
姓名:罗功文 职称:副教授 电话:18205182894
E-mail: gongwenluo@hunau.edu.cn
个人简介
罗功文,男,九三学社社员,2020年6月毕业于南京农业大学,农学博士。2020年7月以青年英才I层次人才全职引进,引进科研启动经费50万元。现为农业资源与环境学系教师,特聘副教授。主要研究方向为:环境微生物生态,植物-根际-微生物互作,固体废弃物资源化利用等。目前以第一作者在mSystems、Soil Biology and Biochemistry、Functional Ecology等国际权威期刊发表8篇SCI论文(中科院1区6篇),累积影响因子高达40以上,并以共同作者发表SCI论文8篇。参加国内外学术会议30余次,获得“全国性学术报告一等奖”等荣誉多项。现为Land Degradation & Development等杂志审稿人。欢迎有环境生态学、环境微生物学、农业资源与环境、环境科学与工程等专业基础的学生报考研究生。
工作经历
2020/07月-今:湖南农业大学,古天乐代言太阳集团,农业资源与环境学系
教育经历
2015/09-2020/06:南京农业大学,农业资源与环境专业,博士(硕博连读)
2011/09-2015/06:湖南农业大学,农业资源与环境专业,学士
主要论文
Luo G.W., Ling N., Nannipieri Paolo, Chen H., Raza W., Wang M., Guo S.W., Shen Q.R. Long-term fertilisation regimes affect the composition of the alkaline phosphomonoesterase encoding microbial community of a vertisol and its derivative soil fractions. Biology and Fertility of Soils. 2017, 1-14. (IF: 5.521, 中科院一区,TOP).
Luo G.W., Rensing C., Chen H., Liu M.Q., Wang M., Guo S.W., Ling N., Shen Q.R. Deciphering the associations between soil microbial biodiversity and ecosystem multifunctionality deiven by long-term fertilization managements. Functional Ecology. 2017, 1103-1116. (IF: 5.657, 中科院一区,TOP).
Luo G.W., Friman V.P., Chen H.n, Liu M.Q., Wang M., Guo S.W., Ling N., Shen Q.R. Long-term fertilization management drives the abundance and composition of N-cycling-related microbial groups via soil particle-size and microhabitat differentiation. Soil Biology and Biochemistry. 2018, 213-223. (IF: 5.795, 中科院一区,TOP).
Luo, G.W., Li L., Friman V.P., Guo J.J., Guo S.W., Shen Q.R., Ling N. Organic amendments increase crop yields by improving microbe-mediated soil functioning of agroecosystems: A meta-analysis. Soil Biology and Biochemistry. 2018, 105-115. (IF: 5.795, 中科院一区,TOP).
Luo, G.W., Wang T.T., Li K.S., Li L., Zhang J.W., Guo S.W., Ling N., Shen Q.R. Historical-nitrogen deposition and straw addition facilitate the resistance of soil multifunctionality to drying-wetting cycles. Applied Environmental Microbiology. 2019, e02251-18 (IF: 4.272, 中科院二区,TOP).
Luo, G.W., Ning L., Chao X., Michaela A.D, Les G.F. Guo S.W., Yakov K, Shen QR. Nitrogen-inputs regulate microbial functional and genetic resistance and resilience to drying–rewetting cycles, with implications for crop yields. Plant and Soil 2019, https://doi.org/10.1007/s11104-019-04120-y (IF: 3.770, 中科院一区,TOP).
Luo, G.W., Sun B., Li L., Li M.H., Liu M.Q., Zhu Y.Y., Guo S.W., Ling N., Shen Q.R. Understanding how long-term organic amendments increase soil phosphatase activities: insight into phoD- and phoC-harbouring microbial communities. Soil Biology and Biochemistry 2019, 107632 (IF: 5.795, 中科院一区,TOP).
Luo, G.W., Xue C., Jiang Q.H., Xiao Y., Zhang F.G., Guo S.W., Shen Q.R., Ling N. Soil carbon, nitrogen, and phosphorus cycling microbial populations and their resistance to global change depend on soil C:N:P stoichiometry. mSystems, 2020, e00162-20 (IF: 6.519, 二区).
Zhu C., Tian G.L., Luo G.W., Kong Y.L., Guo J.J., Wang M., Guo S.W., Ling N., Shen Q.R. N-fertilizer-driven association between the arbuscular mycorrhizal fungal community and diazotrophic community impacts wheat yield. Agriculture Ecosystems and Environment, 2018, 254(254C):191-201.
Kong Y.L., Zhu C., Ruan Y., Luo G.W., Wang M., Ling N., Shen Q.R., Guo S.W. Are the microbial communities involved in glucose assimilation in paddy soils treated with different fertilization regimes for three years similar? Journal of Soils and Sediments, 2018:1-15.
Guo J.J., Liu W.B., Zhu C., Luo G.W., Kong Y.L., Ling N., Wang M., Dai J.Y., Shen Q.R., Guo S.W. Bacterial rather than fungal community composition is associated with microbial activities and nutrient-use efficiencies in a paddy soil with short-term organic amendments. Plant and Soil, 2017:1-15.
Zhang F.G., Huo Y.Q., Cobb A.B., Luo G.W., Zhou J.Q., Yang G.W. Wilson G.W.T., Zhang Y.J. Trichoderma biofertilizer links to altered soil chemistry, altered microbial communities, and improved grassland biomass. Frontiers in Microbiology, 2018:848-864.
Sun Y.M., Guo J.J., Li Y.R., Luo G.W., Li L., Yuan H.Y., Luis A.J.M., Guo S.W. Negative effects of the simulated nitrogen deposition on plant phenolic metabolism: A meta-analysis. Science of The Total Environment, 2020:137442.
Xie K.L., Guo J.J., Ward K., Luo G.W., Shen Q.R., Guo S.W. The potential for improving rice yield and nitrogen use efficiency in smallholder farmers. Agronomy, 2020, 10:419.
点击下载文件: |