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个人简介

申思,男,中国农业大学农学院副教授,博士/硕士生导师。从事玉米逆境生理与抗逆栽培方向研究。主要研究方向包括:干旱、高温等逆境致灾机制及应对栽培措施;玉米果穗籽粒发育机制及调节;玉米品种高产高效特性评价及机制,相关研究进展发表在Trends in Plant Science, Plant Cell and Environment, The Plant Journal, Journal of Experimental Botany等权威期刊。主持国家自然科学基金面上项目、青年项目,国家重点研发计划子课题等项目。 教育经历 2015.12.15-2017.12.15,副博士,纽卡斯尔大学,植物生物学 2012.09.01-2018.06.19,农学博士学位,中国农业大学,作物生理学 2007.09.01-2011.07.10,理学学士学位,山西农业大学,生物信息学 工作经历 2020.07.09,中国农业大学农学院 2018.07.09-2020.07.09,中国农业大学资源与环境学院 2018.07.09-2020.07.09,中国农业大学 学术兼职 Frontiers in Plant Science, Review Editor Journal of Experimental Botany, The Plant Journal, Journal of Intergrative Agriculture等期刊审稿人

研究领域

玉米逆境致灾机理及应对栽培措施 玉米果穗籽粒发育机制及抗逆调节 玉米源库同化物运输、卸载及分配调控机制 玉米品种高产高效特性评价

近期论文

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Limits to maize productivity in the North China Plain: A comparison analysis for spring and summer maize Field Crop Research SCI 2018.11 China Agricultural University 7 Variation of carbon partitioning in newly expanded maize leaves and plant adaptive growth under extended darkness Journal of Integrative Agriculture SCI 2021.9 China Agricultural University 2 Cob color, an indicator of grain dehydration and agronomic traits in maize hybrids The Crop Journal SCI 2022.4 Xiao-Gui Liang, Zhen Gao, Si Shen, Xue Zhao, Li Zhang, Shun-Li Zhou China Agricultural University 3 Shen S, Ma S, Wu L, Zhou S-L, Ruan Y-L* (2023). Winners Take All: Competition for Carbon Resource Determines Grain Fate, Trends in Plant Science, in press. (Cell Press, 5-year IF: 23.116) Shen S, Ma S, Chen X, Yi F, Liang X-G, Liao S, Gao L, Zhou S-L*, Ruan Y-L (2022). A Transcriptional Landscape underlying Sugar Import for Grain Set in Maize, The Plant Journal, 110(1): 228-242. (高被引, 5-year IF: 8.028) Shen S, Liang X-G, Zhang L, Zhao X, Liu Y-P, Lin S, Gao Z, Wang P, Wang Z, Zhou S-L*(2020). Intervening in Sibling Competition for Assimilates by Controlled Pollination Prevents Seed Abortion under Postpollination Drought in Maize, Plant Cell and Environment, 43(4): 903~919. (5-year IF: 8.452) Shen S, Ma S, Liu Y, Liao S, Li J, Wu L, Kartika D, Mock H-P, Ruan Y-L*(2019). Cell Wall Invertase and Sugar Transporters Are Differentially Activated in Tomato Styles and Ovaries during Pollination and Fertilization, Frontiers in Plant Science, doi: 10.3389/fpls.2019.00506. (5-year IF: 7.255) Shen S, Zhou S-L*, Ruan Y-L*(2018). Pollination Time and Ear Region Are Early Determinants of Assimilate Partitioning and Selective Kernel Abortion in Maize, Asia-Oceania International Congress on Photosynthesis, Beijing, 2018.8.19-2018.8.2. Shen S, Zhang L, LiangX-G, Zhao X, Lin S, Qu L-H, Liu Y-P, Gao Z, RuanY-L, Zhou S-L* (2018). Delayed Pollination and Low Availability of Assimilates Are Major Factors Causing Maize Kernel Abortion,Journal of Experimental Botany, 69(7): 1599~1613. (5-year IF: 8.331) Shen S, Li B-B, Deng T, Xiao Z-D, Chen X-M, Hu H, Zhang B-C, Wu G, Li F, Zhao X, Liang X-G, Mi G-H, Zhou S-L*(2020). The Equilibrium between Sugars and Ethylene Is Involved in Shading and Drought-Induced Kernel Abortion in Maize, Plant Growth Regulation, 91: 101~111. (5-year IF: 3.607) Lin Y-H, Jin Y-K, Chen Z-Y, Xiao Z-D, Shen S*, Zhou S-L* (2022). Exogenous Methylglyoxal Ameliorates Source Strength and Retrieves Yield Loss Under Drought Stress During Grain Filling in Maize, Journal of Plant Growth Regulation, 179: 1-13. (5-year IF: 4.469) Chen X-M, Li F-Y, Dong S, Liu X-F, Li B-B, Xiao Z-D, Deng T, Wang Y-B*, Shen S*, Zhou S-L* (2022).Stubby or Slender? Ear Architecture Is Related to Drought Resistance in Maize, Frontiers in Plant Science,doi: 10.3389/fpls.2022.901186. (5-year IF: 7.255)

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