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首页> 外文期刊>Microbial Ecology: An International Journal >Shifting Species Interaction in Soil Microbial Community and Its Influence on Ecosystem Functions Modulating
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Shifting Species Interaction in Soil Microbial Community and Its Influence on Ecosystem Functions Modulating

机译:土壤微生物群落中迁移物种相互作用及其对生态系统功能调控的影响

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The supportive and negative evidence for the stress gradient hypothesis (SGH) led to an ongoing debate among ecologists and called for new empirical and theoretical work. In this study, we took various biological soil crust (BSCs) samples along a spatial gradient with four environmental stress levels to examine the fitness of SGH in microbial interactions and evaluate its influence on biodiversity-function relationships in BSCs. A new assessment method of species interactions within hard-cultured invisible soil community was employed, directly based on denaturing gradient gel electrophoresis fingerprint images. The results showed that biotic interactions in soil phototroph community dramatically shifted from facilitation to dominant competition with the improvement of microhabitats. It offered new evidence, which presented a different perspective on the hypothesis that the relative importance of facilitation and competition varies inversely along the gradient of abiotic stress. The path analysis indicated that influence of biotic interactions (r = 0.19, p < 0.05) on ecosystem functions is lower than other community properties (r = 0.62, p < 0.001), including soil moisture, crust coverage, and biodiversity. Furthermore, the correlation between species interactions and community properties was non-significant with low negative influence (r = -0.27, p > 0.05). We demonstrate that the inversion of biotic interaction as a response to the gradient of abiotic stresses existed not only in the visible plant community but also in the soil microbial community.
机译:压力梯度假说(SGH)的支持性和否定性证据引起了生态学家之间的持续争论,并呼吁进行新的经验和理论研究。在这项研究中,我们采用具有四个环境应力水平的空间梯度的各种生物土壤地壳(BSC)样品,研究了SGH在微生物相互作用中的适应性,并评估了其对BSC中生物多样性功能关系的影响。直接在变性梯度凝胶电泳指纹图谱的基础上,采用了一种新的方法来评估硬培养的不可见土壤群落中的物种相互作用。结果表明,随着微生境的改善,土壤光养群体中的生物相互作用从促进作用显着转变为优势竞争。它提供了新的证据,对以下假设提出了不同的观点:促进和竞争的相对重要性随非生物胁迫的梯度成反比。路径分析表明,生物相互作用(r = 0.19,p <0.05)对生态系统功能的影响低于其他群落特性(r = 0.62,p <0.001),包括土壤水分,地壳覆盖率和生物多样性。此外,物种相互作用与群落特性之间的相关性不显着,负面影响低(r = -0.27,p> 0.05)。我们证明,作为对非生物胁迫梯度的响应,生物相互作用的转化不仅存在于可见植物群落中,而且还存在于土壤微生物群落中。

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