (about 78%) of WEPs in the study area did not have adverse effects. Certainly, few plants (22%) were reported to exhibit slightly negative effects on human beings and domestic animals either during or after consumption. The adverse effects were mainly associated with the consumption of unripe fruits, eating with seeds, and excessive consumption. For instance, Ficus species were described as causing abdominal pain when excessively consumed with seeds. Besides, unripe fruits of C. spinarum and Rubus apetalus Poir. resulted in temporary mouth burning, and excessive consumption of S. guineense subsp. macrocarpum, C. africana, R. apetalus, and Senna petersiana (Bolle) Lock fruits was reported to cause stomach discomforts. Similarly, adverse effects were reported by [54] when WEPs were eaten unripe, in excess, and with an empty stomach. In the current finding, the seeds of M. kummel were lethal when consumed by goats. Likewise, earlier studies by [38, 54] have reported that the seeds of Lepisanthes senegalensis (Poir) Leenh. were lethal to goats and camels. Therefore, few WEPs require proper handling mechanisms to avoid or reduce the risks of adverse side effects.

Some WEPs in the study area were not easily collected by consumers. For example, C. spinarum, P. reclinata, Flacourtia indica (Burm.f.) Merr., and Ziziphus abyssinica Hochst. ex A. Rich. had dangerous thorns and needed to be collected carefully. Besides, some wild edibles like F. sycomorus, S. guineense subsp. guineense, S. comorensis, V. doniana, B. aethiopum, and F. vasta were not easily reached while collecting edible fruits. Similar to the study described by [38], digging edible tubers of Dioscorea spp. was a laborious task. Thus, local people use long sticks to collect the fruits of tall trees or climbers and use tough digging materials for underground tubers. This indicates the strong relationship between people and wild plants in the study area.

Habitats of wild edible plants

The current study showed that the majority (28.57%) of the WEPs were found in riparian vegetation, followed by open woodlands (18.37%). The rest of the WEPs inhabit grazing land (12.24%), settlement areas (10.20%), forest margins (9.18%), farmland (9.18%), home gardens (9.18%), and as live fences (3.06%) (Table 7). A particular wild edible plant can inhabit one or more types of habitats. In agreement with the present finding, other studies [13, 15] have reported various habitats of WEPs, such as riverine areas, woodlands, farmlands, natural forests, grazing lands, live fences, and home gardens. The current finding also described settlement areas as habitats for WEPs, in line with the previous study reported by [9]. Similar to the other studies [9, 12, 13, 20, 24] conducted in Ethiopia, most WEPs were collected from natural habitats and exposed to habitat destruction. However, the availability of some WEPs in farmlands, live fences, home gardens, and settlement areas indicates the promising attempts of local communities toward their conservation.

Table 7 Habitats of wild edible plants in the study area

Threats to and conservation status of wild edible plants

Informants described that the major threats to WEPs in the study area were cutting (60.62%), overexploitation (8.50%), agricultural expansion (7.93%), root utilization (5.95%), herbicide (5.10%), overgrazing (5.10%), wild fire (3.68%), and weeding (3.12%) (Fig. 7). Local communities cut or deforest WEPs for various purposes, such as food, medicine, fencing, timber, fuel wood, charcoal, construction, fodder, household utensils, and farm materials, among others. Thus, widely used multipurpose WEPs were highly threatened due to their extensive uses for different purposes. This shows that human activities pose the main threats to WEPs in the study area compared to natural disasters. Hence, these plants require wise use and special attention from all the concerned bodies in order to sustain them with associated indigenous knowledge for the next generation. In agreement with the present finding, other studies [9, 12, 13, 15, 26] conducted in Ethiopia have revealed human activities as the major threats to WEPs. On the other hand, the study conducted by [54] in Adiarkay, Debark, and Dejen districts of the Amhara region of northern Ethiopia has reported catastrophic factors as the major threats to wild edible plants.

Fig. 7
figure 7

Threats to wild edible plants in the Dibatie district

This finding showed that local communities did not conserve about 76% of the WEPs in the area. Likewise, the previous study conducted by [12] reported that a large number (58.5%) of WEPs were not conserved in Wollo, northern Ethiopia. In the present study area, however, some WEPs (approximately 24%) were slightly conserved due to their extra uses apart from nutrition. For instance, some people keep C. africana in gardens or farmland for its timber; a few people cultivate O. abyssinica for house construction, fences, preparation of household utensils, and sources of income; and some others conserve F. sycomorus for its shade and its use as a beehive hanging tree. In line with the current study, elsewhere in Ethiopia, researchers [9, 13, 15, 25] have reported that some important WEPs were deliberately retained in farmland or propagated in gardens by the local communities. According to the current results, local people believed that some plants, including wild edibles, were contributing to water conservation. For example, S. guineense subsp. guineense and F. sur were considered water-preserving plants since they inhabit riverine or wet environments. Thus, community elders and administrative leaders were inhibiting the destruction of such plants near rivers. Similarly, the study conducted by [15] in Berek district, Oromia special zone, central Ethiopia, stated the roles of social norms and beliefs of the local communities in conserving WEPs onsite. Although the progress is promising, the conservation practices are still very stunted elsewhere in the country [12, 14, 38, 40]. As a result, WEPs are declining from the natural forests from time to time [23].

Conclusions

The present finding has documented 54 wild edible plant species consumed by the local community living in Dibatie district, western Ethiopia. The majority (70%) of the recorded wild edibles were eaten as alternative foods in the presence of staple foods. However, few (11%) WEPs were consumed only during the scarcity of staple food crops in the area. Thus, the intensity of consuming WEPs depends on access to the cultivated crops. Beside their nutritional supplements, WEPs support livelihoods through beekeeping, energy sources, cleaning materials, construction raw materials, fences, soil fertilizers, livestock fodders, traditional medicines, aesthetics, shade, furniture, farm materials, and household utensils. Moreover, wild Aves and some wild animals were highly dependent on the consumption of wild edible plant resources in the area. Nevertheless, the perception of local people was low toward the conservation, wise use, and management of wild edible plants. Because WEPs are recently threatened by anthropogenic factors (like deforestation, overexploitation, agricultural expansion, root utilization, herbicides, weeding, overgrazing, and human-induced wild fire), they have drastically declined over the last 30–40 years. Therefore, this study calls for an urgent in-situ and ex-situ conservation strategy in order to conserve and transfer wild edible plant resources and associated indigenous knowledge of the local communities to the next generation.

In general, local people in the study area have a strong relationship with WEPs since they use them for nutrition, income generation, traditional medicine, construction, and the preparation of household materials. Hence, wild edible plants require wise use and special conservation attention from all the stakeholders (e.g., local communities, governmental and non-governmental bodies) for sustainable use in the future. Moreover, the national green legacy should include the plantation of indigenous wild edible plants in all regions of the country. Furthermore, the recorded wild edible plants should be verified by conducting further investigations on their nutritional analysis, phytochemical composition, antioxidant activity, and toxicity examination.

Availability of data and materials

The datasets used and/or analyzed during the current study are available from the corresponding author on reasonable request.

Abbreviations

ETH:

National Herbarium of Addis Ababa University

Fi:

Familiarity index

NTFPs:

Non-timber forest products

POWO:

Plants of the World Online

WEPs:

Wild edible plants

References

  1. Bharucha Z, Pretty J. The roles and values of wild foods in agricultural systems. Philos Trans R Soc B Biol Sci. 2010;365:2913–26.

    Article  Google Scholar 

  2. Sardeshpande M, Shackleton C. Wild edible fruits: a systematic review of an under-researched multifunctional NTFP (non-timber forest products). Forests. 2019;10:467.

    Article  Google Scholar 

  3. McGarry DK, Shackleton CM. Children navigating rural poverty: rural children’s use of wild resources to counteract food insecurity in the Eastern Cape, South Africa. J Child Poverty. 2009;15:19–37.

    Article  Google Scholar 

  4. Łuczaj Ł, Szymański WM. Wild vascular plants gathered for consumption in the Polish countryside: a review. J Ethnobiol Ethnomed. 2007;3:17.

    Article  PubMed  PubMed Central  Google Scholar 

  5. Shumsky SA, Hickey GM, Pelletier B, Johns T. Understanding the contribution of wild edible plants to rural social-ecological resilience in semi-arid Kenya. Ecol Soc. 2014;19:34.

    Article  Google Scholar 

  6. Getachew AG, Asfaw Z, Singh V, Woldu Z, Baidu-Forson J, Bhattacharya S. Dietary values of wild and semi-wild edible plants in southern Ethiopia. Afr J Food Agric Nutr Dev. 2013;13:7486–503.

    Google Scholar 

  7. Lulekal E, Asfaw Z, Kelbessa E, Van Damme P. Wild edible plants in Ethiopia: a review on their potential to combat food insecurity. Afr Focus. 2011;24:71–121.

    Article  Google Scholar 

  8. Duguma HT. Wild edible plant nutritional contribution and consumer perception in Ethiopia. Int J Food Sci. 2020;1–16.

  9. Tahir M, Abrahim A, Beyene T, Dinsa G, Guluma T, Alemneh Y, et al. The traditional use of wild edible plants in pastoral and agro-pastoral communities of Mieso District, eastern Ethiopia. Trop Med Health. 2023;51:10.

    Article  PubMed  PubMed Central  Google Scholar 

  10. Durst PB (ed.), Bayasgalanbat N (ed.). Promotion of underutilized indigenous food resources for food security and nutrition in Asia and the Pacific. In: Food and agriculture organization of the United Nations, Regional Office for Asia and the Pacific. 2014. https://www.fao.org/publications/card/en/c/746b462a-ad12-4ebf-b1c5-c8c8befe79f0/. Accessed 25 Mar 2023.

  11. Wondimu T, Asfaw Z, Kelbessa E. Ethnobotanical study of food plants around “Dheeraa” town, Arsi, Ethiopia. SINET Ethiop J Sci. 2006;29:71–80.

    Article  Google Scholar 

  12. Hassen A. Diversity and potential contribution of wild edible plants to sustainable food security in North Wollo, Ethiopia. Biodiversitas J Biol Divers. 2021;22:2501–10.

    Article  Google Scholar 

  13. Ashagre M, Asfaw Z, Kelbessa E. Ethnobotanical study of wild edible plants in Burji District, Segan Area Zone of Southern Nations, Nationalities and Peoples Region (SNNPR), Ethiopia. J Ethnobiol Ethnomed. 2016;12:32.

    Article  PubMed  PubMed Central  Google Scholar 

  14. Tebkew M, Gebremariam Y, Mucheye T, Alemu A, Abich A, Fikir D. Uses of wild edible plants in Quara district, northwest Ethiopia: implication for forest management. Agric Food Secur. 2018;7:12.

    Article  Google Scholar 

  15. Kidane L, Kejela A. Food security and environment conservation through sustainable use of wild and semi-wild edible plants: a case study in Berek Natural Forest, Oromia special zone, Ethiopia. Agric Food Secur. 2021;10:29.

    Article  Google Scholar 

  16. Gebru M, Oduor F, Lochetti G, Kennedy G, Baye K. Ethiopia’s food treasures: revitalizing Ethiopia’s underutilized fruits and vegetables for inclusion in the Food-Based Dietary Guidelines for improved diet diversity, nutrition and health of the population. Rome, Italy and Addis Ababa, Ethiopia. Bioversity International. 2019. p. 36.

  17. Guzo S, Lulekal E, Nemomissa S. Ethnobotanical study of underutilized wild edible plants and threats to their long-term existence in Midakegn District, West Shewa Zone, Central Ethiopia. J Ethnobiol Ethnomed. 2023;19:30.

    Article  PubMed  PubMed Central  Google Scholar 

  18. Feyssa DH. Comparative analysis of indigenous knowledge on use and management of wild edible plants: the case of central east Shewa of Ethiopia. Ethnobot Res Appl. 2012;10:287–304.

    Article  Google Scholar 

  19. Dandena G. Shifting to alternative food source: potential to overcome Ethiopias’ malnutrition and poverty problems. In: Proc Symp Innov Sustain Dev Agric Food Montp Fr 28 June 1st July 2010. Centre de Coopération Internationale en Recherche Agronomique pour le…; 2010.

  20. Yiblet Y, Adamu E. An ethnobotanical study of wild edible plants in Tach Gayint District, South Gondar Zone, Amhara Region, Northwestern Ethiopia. In: Ullah R (ed) Evid based complement alternat med. 2023. p. 1–11.

  21. Masresha G, Melkamu Y, Walle GC. Ethnobotanical study on wild edible plants in Metema District, Amhara Regional State, Ethiopia. Int J For Res. 2023:1–10.

  22. Hankiso M, Warkineh B, Asfaw Z, Debella A. Ethnobotany of wild edible plants in Soro District of Hadiya Zone, southern Ethiopia. J Ethnobiol Ethnomed. 2023;19:21.

    Article  PubMed  PubMed Central  Google Scholar 

  23. Giday M, Teklehaymanot T. Use of wild edible and nutraceutical plants in Raya-Azebo District of Tigray Region, northern Ethiopia. Trop Med Health. 2023;51:58.

    Article  PubMed  PubMed Central  Google Scholar 

  24. Abera M, Belay K. Ethnobotanical study of wild edible plants and their indigenous knowledge in Sedie Muja District, South Gondar Zone, Northwestern Ethiopia. Am J Plant Sci. 2022;13:241–64.

    Article  Google Scholar 

  25. Dejene T, Agamy MS, Agúndez D, Martín-Pinto P. Ethnobotanical survey of wild edible fruit tree species in lowland areas of Ethiopia. Forests. 2020;11:177.

    Article  Google Scholar 

  26. Alemneh D. Ethnobotany of wild edible plants in Yilmana Densa and Quarit Districts of West Gojjam Zone, Amhara Region, Ethiopia. Ethnobot Res Appl. 2020;20:1–14.

    Google Scholar 

  27. Awas T, Asfaw Z, Nordal I, Demissew S. Ethnobotany of Berta and Gumuz people in western Ethiopia. Biodiversity. 2010;11:45–53.

    Article  Google Scholar 

  28. Nigussie Z, Tsunekawa A, Haregeweyn N, Adgo E, Cochrane L, Floquet A, et al. Applying Ostrom’s institutional analysis and development framework to soil and water conservation activities in north-western Ethiopia. Land Use Policy. 2018;71:1–10.

    Article  Google Scholar 

  29. Giday M, Teklehaymanot T, Animut A, Mekonnen Y. Medicinal plants of the Shinasha, Agew-awi and Amhara peoples in northwest Ethiopia. J Ethnopharmacol. 2007;110:516–25.

    Article  PubMed  Google Scholar 

  30. Cochran WG. Sampling techniques. 3rd ed. New York: Wiley; 1977.

    Google Scholar 

  31. Martin GJ. Ethnobotany: a methods manual. 1st ed. Falmouth, Cornwall: Chapman & Hall; 1995.

    Book  Google Scholar 

  32. Addis G, Asfaw Z, Woldu Z. Ethnobotany of wild and semi-wild edible plants of Konso ethnic community, south Ethiopia. Ethnobot Res Appl. 2013;11:121–41.

    Google Scholar 

  33. Tabuti JRS, Dhillion SS, Lye KA. The status of wild food plants in Bulamogi County, Uganda. Int J Food Sci Nutr. 2004;55:485–98.

    Article  CAS  PubMed  Google Scholar 

  34. Kebebew M, Leta G. Wild edible plant bio-diversity and utilization system in Nech Sar National Park, Ethiopia. Int J Bio-Resour Stress Manag. 2016;7:885–96.

    Article  Google Scholar 

  35. Sina B, Degu HD. Knowledge and use of wild edible plants in the Hula District of the Sidama Zone. Int J Bio-Resour Stress Manag. 2015;6:352.

    Article  Google Scholar 

  36. Berihun T, Molla E. Study on the diversity and use of wild edible plants in Bullen District, Northwest Ethiopia. J Bot. 2017:1–10.

  37. Asfaw A, Lulekal E, Bekele T, Debella A, Tessema S, Meresa A, et al. Ethnobotanical study of wild edible plants and implications for food security. Trees For People. 2023;14: 100453.

    Article  Google Scholar 

  38. Balemie K, Kebebew F. Ethnobotanical study of wild edible plants in Derashe and Kucha Districts, South Ethiopia. J Ethnobiol Ethnomed. 2006;2:53.

    Article  PubMed  PubMed Central  Google Scholar 

  39. Kidane B, Van der Maesen LJG, Van Andel T, Asfaw Z, Sosef MSM. Ethnobotany of wild and semi-wild edible fruit species used by Maale and Ari ethnic communities in southern Ethiopia. 2014;12.

  40. Teklehaymanot T, Giday M. Ethnobotanical study of wild edible plants of Kara and Kwego semi-pastoralist people in Lower Omo River Valley, Debub Omo Zone, SNNPR, Ethiopia. J Ethnobiol Ethnomed. 2010;6:23.

    Article  PubMed  PubMed Central  Google Scholar 

  41. Assefa A, Abebe T. Wild edible trees and shrubs in the semi-arid lowlands of southern Ethiopia. J Sci Dev. 2011;1:5–19.

    Google Scholar 

  42. Regassa T, Kelbessa E, Asfaw Z. Ethnobotany of wild and semi-wild edible plants of Chelia District, West-Central Ethiopia. Sci Technol Arts Res J. 2015;3:122.

    Article  Google Scholar 

  43. Bahru T, Asfaw Z, Demissew S. Wild edible plants: sustainable use and management by indigenous communities in and the buffer area of Awash National Park, Ethiopia. SINET Ethiop J Sci. 2013;36:93–108.

    Google Scholar 

  44. Teklehaymanot T. An ethnobotanical survey of medicinal and edible plants of Yalo Woreda in Afar regional state, Ethiopia. J Ethnobiol Ethnomed. 2017;13:40.

    Article  PubMed  PubMed Central  Google Scholar 

  45. Kidane L, Nemomissa S, Bekele T. Human-forest interfaces in hugumburda-gratkhassu national forest priority area, north-eastern Ethiopia. J Ethnobiol Ethnomed. 2018;14:17.

    Article  PubMed  PubMed Central  Google Scholar 

  46. Kidane B, Van Der Maesen LJG, Asfaw Z, Sosef MSM, Van Andel T. Wild and semi-wild leafy vegetables used by the Maale and Ari ethnic communities in southern Ethiopia. Genet Resour Crop Evol. 2015;62:221–34.

    Article  Google Scholar 

  47. Tebkew M, Asfaw Z, Zewudie S. Underutilized wild edible plants in the Chilga District, northwestern Ethiopia: focus on wild woody plants. Agric Food Secur. 2014;3:1–16.

    Article  Google Scholar 

  48. Yimer A, Forsido SF, Addis G, Ayelign A. Nutritional composition of some wild edible plants consumed in Southwest Ethiopia. Heliyon. 2023;9: e16541.

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  49. Mosissa D. Tuber wild plants of Shinasha people as food and medicine in Bullen District, Northwest of Ethiopia. Biodivers Int J. 2018;2:53–8.

    Article  Google Scholar 

  50. Teklu Y, Abduljabar A. Ethnobotanical study on the diversity and utilization of wild edible plants in Majang Zone of Gambella Region, Southwest Ethiopia. Int J Innov Sci Res Technol. 2019;4:880–6.

    Google Scholar 

  51. Ayele D, Negasa D. Identification, characterization and documentation of medicinal and wild edible plants in Kashaf Kebele, Menge Woreda, Benishangul Gumuz, Ethiopia. Int J Adv Res. 2017;5:193–204.

    Article  Google Scholar 

  52. Alemayehu G, Asfaw Z, Kelbessa E. Plant diversity and ethnobotany in Berehet District, North Shewa Zone of Amhara Region (Ethiopia) with emphasis on wild edible plants. J Med Plants Stud. 2015;3:93–105.

    Google Scholar 

  53. Yimer A, Forsido SF, Addis G, Ayelgn A. Ethnobotanical study of wild edible plants used by Meinit Ethnic Community at Bench-Maji Zone, Southwest Ethiopia. 2021. https://www.researchsquare.com/article/rs-907812/v1. Accessed 07 Jan 2024.

  54. Fentahun MT, Hager H. Exploiting locally available resources for food and nutritional security enhancement: wild fruits diversity, potential and state of exploitation in the Amhara region of Ethiopia. Food Secur. 2009;1:207–19.

    Article  Google Scholar 

  55. Emire A, Demise S, Giri T, Tadele W. Ethnobotanical study of wild edible plants in Liben and Wadera Districts of Guji Zone, Southern Ethiopia. Glob J Agric Res. 2022;10:47–65.

    Google Scholar 

  56. Girmay G, Lulekal E, Belay B, Gebrehiwot K. Wild edible plants study in a dryland ecosystem of Ethiopia. Daagu Int J Basic Appl Res. 2022;4:105–19.

    Google Scholar 

  57. Guyu DF, Muluneh W-T. Wild foods (plants and animals) in the green famine belt of Ethiopia: do they contribute to household resilience to seasonal food insecurity? For Ecosyst. 2015;2:34.

    Article  Google Scholar 

  58. Hailemariam MB, Woldu Z, Asfaw Z, Lulekal E. Ethnobotany of an indigenous tree Piliostigma thonningii (Schumach.) Milne-Redh. (Fabaceae) in the arid and semi-arid areas of South Omo Zone, southern Ethiopia. J Ethnobiol Ethnomed. 2021;17:44.

    Article  PubMed  PubMed Central  Google Scholar 

  59. Adamu E, Asfaw Z, Demissew S, Baye K. Antioxidant activity and anti-nutritional factors of selected wild edible plants collected from Northeastern Ethiopia. Foods. 2022;11:2291.

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  60. Ocho DL, Struik PC, Price LL, Kelbessa E, Kolo K. Assessing the levels of food shortage using the traffic light metaphor by analyzing the gathering and consumption of wild food plants, crop parts and crop residues in Konso, Ethiopia. J Ethnobiol Ethnomed. 2012;8:30.

    Article  PubMed  PubMed Central  Google Scholar 

  61. Dilebo T, Feyissa T, Asfaw Z, Zewdu A. On-farm diversity, use pattern, and conservation of enset (Ensete ventricosum) genetic resources in southern Ethiopia. J Ethnobiol Ethnomed. 2023;19:2.

    Article  PubMed  PubMed Central  Google Scholar 

  62. Borrell JS, Biswas MK, Goodwin M, Blomme G, Schwarzacher T, Heslop-Harrison JS, et al. Enset in Ethiopia: a poorly characterized but resilient starch staple. Ann Bot. 2019;123:747–66.

    Article  PubMed  PubMed Central  Google Scholar 

  63. Masters ET. Traditional food plants of the upper Aswa River catchment of northern Uganda—a cultural crossroads. J Ethnobiol Ethnomed. 2021;17:24.

    Article  PubMed  PubMed Central  Google Scholar 

  64. Sambo S, Olatunde A, Shaltoe S. Phytochemical screening and mineral analysis of Grewia mollis stems bark. Int J Biochem Res Rev. 2015;6:75–81.

    Article  Google Scholar 

  65. Feyssa DH, Njoka JT, Asfaw Z, Nyangito MM. Wild edible fruits of importance for human nutrition in semiarid parts of East Shewa Zone, Ethiopia: associated indigenous knowledge and implications to food security. Pak J Nutr. 2011;10:40–50.

    Article  CAS  Google Scholar 

  66. Aragaw HS, Nohr D, Callo-Concha D. Nutritional potential of underutilized edible plant species in coffee agroforestry systems of Yayu, southwestern Ethiopia. Agrofor Syst. 2021;95:1047–59.

    Article  Google Scholar 

  67. Matsumoto R, Ishikawa H, Asfaw A, Asiedu R. Low soil nutrient tolerance and mineral fertilizer response in White Guinea Yam (Dioscorea rotundata) genotypes. Front Plant Sci. 2021;12: 629762.

    Article  PubMed  PubMed Central  Google Scholar 

  68. Motsa NM, Modi AT, Mabhaudhi T. Sweet potato (Ipomoea batatas L.) as a drought tolerant and food security crop. South Afr J Sci. 2015;111:8.

    Article  Google Scholar 

  69. Santini A, Novellino E. To nutraceuticals and back: rethinking a concept. Foods. 2017;6:74.

    Article  PubMed  PubMed Central  Google Scholar 

  70. Bacchetta L, Visioli F, Cappelli G, Caruso E, Martin G, Nemeth E, et al. A manifesto for the valorization of wild edible plants. J Ethnopharmacol. 2016;191:180–7.

    Article  PubMed  Google Scholar 

  71. Yimer A, Forsido SF, Addis G, Ayelign A. Phytochemical profile and antioxidant capacity of some wild edible plants consumed in Southwest Ethiopia. Heliyon. 2023;9: e15331.

    Article  CAS  PubMed  PubMed Central  Google Scholar 

Download references

Acknowledgements

We would like to thank the administrative leaders, informants, field assistants, and residents of Dibatie district who have participated directly or indirectly in the ethnobotanical data collection for this work. The authors are also grateful to the Office of the Research Directorate, College of Natural and Computational Sciences, as well as the Department of Plant Biology and Biodiversity Management of Addis Ababa University for funding and facilitating the financial support for this work through the Thematic Project of Dr. Ermias Lulekal entitled ‘Ethnobotany of the medicinal and wild edible plants of the Dibatie people and antimicrobial activity study of plants against infectious diseases of the Dibatie district, Metekel zone, Benishangul Gumuz Regional State, western Ethiopia’. Besides, the Office of the Research Directorate at Bule Hora University was accredited as a financial source.

Funding

This study was funded by the Office of the Directorate for Research at Addis Ababa University and the Office of the Research Directorate at Bule Hora University.

Author information

Authors and Affiliations

Authors

Contributions

The first author (BA) designed the research, conducted data collection and analysis, identified the plants, and wrote the initial and final draft of the manuscript. EL supervised the research plan and data collection, confirmed plant identification, and reviewed the manuscript. PG and AH supervised the data collection and reviewed the manuscript. All authors read and approved the final manuscript.

Corresponding author

Correspondence to Baressa Anbessa.

Ethics declarations

Ethics approval and consent to participate

Permission for this research was given by the Department of Plant Biology and Biodiversity Management at Ababa University through a written letter with reference number DPBBM/CNS/478/13/2020 and by the Office of Dibatie District Administration.

Consent for publication

Not applicable.

Competing interests

The authors declare that they have no competing interests.

Additional information

Publisher's Note

Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.

Rights and permissions

Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data.

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Anbessa, B., Lulekal, E., Getachew, P. et al. Ethnobotanical study of wild edible plants in Dibatie district, Metekel zone, Benishangul Gumuz Regional State, western Ethiopia. J Ethnobiology Ethnomedicine 20, 27 (2024). https://doi.org/10.1186/s13002-024-00671-2

Download citation

  • Received:

  • Accepted:

  • Published:

  • DOI: https://doi.org/10.1186/s13002-024-00671-2

Keywords