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土壤微生物群落组成和功能对长期重金属暴露的响应。

Response of soil microbial community composition and function to prolonged heavy metal exposure.

作者信息

Zhao Zhigang, Wang Yongfeng, Kong Linghao, Zhao Liyuan, Li Yachao, He Teng, Liu Shigao, Han Xiangcai, Gu Songsong, Wu Shuyu, Zhang Jiahao, Zhang Jintao, Li Bing

机构信息

School of Earth Sciences, China University of Geosciences, Wuhan, 430074, China.

Yantai Center of Coastal Zone Geological Survey, China Geological Survey, Yantai, 264000, China.

出版信息

Environ Monit Assess. 2025 Jul 9;197(8):883. doi: 10.1007/s10661-025-14228-7.

Abstract

Understanding the effects of heavy metals on microbial community composition and function is crucial for environmental restoration. In this paper, soil samples with low, medium, and high levels of potential ecological risk (RI) associated with heavy metals were collected from a gold mining area in northern Laizhou, Shandong Province, Eastern China. The impact of heavy metals on soil microbial communities was assessed through Illumina high-throughput sequencing of 16S rRNA gene amplicons. The results demonstrated that while microbial community evenness remained relatively stable across varying RI levels, significant differences were observed in microbial community richness and composition. Canonical correlation analysis (CCA) revealed that nutrients were the primary factors shaping microbial communities under low RI levels, whereas pH and heavy metals played dominant roles under high RI levels. At the genus level, several taxa, including Acinetobacter, Paracoccus, Marinobacter, Halomonas, Streptococcus, Lactobacillus, Sulfobacillus, Sulfurifustis, Bacillus, and Pseudomonas, were identified as particularly tolerant to heavy metal stress. Co-occurrence network analysis showed that microbial networks were more complex and stable under low contamination, while increased cooperative interactions were observed under high contamination. At the phylum level, Proteobacteria, Firmicutes, and Bacteroidetes emerged as the key taxa in high RI soils. Functional predictions indicated that microbial processes related to replication and repair, extracellular polymeric substance (EPS) biosynthesis, membrane transport, and heavy metal resistance were significantly enhanced in high-risk environments. Keystone taxa employed various survival strategies, including extracellular polymerization, nutrient uptake, intracellular sequestration, active efflux systems, and collaboration with plants, to resist heavy metal stress. These findings provide new insights into the mechanisms of microbial adaptation and remediation in heavy metal-contaminated soils.

摘要

了解重金属对微生物群落组成和功能的影响对于环境修复至关重要。本文从中国东部山东省莱州北部的一个金矿区采集了与重金属相关的潜在生态风险(RI)水平低、中、高的土壤样本。通过对16S rRNA基因扩增子进行Illumina高通量测序,评估了重金属对土壤微生物群落的影响。结果表明,虽然微生物群落均匀度在不同RI水平下保持相对稳定,但在微生物群落丰富度和组成方面观察到显著差异。典范对应分析(CCA)表明,在低RI水平下,养分是塑造微生物群落的主要因素,而在高RI水平下,pH值和重金属起主导作用。在属水平上,包括不动杆菌属、副球菌属、海杆菌属、嗜盐单胞菌属、链球菌属、乳杆菌属、硫杆菌属、硫火菌属、芽孢杆菌属和假单胞菌属在内的几个分类群被确定为对重金属胁迫特别耐受。共现网络分析表明,在低污染条件下微生物网络更复杂且稳定,而在高污染条件下观察到合作相互作用增加。在门水平上,变形菌门、厚壁菌门和拟杆菌门是高RI土壤中的关键分类群。功能预测表明,在高风险环境中,与复制和修复、细胞外聚合物(EPS)生物合成、膜运输和重金属抗性相关的微生物过程显著增强。关键分类群采用各种生存策略,包括细胞外聚合、养分吸收、细胞内螯合、主动外排系统以及与植物合作,以抵抗重金属胁迫。这些发现为重金属污染土壤中微生物适应和修复机制提供了新的见解。

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