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南京师范大学,生物技术专业,学士学位(2002)

中国科学技术大学,生物化学与分子生物学专业,硕士学位(2005)

中国科学院南京土壤研究所,博士学位(2008)

中国科学院南京土壤研究所,助理研究员(2008-2016)

中国科学院南京土壤研究所,副研究员(20016-)

1 南京土壤研究所“一三五”计划和领域前沿项目( ISSASIP1642)-长期不同施肥处理下红壤水稻土有机碳转化和微生物计量特征变化(2016.1-2018.12)

2 973计划-东南丘陵区红壤酸化过程与调控原理-红壤酸化阻控原理与对策及生产力恢复(2014CB441003-2)-硝化抑制和有机物料对红壤酸化阻控机制与效果 (2014.1-2018.8)

3 国家科技支撑计划-中低产田改良科技工程(2012BAD05B00)-东南山地丘陵酸化贫瘠红壤旱地改良技术集成示范-秸秆有机废弃物高效腐熟利用技术(2012.1-2016.12)

4 国家自然科学基金青年科学基金项目(41201242)-红壤水稻土微生物生物量磷变化及其与土壤磷有效性的关系(2013.1-2015.12)

1.Liu M, Liu J, Jiang CY, Wu M, Song RS, Gui RY, Jia JX, Li ZP. Improved nutrient status affects soil microbial biomass, respiration, and functional diversity in a Lei bamboo plantation under intensive management. Journal of Soils and Sediments, 2017, In Press
2.Liu M, Li ZP, Zhang TL. Changes of soil ecological stoichiometric ratios under different land uses in a small catchment of subtropical China. Acta Agriculturae Scandinavica, Section B — Soil & Plant Science, 2016, 66(1): 67-74.
3.Li M, Liu M, Li ZP, Jiang CY, Wu M. Soil N transformation and microbial community structure asaffected by adding biochar to a paddy soil of subtropical China. Journal of Integrative Agriculture, 2016, 15(1): 209–219
4.Zheng SX, Cao HC, Huang QY, Liu M, Lin XG, Li ZP. Long-term fertilization of P coupled with N greatly improved microbial activities in a paddy soil ecosystem derived from infertile land. European Journal of Soil Biology, 2016, 72:14-20.
5.Ma XY, Liu M, Li ZP. Changes in microbial properties and community composition in acid soils receiving wastewater from concentrated animal farming operations. Applied Soil Ecology, 2015, 90: 11-17.
6.Tang XJ, Lou CL, Wang SX, Lu YH, Liu M, Muhammad Z. Hashmi, Liang XQ, Li ZP, Liao YL, Qin WJ, Fan F, Xu JM, Philip C. Brookes. Effects of long-term manure applications on the occurrence of antibiotics and antibiotic resistance genes (ARGs) in paddy soils: Evidence from four field experiments in south of China. Soil Biology & Biochemistry, 2015, 90: 179-187.
7.Chen XF, Li ZP, Liu M, Jiang CY, Che YP. Microbial community and functional diversity associated with different aggregate fractions of a paddy soil fertilized with organic manure and/or NPK fertilizer for 20 years. J. Soils Sediments, 2015, 15, 292-301.
8.Ma XY, Liu M, Li ZP. Dynamics of Bacterial metabolic profile and community structure during the mineralization of organic carbon in intensive swine farm wasterwater. Chilean Journal of Agricultural Research, 2015, 75(2): 224-231.
9.Li M, Liu M, Stephen Joseph, Jiang CY, Wu M, Li ZP. Change in water extractable organic carbon and microbial PLFAs of biochar during incubation with an acidic paddy soil. Soil Research, 2015, 53: 763-771.
10.Liu M, Li ZP, Zhai XC. Peanut Straw Decomposition Products Promoted by Chemical Additives and Their Effect on Enzymatic Activity and Microbial Functional Diversity in Red Soil. Compost Science & Utilization, 2013, 21:76–86
11.Li FL, Liu M, Li ZP, Jiang CY, Han FX, Che YP. Changes in soil microbial biomass and functional diversity with a nitrogen gradient in soil columns. Applied Soil Ecology, 2013, 64: 1-6.
12.Lv MR, Li ZP, Che YP, Han F. X., Liu M. Soil organic C, nutrients, microbial biomass, and grain yield of rice (Oryza sativa L.) after 18 years of fertilizer application to an infertile paddy soil. Biol. Fertil. Soils, 2011, 47(7): 777-783.
13.Liu M, Li ZP, Zhang TL, Jiang CY, Che YP. Discrepancy in response of rice yield and soil fertility to long-term chemical fertilization and organic amendments in paddy soils cultivated from infertile upland in subtropical China. Agricultural Sciences in China, 2011, 10(2): 259-266.
14.Liu M, Klemens Ekschmitt, Zhang B, Stephanie I J Holzhauer, Li ZP, Zhang TL, Sabine Rauch. Effect of Intensive Inorganic Fertilizer Application on Microbial Properties in a Paddy Soil of Subtropical China. Agricultural Sciences in China, 2011, 10(11): 1758-1764.