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【LorMe云讲堂】孙波:气候-作物-施肥-土壤对养分转化微生物的影响

 LorMe青年 2021-07-28

第十八期

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2020年11月4日 晚上19:30点 

本期主讲 | 中国科学院南京土壤研究所  孙波 研究员

研究内容 | 土壤微生物组与养分周转



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海报信息




代表性论文


[1] Jiang Y, Luan L, Hu K, Liu M, Chen Z, Geisen S, Chen X, Li H, Xu Q, Bonkowski M, Sun B. Trophic interactions as determinants of the arbuscular mycorrhizal fungal community with cascading plant-promoting consequences. Microbiome, 2020.

Doi: 10.1186/s40168-020-00918-6

[2] Chen Y, Bonkowski M, Shen Y, Griffiths BS, Jiang Y, Wang X, Sun B. Root ethylene mediates rhizosphere microbial community reconstruction when chemically detecting cyanide produced by neighbouring plants. Microbiome, 2020.

Doi: 10.1186/s40168-019-0775-6

[3] Luan L, Liang C, Chen L, Wang H, Xu Q, Jiang Y, Sun B. Coupling Bacterial Community Assembly to Microbial Metabolism across Soil Profiles. mSystems, 2020.

Doi: 10.1128/mSystems.00298-20

[4] Chen L, Jiang Y, Liang C, Luo Y, Xu Q, Han C, Zhao Q, Sun B. Competitive interaction with keystone taxa induced negative priming under biochar amendments. Microbiome, 2019.

Doi: 10.1186/s40168-019-0693-7

[5] Xiao X, Liang Y, Zhou S, Zhuang S, Sun B. Fungal community reveals less dispersal limitation and potentially more connected network than that of bacteria in bamboo forest soils. Mol Ecol, 2018 .

Doi: 10.1111/mec.14428

[6] Jiang Y, Zhou H, Chen L, Yuan Y, Fang H, Luan L, Chen Y, Wang X, Liu M, Li H, Peng X, Sun B. Nematodes and Microorganisms Interactively Stimulate Soil Organic Carbon Turnover in the Macroaggregates. Front Microbiol, 2018.

Doi: 10.3389/fmicb.2018.02803

[7] Liang Y, Jiang Y, Wang F, Wen C, Deng Y, Xue K, Qin Y, Yang Y, Wu L, Zhou J, Sun B. Long-term soil transplant simulating climate change with latitude significantly alters microbial temporal turnover. ISME J, 2015.

Doi: 10.1038/ismej.2015.78

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