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Taxon-Function Decoupling as an Adaptive Signature of Lake Microbial Metacommunities Under a Chronic Polymetallic Pollution Gradient

机译:在慢性多金属污染梯度下分类单元功能解耦作为湖泊微生物元群落的自适应特征。

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摘要

Adaptation of microbial communities to anthropogenic stressors can lead to reductions in microbial diversity and disequilibrium of ecosystem services. Such adaptation can change the molecular signatures of communities with differences in taxonomic and functional composition. Understanding the relationship between taxonomic and functional variation remains a critical issue in microbial ecology. Here, we assessed the taxonomic and functional diversity of a lake metacommunity system along a polymetallic pollution gradient caused by 60 years of chronic exposure to acid mine drainage (AMD). Our results highlight three adaptive signatures. First, a signature of taxon—function decoupling was detected in the microbial communities of moderately and highly polluted lakes. Second, parallel shifts in taxonomic composition occurred between polluted and unpolluted lakes. Third, variation in the abundance of functional modules suggested a gradual deterioration of ecosystem services (i.e., photosynthesis) and secondary metabolism in highly polluted lakes. Overall, changes in the abundance of taxa, function, and more importantly the polymetallic resistance genes such as copA, copB, czcA, cadR, cCusA, were correlated with trace metal content (mainly Cadmium) and acidity. Our findings highlight the impact of polymetallic pollution gradient at the lowest trophic levels.
机译:使微生物群落适应人为压力源可导致微生物多样性减少和生态系统服务不平衡。这种适应可以改变具有不同分类和功能组成的群落的分子特征。理解分类学和功能变异之间的关系仍然是微生物生态学中的关键问题。在这里,我们评估了沿60年长期暴露于酸性矿山排水(AMD)所造成的多金属污染梯度,沿湖泊多社区系统的分类学和功能多样性。我们的结果突出了三个自适应签名。首先,在中度和高度污染的湖泊的微生物群落中发现了分类单元功能分离的特征。第二,在污染湖和未污染湖之间发生了分类学组成的平行变化。第三,功能模块丰富度的变化表明,在高度污染的湖泊中,生态系统服务(即光合作用)和次生代谢逐渐恶化。总体而言,分类单元,功能以及更重要的多金属抗性基因(例如copA,copB,czcA,cadR,cCusA)的丰度变化与痕量金属含量(主要是镉)和酸度相关。我们的发现突出了最低营养水平下多金属污染梯度的影响。

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