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Nitrate addition inhibited methanogenesis in paddy soils under long-term managements

Plant Soil Environ. 2018; 
Jun WANG, Tingting XU, Lichu YIN, Cheng HAN, Huan DENG, Yunbin JIANG, Wenhui ZHONG,
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Gene Synthesis Three clones containing the correct gene insert fragments from each DGGE band were sequenced (Genscript, Nanjing, China). Phylogenetic analysis was performed with MEGA 4.0 according to the protocol described previously (Tamura et al. 2007). Get A Quote

摘要

Wang J., Xu T.T., Yin L.C., Han C., Deng H., Jiang Y.B., Zhong W.H. (2018): Nitrate addition inhibited methanogenesis in paddy soils under long-term managements. Plant Soil Environ., 64: 393–399. Rice fields are a major source of atmospheric methane (CH4). Nitrate has been approved to inhibit CH4 production from paddy soils, while fertilization as well as water management can also affect the methanogenesis. It is unknown whether nitrate addition might result in shifts in the methanogenesis and methanogens in paddy soils influenced by different practices. Six paddy soils of different fertilizer types and groundwater tables were collected from a longterm experiment site. CH4 production rate and methanogenic arc... More

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