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Comparison of microbial taxonomic and functional shift pattern along contamination gradient

机译:沿污染梯度的微生物分类和功能转变模式的比较

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Background The interaction mechanism between microbial communities and environment is a key issue in microbial ecology. Microbial communities usually change significantly under environmental stress, which has been studied both phylogenetically and functionally, however which method is more effective in assessing the relationship between microbial communities shift and environmental changes still remains controversial. Results By comparing the microbial taxonomic and functional shift pattern along heavy metal contamination gradient, we found that both sedimentary composition and function shifted significantly along contamination gradient. For example, the relative abundance of Geobacter and Fusibacter decreased along contamination gradient (from high to low), while Janthinobacterium and Arthrobacter increased their abundances. Most genes involved in heavy metal resistance (e.g., metc , aoxb and mer ) showed higher intensity in sites with higher concentration of heavy metals. Comparing the two shift patterns, there were correlations between them, because functional and phylogenetic β-diversities were significantly correlated, and many heavy metal resistance genes were derived from Geobacter , explaining their high abundance in heavily contaminated sites. However, there was a stronger link between functional composition and environmental drivers, while stochasticity played an important role in formation and succession of phylogenetic composition demonstrated by null model test. Conclusions Overall our research suggested that the responses of functional traits depended more on environmental changes, while stochasticity played an important role in formation and succession of phylogenetic composition for microbial communities. So profiling microbial functional composition seems more appropriate to study the relationship between microbial communities and environment, as well as explore the adaptation and remediation mechanism of microbial communities to heavy metal contamination.
机译:背景技术微生物群落与环境之间的相互作用机制是微生物生态学中的关键问题。微生物群落通常在环境胁迫下发生显着变化,这已在系统发育和功能上进行了研究,然而,哪种方法更有效地评估微生物群落转移与环境变化之间的关系仍然存在争议。结果通过比较微生物分类学和功能变化模式随重金属污染梯度的变化,我们发现沉积物组成和功能均沿污染梯度显着变化。例如,随着污染梯度(从高到低),Geobacter和Fusibacter的相对丰度降低,而Janthinobacterium和Arthrobacter的丰度则升高。与重金属抗性有关的大多数基因(例如metc,aoxb和mer)在重金属浓度较高的位点显示较高的强度。比较这两个转变模式,它们之间存在相关性,因为功能性和系统发生性β多样性显着相关,并且许多重金属抗性基因均来自Geobacter,这说明它们在重度污染的地点具有很高的丰度。然而,功能模型和环境驱动因素之间存在更强的联系,而随机性在系统模型的形成和演替中发挥了重要作用,这通过零模型测试证明。结论总体而言,我们的研究表明,功能性状的响应更多地取决于环境变化,而随机性在微生物群落系统组成的形成和演替中起着重要作用。因此,分析微生物功能组成似乎更适合研究微生物群落与环境之间的关系,并探讨微生物群落对重金属污染的适应和修复机制。

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