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Environmental Filtering Process Has More Important Roles than Dispersal Limitation in Shaping Large-Scale Prokaryotic Beta Diversity Patterns of Grassland Soils

机译:在塑造草原土壤的大规模原核β多样性格局中,环境过滤过程比分散限制具有更重要的作用

摘要

Despite the utmost importance of microorganisms in maintaining ecosystem functioning and their ubiquitous distribution, our knowledge of the large-scale pattern of microbial diversity is limited, particularly in grassland soils. In this study, the microbial communities of 99 soil samples spanning over 3000 km across grassland ecosystems in northern China were investigated using high-throughput sequencing to analyze the beta diversity pattern and the underlying ecological processes. The microbial communities were dominated by Proteobacteria, Actinobacteria, Acidobacteria, Chloroflexi, and Planctomycetes across all the soil samples. Spearman's correlation analysis indicated that climatic factors and soil pH were significantly correlated with the dominant microbial taxa, while soil microbial richness was positively linked to annual precipitation. The environmental divergence-dissimilarity relationship was significantly positive, suggesting the importance of environmental filtering processes in shaping soil microbial communities. Structural equation modeling found that the deterministic process played a more important role than the stochastic process on the pattern of soil microbial beta diversity, which supported the predictions of niche theory. Partial mantel test analysis have showed that the contribution of independent environmental variables has a significant effect on beta diversity, while independent spatial distance has no such relationship, confirming that the deterministic process was dominant in structuring soil microbial communities. Overall, environmental filtering process has more important roles than dispersal limitation in shaping microbial beta diversity patterns in the grassland soils.
机译:尽管微生物在维持生态系统功能及其无处不在的分布中极为重要,但我们对微生物多样性的大规模模式的了解仍然有限,尤其是在草地土壤中。在这项研究中,使用高通量测序分析了中国北方草原生态系统中超过3000 km的99个土壤样品的微生物群落,以分析β多样性模式及其潜在的生态过程。在所有土壤样品中,细菌群落主要由变形杆菌,放线菌,酸性杆菌,弯曲菌和扁平菌组成。 Spearman的相关性分析表明,气候因素和土壤pH值与优势微生物分类群显着相关,而土壤微生物丰富度与年降水量呈正相关。环境差异-异同关系显着正相关,表明环境过滤过程对塑造土壤微生物群落的重要性。结构方程模型发现,确定性过程在土壤微生物β多样性模式上比随机过程起着更重要的作用,这支持了生态位理论的预测。局部壁炉架试验分析表明,独立的环境变量对β多样性有显着影响,而独立的空间距离则没有这种关系,这证明确定性过程在构造土壤微生物群落中占主导地位。总体而言,在草地土壤中塑造微生物β多样性模式方面,环境过滤过程比分散限制具有更重要的作用。

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