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Permafrost thawing exhibits a greater influence on bacterial richness and community structure than permafrost age in Arctic permafrost soils

机译:Permafrost解冻对细菌性丰富和群落结构的影响更大影响,而不是北极永久冻土土壤

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Global warming accelerates permafrost thawing and changes its microbial community structure, but little is known about how microorganisms in permafrost with different ages respond to thawing. Herein, we disentangled the relative importance of permafrost age (young, medium-aged, old, and ancient, spanning from 50 to 5000?years) and thawing status (active, transitional, and permanently frozen) in shaping bacterial community structure using HiSeq sequencing of the 16S rRNA gene. Our results revealed significant influences of both permafrost thawing and age on bacterial richness. The bacterial richness was significantly higher in the young and thawed permafrost, and the richness increase was mainly observed in Firmicutes, Actinobacteria, Chloroflexi, Deltaproteobacteria, and Alphaproteobacteria. Permafrost thawing led to a gradual change in bacterial community structure and increased contribution of determinism. Permutational analysis of variance demonstrated that thawing significantly changed bacterial community structure at all soil ages, but the community convergence due to permafrost thawing was not observed. Structural equation modeling revealed that permafrost thawing exhibited a greater influence on both bacterial richness and community structure than permafrost age. Our results indicate that microorganisms in permafrost with different ages respond differently to thawing, which eventually leads to distinct bacterial community compositions and different organic carbon decomposition processes in Arctic permafrost.
机译:全球变暖加速永久冻土解冻并改变其微生物群落结构,但众所周知的是多年复膜如何与不同年龄的微生物反应解冻。在此,我们解开了永久性年龄(年轻,中年,老年人,古代,跨越50至5000岁的古代)的相对重要性,并使用HISEQ测序在整形细菌群落结构中解冻状态(活性,过渡和永久冷冻) 16S rRNA基因。我们的结果表明,Permafrost解冻和年龄对细菌性质的显着影响。年轻和解冻的永久冻土中的细菌性质显着较高,富裕增加主要观察到迫切性,抗菌剂,氯昔洛薄曲霉(Chloroflexi,Deltaproteobacteria和alphaptobacteria)。 Permafrost解冻导致细菌群落结构的逐渐变化和确定性贡献增加。依赖性方差分析表明,解冻在所有土壤中的细菌群落结构显着改变,但未观察到由于多年冻土解冻引起的社区趋同。结构方程模型揭示了Permafrost解冻对细菌性质和群落结构的影响更大,而不是多年冻土年龄。我们的研究结果表明,不同年龄不同年龄的多糖的微生物对解冻的反应不同,这最终导致北极永久冻土的不同细菌群落组合物和不同的有机碳分解过程。

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