Different types of steppes could provide he'/> Differentiations of determinants for the community compositions of bacteria fungi and nitrogen fixers in various steppes
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Differentiations of determinants for the community compositions of bacteria fungi and nitrogen fixers in various steppes

机译:各种草原中细菌真菌和固氮剂的群落组成决定因素的差异

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class="enumerated" style="list-style-type:decimal" id="ece34940-list-0001">Different types of steppes could provide heterogeneous habitat environments for underground microorganisms, but much less is known about how soil microbes fit the distinct habitats and what are the underlying mechanisms in shaping their community patterns.We simultaneously examined the community compositions and structures of soil bacteria, fungi, and diazotrophs across desert, typical, and meadow steppes in Inner Mongolia using high‐throughput sequencing.The results showed that soil bacteria, fungi, and diazotrophs exhibited different distribution patterns across steppe types. Although different steppes displayed obvious differences in climate conditions, plant traits, and soil properties, most of bacterial species were shared by all the steppes while only a few species were unique, indicating that the soil bacterial compositions were hardly influenced by the steppe types. Nevertheless, the habitat heterogeneity could cause shifts in the relative abundance of some bacterial groups, which resulted in significant changes in the community structure of soil bacteria across steppes. However, the fungal community compositions and structures were similar in typical and meadow steppes but that in desert steppe were significantly different. Whereas, the community compositions and structures of diazotrophs were strongly related to the steppe types. In this study, the similar parent material backgrounds of the steppe soils might be the important factor in shaping the homologous bacterial compositions. However, the variations in soil fertility, soil water repellency, and plant species across steppes would be the major driving forces in regulating the compositions and structures of fungal communities, while the diazotrophic communities would be more closely related to the changes in plant traits and soil fertility among steppes.Our results provided evidence of habitat specificity for different microbial groups and their underlying drivers.
机译:class =“ enumerated” style =“ list-style-type:decimal” id =“ ece34940-list-0001”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label- size = 0-> 不同类型的草原可以为地下微生物提供不同的栖息地环境,但人们对土壤微生物如何适应不同的栖息地以及塑造其群落模式的潜在机制知之甚少。 我们通过高通量测序同时检查了内蒙古沙漠草原,典型草原和草甸草原上土壤细菌,真菌和重氮营养菌的群落组成和结构。 结果表明,土壤细菌,真菌和重氮营养菌在草原类型之间表现出不同的分布模式。尽管不同的草原在气候条件,植物性状和土壤特性上表现出明显的差异,但是大多数细菌种类被所有草原共有,而只有少数物种是独特的,这表明土壤细菌组成几乎不受草原类型的影响。然而,生境的异质性可能会导致某些细菌群体的相对丰度发生变化,从而导致整个草原土壤细菌的群落结构发生重大变化。然而,典型的草原草甸和草地草原的真菌群落组成和结构相似,而沙漠草原的真菌群落组成和结构却明显不同。而重氮营养菌的群落组成和结构与草原类型密切相关。在这项研究中,草原土壤的相似母本底可能是塑造同源细菌组成的重要因素。然而,草原上土壤肥力,憎水性和植物种类的变化将是调节真菌群落组成和结构的主要驱动力,而重氮营养群落将与植物性状和土壤的变化更密切相关。 我们的结果提供了不同微生物群及其潜在驱动力的生境特异性证据。

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