Variation in microbial communities and network ecological clusters driven by soil organic carbon in an inshore saline soil amended with hydrochar in Yellow River Delta, China

文献类型: 外文期刊

第一作者: Yao, Hui

作者: Yao, Hui;Cheng, Yadong;Kong, Qingxian;Wang, Xiao;You, Xiangwei;Li, Yiqiang;Yao, Hui;Cheng, Yadong;Wang, Xiao;You, Xiangwei;Li, Yiqiang;Rong, Ziguo;Quan, Yue;Zheng, Hao

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关键词: Soil carbon; Hydrochar; Soil microorganism; Ecological cluster; Coastal salt-affected soil; Soil health

期刊名称:ENVIRONMENTAL RESEARCH ( 影响因子:7.7; 五年影响因子:7.7 )

ISSN: 0013-9351

年卷期: 2025 年 264 卷

页码:

收录情况: SCI

摘要: Char materials (e.g., hydrochar) can enhance carbon sequestration, improve soil quality and modulate soil microbial communities to recuperate soil health. However, little is known about the soil organic carbon (SOC) content, as well as the microbial communities and co-occurrence networks in response to hydrochar amendment in an inshore saline soil. Here, the effect of Sesbania cannabina (a halophyte) straw derived hydrochar (SHC) amendment on SOC and labile organic carbon (LOC) fractions and the potential associations among SOC content change, soil C-cycling enzyme activities and microbial communities were illustrated using a pot experiment. SHC effectively improved the contents of SOC and LOC, particularly particulate organic carbon (POC), and stimulated the activities of C-cycling enzymes. Furthermore, SHC induced shift in microbial community compositions and co-occurrence networks, result in decrease in relative abundance of Actinobacteriota and its corresponding ecological cluster, which may favor SOC accumulation. Functional annotation of prokaryotic taxa (FAPROTAX) analysis also revealed a decrease in microbial ecological function related to carbon degradation. These findings provided a deeper insight about the hydrochar-induced SOC enhancement and suggested an efficient approach to improve C sequestration and improve soil health in the coastal salt-affected soil.

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