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Variability in the Response of Bacterial Community Assembly to Environmental Selection and Biotic Factors Depends on the Immigrated Bacteria, as Revealed by a Soil Microcosm Experiment

机译:细菌群落组件与环境选择的响应和生物因子的可变性取决于移民细菌,如土壤微科本实验所揭示的那样

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摘要

The soil microbiota conducts important biological ecosystem functions, but the mechanism underlying community-environment interactions for soil microbiota remains unclear. By using two distinct soils for cross inoculation, we successfully simulated the assembly of the bacterial community in sterile soil. Thus, the reasons why inoculum and recipient have dominated community assembly in previous investigations are investigated in this study. We found that inoculated bacteria presided over environmental selection for community assembly due to the varied difference of ecological equivalent bacteria, either divergent or convergent. The significance of neutrality for the ecologically equivalent bacterial species that immigrated into the recipients should be emphasized in exploring the mechanisms of community assembly. Our finding is helpful for understanding the community-environment interaction, a basic question in ecology, and it would shed light on this issue that has perplexed scientists for many years.Exploring the assembly mechanism of microbiota is critical for understanding soil ecosystem functions. However, the relative importance of different biotic and abiotic factors in determining the bacterial community has not been properly clarified. In this study, the effects of inocula and recipients on the assembly of the soil community were investigated to evaluate their importance by inoculation experiments with sterile soil. Two distinct soils, conventional nitrogen-fertilized soil and aromatic-compound-contaminated soil, were sterilized, cross inoculated, and incubated for 2 months under different inoculation doses and oxygen conditions. The results showed that the greatest variation in community structure emerged in the samples inoculated with distinct inocula rather than in the samples of different soil recipients. The phylogenies in the two inocula were diverse and dissimilar, although there were many ecologically equivalent bacteria. When the inocula with dissimilar ecologically equivalent species were used, the assembled communities were primarily determined by the inocula as indicated by the beta diversity and variation partitioning analyses. In contrast, environmental selection dominated the process when ecologically equivalent species in the inocula were similar, as when only one type of inoculum was used, where the soil habitat selected the most adaptive bacteria from the defined inoculum pool. These results indicate that inoculated bacteria are dominant over environmental selection if they are sufficiently dissimilar, although the effect of environmental selection is more obvious when similar bacteria are inoculated in the soil for community assembly. Our findings suggest that the immigration of exotic bacteria could be a primary factor impacting community assembly.
机译:土壤微生物进行重要的生物生态系统的功能,但潜在的社会与环境的相互作用土壤微生物的机制尚不清楚。通过使用交叉接种两种不同的土壤,我们成功地模拟了细菌群落的组件在无菌土壤。因此,为什么接种和收件人都在以前的调查组装为主的社会原因,在这项研究进行了研究。我们发现,接种细菌主持社区装配了环保的选择,由于生态相当于细菌,无论是发散或收敛的不同的差异。中立的生态相当于细菌物种迁入收件人的意义应该在探索社区的机制组装强调。我们的发现对于理解社区环境的相互作用,在生态学的一个基本问题有帮助的,它会在这个问题上已经困扰了科学家很多years.Exploring菌群的组装机制对于理解土壤生态系统功能的关键线索。然而,不同的生物,并在确定细菌群落非生物因素的相对重要性还没有被正确地澄清。在这项研究中,接种者和接受者对土壤社区的组件的影响进行了调查,以评估用无菌接种土壤实验的重要性。两个不同的土壤,常规氮气体受精土壤和芳香族化合物污染的土壤,进行灭菌,接种交叉,并孵育在不同接种剂量和氧条件下2个月。结果表明,在社会结构中的最大变化具有鲜明的接种,而不是不同的土壤收件人的样品中接种样品中出现。两个接种的系统发育是多样的和不一样的,虽然有许多生态相当于细菌。当与不同的生态等效种接种物中使用的,组装的社区主要是由接种物由beta多样性和方差分解分析所指示的确定。与此相反,环境选择为主的过程当在接种生态等效的物种是相似的,因为当仅使用一种类型的接种物,其中所述土壤栖息地选自所定义的接种物池最自适应细菌。这些结果表明,接种细菌对环境的选择优势,如果他们有足够的不同,虽然在类似的细菌在土壤接种社区装配环境选择的效果更明显。我们的研究结果表明,异国细菌的移民可能是影响社区集会的主要因素。

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