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The influence of biocrusts on the spatial pattern of soil bacterial communities: A case study at landscape and slope scales

机译:生物乐杀对土壤细菌社区空间模式的影响 - 以横向尺度为例

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Biocrusts are a functional unit in arid and semiarid areas, their development has significant recruitment and screening effects on soil microbial communities. Microbial composition of biocrusts exhibits significant geographical patterns, but the regulation of biocrust development on the geographical patterns in unclear. In this study, we examined bacterial communities from cyanobacterial-lichen and moss crust soils in five desert habitats in northern China, and evaluated the relative importance of environmental factors and biocrust development versus geographic distance to the distance-decay relationship. To explore the effects of the sampling scale on geographical patterns, we also examined soil bacterial communities along the slope of sand dunes. Across the five desert habitats, bacterial a-diversity, phylogenetic diversity, and the dominant bacterial phyla in cyanobacteriallichen crusts did not increase consistently with precipitation increase, instead bacterial community composition was mainly impacted by soil nutrients (SOC, TP) and biocrust development (thickness, cover and Chl a). Bacterial p-diversity in both cyanobacterial-lichen and moss crusts showed strong distance-decay relationships across the landscape scale; bacterial community composition in cyanobacterial-lichen crusts differed significantly among five desert habitats. Environmental and biocrust development variables explained bacterial community variation better than geographic distance, suggesting a weaker influence of dispersal limitation on the bacterial communities in biocrusts. In addition, the distance-decay rate was higher at the slope than that at the landscape scale, suggesting a fast turnover rate of bacterial community communities induced by topography. Our study implies that soil attributes and biocrust development have more profound impacts on soil bacterial communities than precipitation, which provides novel insights into the geographical distribution and assemblage of soil bacterial communities in deserts. Moreover, our study is significant with respect to understanding the potential responses of soil microbial communities to climate change in desert areas under the scenario of increasing precipitation variation.
机译:生物熏化的是干旱和半干旱地区的功能单位,他们的发展对土壤微生物群落具有显着的招生和筛选作用。生物脆性的微生物组成表现出显着的地理模式,而是对地理模式的调控尚不清楚。在这项研究中,我们在中国北部五沙漠栖息地中检测了来自蓝藻 - 地衣和苔藓地壳土壤的细菌群落,并评估了环境因素和生物发展与地理距离与远程衰变关系的相对重要性。为了探讨采样量表对地理样式的影响,我们还沿着沙丘的斜坡检查了土壤细菌社区。跨越五种沙漠栖息地,细菌的多样性,系统发育多样性,以及Cyanobacteriallichen Crusts中的显性细菌Phyla在降水量增加并未始终增加,而是细菌群落组合物主要受土壤营养素(SoC,TP)和生物发育(厚度,封面和chl a)。蓝藻 - 地衣和苔藓地壳中的细菌对多样性显示出横跨景观量表的强距离衰减关系;三种沙漠栖息地的蓝藻 - 地衣地壳中的细菌群落组成显着差异显着。环境和生物宣传变量解释了比地理距离更好的细菌群落变异,这表明分散局限性对比科的细菌社区对细菌群体的影响较弱。此外,距离衰减速率高于景观量表的斜率较高,表明地形诱导的细菌群落社区的快速周转率。我们的研究意味着土壤属性和生物化发展对土壤细菌群体的影响比降水量更为深远,这为土壤中土壤细菌社区的地理分布和组装提供了新的洞察。此外,我们的研究对于了解土壤微生物社区在降水变化的情况下,了解土壤微生物社区对沙漠地区气候变化的潜在反应的重要性。

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