个人简介:陈林,男,1987年6月生,安徽舒城人,博士,副研究员。2009年毕业于安徽大学环境科学系,获理学学士学位;2009-2014年在中国科学院南京土壤研究所硕博连读,获理学博士学位;2016年9月入所工作任助理研究员,2020年5月至今任副研究员、硕士生导师。针对外源有机物难以向土壤有机质高效转化及其微生物驱动机制认识不清等科学问题,运用多组学和同位素等技术,解析了土壤培肥过程中微生物群落演变规律及驱动机制,明确了关键腐生真菌对有机质提升的贡献,提出了被孢霉菌促进有机质积累的原理与方法;近几年运用小分子短链/断链刺激物,从生物能量、跨营养级联动、微生物-矿物双途径等视角切入,提升障碍性土壤肥力与生产力。主持国家重点研发计划项目课题/子课题、中国科学院系列项目课题/子课题、国家自然科学基金面上项目等。以第一/共一作者在Science Bulletin、Soil Biology and Biochemistry等期刊发表SCI论文28篇,授权国家发明专利5件。入选农业农村部“农业科研杰出人才”培养计划、中国科学院青年创新促进会会员、中国科学院特聘骨干岗位。担任Frontiers in Microbiology期刊副编辑,International Journal of Environmental Research and Public Health、Agronomy、Microorganisms等期刊编委。
研究领域:障碍性土壤生物培肥与健康培育;土壤固碳增汇与作物耐逆促生的生物互作机制
招生信息:欢迎本科专业为农业资源与环境、环境科学、微生物学、生命科学、生态学等相关专业的学生报考,电话025-86881262,邮箱lchen@issas.ac.cn,中国科学院大学个人主页https://people.ucas.edu.cn/~chl,ResearchGate个人主页https://www.researchgate.net/profile/Lin-Chen-139
代表论文 (2023-2024):
1. Chen Lin, Zhou Guixiang, Feng Biao, Wang Chao, Luo Yu, Li Fang, Shen Congcong, Ma Donghao, Zhang Congzhi, Zhang Jiabao. Saline–alkali land reclamation boosts topsoil carbon storage by preferentially accumulating plant-derived carbon. Science Bulletin, 2024, https://doi.org/10.1016/j.scib.2024.03.063
2. Li Fang†, Chen Lin†, Jia Zhongjun, Zhang Jiabao, Zhao Zhanhui, Han Yanlai, Wang Yi. Core microbial taxonomies that maintain high organic carbon content in upland soil. Science of The Total Environment, 2024, 939: 173300
3. Han Changdong†, Chen Lin†, Xin Xiuli, Zhou Guixiang, Zhang Congzhi, Ma Donghao, Li Yue, Ma Ling, Zhang Jiabao. Long-term fertilization affects microbial necromass accumulation by regulating nutrient and enzymatic stoichiometry in a calcareous Fluvisol. Applied Soil Ecology, 2024, 194: 105169
4. Chen Lin, Xin Xiuli, Li Jingwang, Han Changdong, Xiong Wu, Luo Yu, Sun Ruibo, Zhang Jiabao. Phosphorus fertilization boosts mineral‑associated soil organic carbon formation associated with phagotrophic protists. Microbial Ecology, 2023, 86: 2541-2551
5. Duan Yan†, Chen Lin†, Li Yumei, Li Jiangye, Zhang Congzhi, Ma Donghao, Zhou Guixiang, Zhang Jiabao. Nitrogen input level modulates straw-derived organic carbon physical fractions accumulation by stimulating specific fungal groups during decomposition. Soil and Tillage Research, 2023, 225: 105560
6. Ning Qi†, Chen Lin†, Li Fang, Zhou Guixiang, Zhang Congzhi, Ma Donghao, Zhang Jiabao. Tradeoffs of microbial life history strategies drive the turnover of microbial-derived organic carbon in coastal saline soils. Frontiers in Microbiology, 2023, 14: 1141436
7. Li Jingwang†, Chen Lin†, Zhang Jiabao, Zhang Congzhi, Ma Donghao, Zhou Guixiang, Ning Qi. Organic amendments with high proportion of heterocyclic compounds promote soil microbiome shift and microbial use efficiency of straw-C. Frontiers in Microbiology, 2023, 14: 1087709