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Microbial community composition in sediments resists perturbation by nutrient enrichment

机译:沉积物中的微生物群落组成可抵抗营养富集的干扰

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摘要

Functional redundancy in bacterial communities is expected to allow microbial assemblages to survive perturbation by allowing continuity in function despite compositional changes in communities. Recent evidence suggests, however, that microbial communities change both composition and function as a result of disturbance. We present evidence for a third response: resistance. We examined microbial community response to perturbation caused by nutrient enrichment in salt marsh sediments using deep pyrosequencing of 16S rRNA and functional gene microarrays targeting the nirS gene. Composition of the microbial community, as demonstrated by both genes, was unaffected by significant variations in external nutrient supply in our sampling locations, despite demonstrable and diverse nutrient-induced changes in many aspects of marsh ecology. The lack of response to external forcing demonstrates a remarkable uncoupling between microbial composition and ecosystem-level biogeochemical processes and suggests that sediment microbial communities are able to resist some forms of perturbation.
机译:细菌群落中的功能冗余有望使微生物群落通过扰乱生存而不受干扰,尽管群落组成发生了变化。然而,最近的证据表明,微生物群落由于干扰而改变了组成和功能。我们提出了第三种回应的证据:抵抗。我们使用16S rRNA的深焦磷酸测序和靶向nirS基因的功能基因微阵列,研究了盐沼沉积物中营养富集引起的微生物群落对摄动的反应。尽管这两个基因都表明了微生物群落的组成,但是在沼泽生态学的许多方面,养分引起的变化是多样的,但不受采样地点外部养分供应量显着变化的影响。对外部强迫的缺乏反应表明,微生物组成与生态系统水平的生物地球化学过程之间存在显着的脱钩,这表明沉积物微生物群落能够抵抗某些形式的扰动。

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