Co-incorporation of Chinese milk vetch (Astragalus sinicus L.) and rice (Oryza sativa L.) straw minimizes CH4 emissions by changing the methanogenic and methanotrophic communities in a paddy soil

Author:

Zhou Guopeng12,Gao Songjuan3,Xu Changxu4,Zeng Naohua1,Rees Robert M.5,Cao Weidong13

Affiliation:

1. Key Laboratory of Plant Nutrition and Fertilizer, Ministry of Agriculture and Rural Affairs / Institute of Agricultural Resources and Regional Planning; Chinese Academy of Agricultural Sciences; Beijing China

2. The Graduate School; Chinese Academy of Agricultural Sciences; Beijing China

3. College of Resources and Environmental Sciences; Nanjing Agricultural University; Nanjing China

4. Institute of Soil&Fertilizer and Resource&Environment; Jiangxi Academy of Agricultural Sciences; Nanchang China

5. Scotland's Rural College (SRUC); UK

Funder

China Agriculture Research System - Green Manure

China National Crop Germplasm Resources Platform for Green Manure

Chinese Outstanding Talents Program in Agricultural Science

Science and Technology Innovation Project of Chinese Academy of Agricultural Sciences

Publisher

Wiley

Subject

Soil Science

Reference71 articles.

1. Effects of rice straw and nitrogen fertilization on greenhouse gas emissions and carbon storage in tropical flooded soil planted with rice;Bhattacharyya;Soil and Tillage Research,2012

2. Comparison of pmoA PCR primer sets as tools for investigating methanotroph diversity in three Danish soils;Bourne;Applied and Environmental Microbiology,2001

3. Nonparametric estimation of the number of classes in a population;Chao;Scandinavian Journal of Statistics,1984

4. Nonparametric estimation of Shannon's index of diversity when there are unseen species in sample;Chao;Environmental and Ecological Statistics,2003

5. Non-parametric multivariate analyses of changes in community structure;Clarke;Australian Journal of Ecology,1993

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