姓 名:田秋英
职称:研究员(博士生导师)
所在单位:内蒙古大学生态与环境学院
通讯地址:内蒙古呼和浩特市玉泉区锡林郭勒路49号 (010020)
E-Mail:qytian@imu.edu.cn
个人简介:
田秋英,内蒙古大学生态与环境学院,研究员,博士生导师。主要从事全球变化及人为干扰对草地生态系统结构功能的影响及植物-土壤互作机理;牧草养分利用策略与调控;光伏工程的生态影响及土地立体化利用等方面的研究。以第一或通讯作者在Global Change Biology、Ecology、Journal of Ecology、Soil Biology & Biochemistry、New Phytologist、Plant Physiology等国际生态学、土壤学和植物学主流期刊发表SCI论文20余篇。先后主持国家重点研发计划项目课题1项,国家自然科学基金面上项目3项,青年基金1项,中科院优秀青年科技专项1项等国家级项目10余项。
学术任职:
2020-至今, 英国生态学会期刊Journal of Ecology 编委 (associate editor)
2021-至今,植物营养学主流期刊Plant and Soil 客座编辑 (guest editor)
2022-至今,国内生态学期刊Journal of Plant Ecology 编委
研究方向:
1) 全球变化生态学
2) 植物生理生态学
3) 草地植物营养学
教育背景:
2002-2005,中国农业大学,植物营养学专业,博士
1999-2002,河北农业大学,植物营养学专业,硕士
1995-1999,河北农业大学,土壤与农业化学专业,学士
工作经历:
2025-至 今,内蒙古大学,生态与环境学院,研究员
2022-2025,中国科学院植物研究所,植被与环境变化国家重点实验室,研究员
2009-2022,中国科学院植物研究所,植被与环境变化国家重点实验室,副研究员
2017-2018,美国堪萨斯大学,生态与进化生物学院,访问学者
2005-2008,中国科学院植物研究所,植被与环境变化国家重点实验室,助理研究员。
承担项目:
主持国家重点研发计划项目“风光资源开发的生态影响及应对技术研发与应用示范” 2022YFF1303400,课题 “风光资源开发的生态环境影响和作用机理”(2022.09-2026.08)。
主持国家自然科学基金面上项目,32271589,养分限制假说参与氮沉降导致草地生态系统植物多样性降低的再评价(2023.01-2026.12)。
主持国家自然科学基金面上项目,31870457,大气氮沉降导致草地生态系统植物多样性降低的主导机制研究(2019.01-2022.12)。
主持国家自然科学基金面上项目,31570403,矿质元素利用策略在氮添加导致草地植物物种丢失中的作用研究(2016.01-2019.12)。
主持中国科学院现代农业科技创新基地优秀青年科技专项,KSCX2-EW-Q-20,植物适应低磷和铝毒害的生理机理研究(2011.01-2013.12)。
主持国家自然科学基金青年基金项目,30800706,植物铝毒胁迫响应的一氧化氮、乙烯信号调控机理(2009.01-2011.12)。
主持国家重点研发计划项目“北方农牧交错带退化草地多维度修复与多功能提升技术研发与示范”,2022YFF1302800,子课题 “退化草地地上-地下协同调控技术研究”(2022.09-2026.08)。
主持国家重点研发计划项目“北方农牧交错带草地退化机理及生态修复技术集成示范”,2016YFC050706,子课题“牧草生长水分养分高效利用技术研发”(2016.06-2021.06)。
主持中国科学院植物研究所植被与环境变化国家重点实验室青年人才项目,2011QNRC08,大气CO2浓度升高对典型草原优势种养分利用的影响研究,(2011.07-2013.12)。
主持科技部 973 项目,“北方草地与农牧交错带生态系统维持与适应性管理的科学基础”,2007CB106802,子课题“重要豆科牧草适应环境和养分胁迫的生理机制”(2007.01-2011.12)。
主持中国科学院西部行动计划(二期)项目,“锡林郭勒草地适应性管理与可持续发展适应和示范研究”的子课题“草地系统生产力维持的分子生态学机理”(2006.12-2009.12)。
第一或通讯作者论文:
Chen MM, Zheng Y, Zhai XF, Ma FL, Chen J, Stevens C, Zhang WH, Tian QY*. 2024. Metal ions steer the duality in microbial community recovery from nitrogen enrichment by shaping functional groups. Global Change Biology, 30, e17475.Zhai XF, Zheng Y, Ma FL, Ren LF, Bai WM, Tian QY*, Zhang WH*. 2024. Root exudation is involved in regulation of nitrogen transformation under mowing in a temperate steppe. Soil Biology & Biochemistry, 195, 109481.
Zhai XF, Lu P, Zhang RF, Bai WM, Zhang WH, Chen J, Tian QY*. 2023. Mowing accelerates phosphorus cycling without depleting soil phosphorus pool. Ecological Applications, 33: e2861.
Tian QY, Lu P, Zhai XF, Zhang RF, Zheng Y, Wang H, Nie B, Bai WM, Niu SL, Shi PL, Yang YH, Li KH, Yang DL, Stevens C, Lambers H, Zhang WH. 2022. An integrated belowground trait- based understanding of nitrogen- driven plant diversity loss. Global Change Biology, 28: 3651-3664.
Tian QY, Lu P, Ma PF, Zhou HR, Yang M, Zhai XF, Chen MM, Wang H, Li WC, Lambers H, Zhang WH. 2021. Processes at the soil-root interface determine the different responses of nutrient limitation and metal toxicity in forbs and grasses to nitrogen enrichment. Journal of Ecology, 109, 927-938.
Lu P, Hao TX, Li X, Wang H, Zhai XF, Tian QY*, Bai WM, Stevens C, Zhang WH*. 2021. Ambient nitrogen deposition drives plant-diversity decline by nitrogen accumulation in a closed grassland ecosystem. Journal of Applied Ecology, 58, 1888-1898.
Tian QY, Yang LY, Ma PF, Zhou HR, Liu NN, Bai WM, Wang H, Ren LF, Lu P, Han WW, Schultz PA, Bever JD, Zhang FS, Lambers H, Zhang WH. 2020. Below-ground-mediated and phase-dependent processes drive nitrogen-evoked community changes in grasslands. Journal of Ecology, 108, 1874-1887.
Tian QY, Liu NN, Bai WM, Li LH, Chen JQ, Reich PB, Yu Q, Guo DL, Smith MD, Knapp AK, Cheng WX, Lu P, Gao Y, Yang A, Wang TZ, Li X, Wang ZW, Ma YB, Han XG, Zhang WH. 2016. A novel soil manganese mechanism drives plant species loss with increased nitrogen deposition in a temperate steppe. Ecology, 97, 65-74.
Cheng Y, Zhang XX, Sun TY, Tian QY*, Zhang WH*. 2018. Glutamate Receptor Homolog3.4 is Involved in Regulation of Seed Germination Under Salt Stress in Arabidopsis. Plant and Cell Physiology, 59, 978-988.
Tian QY, Liu NN, Bai WM, Li LH, Zhang WH. 2015. Disruption of metal ion homeostasis in soils is associated with nitrogen deposition-induced species loss in an Inner Mongolia steppe. Biogeosciences, 12, 2499–3512.
Gao Y, Tian QY*, Zhang WH*. 2014. Systemic regulation of sulfur homeostasis in Medicago truncatula. Planta, 239, 79-96.
Tian QY, Zhang X, Yang A, Wang T, Zhang WH. 2016. CIPK23 is involved in iron acquisition of Arabidopsis by affecting ferricchelate reductase activity. Plant Science, 246, 70-79.
Tian QY, Zhang XX, Ramesh S, Gilliham M, Tyerman SD, Zhang WH. 2014. Ethylene negatively regulates aluminium-induced malate efflux from wheat roots and tobacco cells transformed with TaALMT1. Journal of Experimental Botany, 65, 2415-2426.
Tian QY, Zhang XX, Gao Y, Bai WM, Ge F, Ma YB, Zhang WH. 2013. Wheat genotypes differing in aluminum tolerance differ in their growth response to CO2 enrichment in acid soils. Ecology and Evolution, 3, 1440–1448.
Sun P#, Tian QY#, Chen J, Zhang WH. 2010. Aluminum-induced inhibition of root elongation in Arabidopsis is mediated by ethylene and auxin, Journal of Experimental Botany, 61, 347-356.
Tian QY, Sun P, Zhang WH. 2009. Ethylene is involved in mediating nitrate-dependent root branching in Arabidopsis. New Phytologist, 184, 918-931.
Tian QY, Sun DH, Zhao MG, Zhang WH. 2007. Inhibition of nitric oxide synthase (NOS) underlies aluminum-induced inhibition of root elongation in Hibiscus moscheutos L. New Phytologist, 174, 322-331.
Tian QY, Chen FJ, Liu JX, Zhang FS, Mi GH. 2008. Inhibition of maize root growth by high nitrate supply is correlated to reduced IAA levels in roots. Journal of Plant Physiology, 165, 942-951.
Tian QY, Chen FJ, Zhang FS, Mi GH. 2005. Possible involvement of cytokinins in nitrate-mediated root growth in maize. Plant and Soil, 277: 185-196.
Tian QY, Chen FJ, Zhang FS, Mi GH. 2006. Genotypic difference in nitrogen acquisition ability in maize plants is related to the coordination of leaf and root growth. Journal of Plant Nutrition, 29, 317-330.
Sun P#, Tian QY#, Zhao MG, Dai XY, Li LH, Huang JH, Zhang WH. 2007. Aluminum-induced ethylene production is associated with inhibition of root elongation in Lotus japonicus L. Plant and Cell Physiology, 48, 1229-1235.
Zhao MG#, Tian QY#, Zhang WH. 2007. Nitric oxide synthase–dependent nitric oxide production is associated with salt tolerance in Arabidopsis. Plant Physiology, 144, 206-217.