生态系统
生物多样性
环境科学
水田
生态系统服务
湿地
群落结构
污染
Mercury(编程语言)
陆地生态系统
生态系统健康
微生物种群生物学
生态学
土壤水分
环境化学
土壤科学
生物
化学
计算机科学
遗传学
程序设计语言
细菌
作者
Qiang Pu,Kun Zhang,Alexandre J. Poulain,Jiang Liu,Rui Zhang,Mahmoud A. Abdelhafiz,Bo Meng,Xinbin Feng
标识
DOI:10.1016/j.jhazmat.2022.129055
摘要
Soil microbial communities are critical for maintaining terrestrial ecosystems and fundamental ecological processes. Mercury (Hg) is a heavy metal that is toxic to microorganisms, but its effects on microbial community assembly and ecosystem multifunctionality in rice paddy ecosystems remain largely unknown. In the current study, we analyzed the microbial community structure and ecosystem multifunctionality of paddy soils across a Hg contamination gradient. The results demonstrated that Hg contamination significantly altered the microbial community structure. The microbial communities were predominantly driven by deterministic selection rather than stochastic processes. The random forest model and variation partition analysis demonstrated that the Hg level was the most important predictor of microbial profiles. Ecosystem multifunctionality decreased across the Hg concentration gradient, and multifunctionality was significantly correlated with soil biodiversity, suggesting that Hg-induced reductions in soil biodiversity led to reduced ecosystem services. A structural equation model showed that Hg contamination directly and indirectly affected ecosystem multifunctionality. The present work broadens our knowledge of the assembly of the microbiome in rice paddies across a Hg contamination gradient and highlights the significance of soil biodiversity in regulating ecosystem functions, especially in Hg-polluted rice paddies.
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