Deciphering microbial metabolic interactions and their implications for community dynamics in acid mine drainage sediments

基因组 微生物种群生物学 生物修复 微生物群 生物 酸性矿井排水 微生物代谢 生态学 极端环境 同化(音韵学) 环境化学 细菌 生物信息学 化学 污染 基因 遗传学 哲学 语言学
作者
Shao‐Ming Gao,Pandeng Wang,Qi Li,Wensheng Shu,Ling-Yun Tang,Zhi-Liang Lin,Jintian Li,Li‐Nan Huang
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:478: 135478-135478 被引量:2
标识
DOI:10.1016/j.jhazmat.2024.135478
摘要

The microbially-mediated reduction processes have potential for the bioremediation of acid mine drainage (AMD), which represents a worldwide environment problem. However, we know little about the microbial interactions in anaerobic AMD sediments. Here we utilized genome-resolved metagenomics to uncover the nature of cooperative and competitive metabolic interactions in 90 AMD sediments across Southern China. Our analyses recovered well-represented prokaryotic communities through the reconstruction of 2625 population genomes. Functional analyses of these genomes revealed extensive metabolic handoffs which occurred more frequently in nitrogen metabolism than in sulfur metabolism, as well as stable functional redundancy across sediments resulting from populations with low genomic relatedness. Genome-scale metabolic modeling showed that metabolic competition promoted microbial co-occurrence relationships, suggesting that community assembly was dominated by habitat filtering in sediments. Notably, communities colonizing more extreme conditions tended to be highly competitive, which was typically accompanied with increased network complexity but decreased stability of the microbiome. Finally, our results demonstrated that heterotrophic Thermoplasmatota associated with ferric iron and sulfate reduction contributed most to the elevated levels of competition. Our study shed light on the cooperative and competitive metabolisms of microbiome in the hazardous AMD sediments, which may provide preliminary clues for the AMD bioremediation in the future.
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