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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Zokor disturbances indicated positive soil microbial responses with carbon cycle and mineral encrustation in alpine grassland
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Zokor disturbances indicated positive soil microbial responses with carbon cycle and mineral encrustation in alpine grassland

机译:Zokor扰动表明了高山草原中碳循环和矿物质结壳的正土壤微生物反应

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摘要

The alpine grassland is a fragile ecosystem sensitive to human disturbance; the Qinghai-Tibetan Plateau alpine grassland is an example with large areas that are currently suffering from degradation. Although subterranean mammals (e.g., the plateau zokor, Eospalax baileyi) are thought to contribute to grassland soil and plant degradation, they are native species and play positive roles in the alpine ecosystem as ecosystem engineers. However, little is known about their effect on soil microbial communities. Using Illumina sequencing of the 16S rRNA gene and the internal transcribed spacer 2 (ITS2) regions, we compared soil prokaryotic and fungal community composition and diversity in areas disturbed by plateau zokors during the grassland recovery process. We found an increase in the number of observed operational taxonomic units (OTUs) of soil prokaryotic and fungal microbes, while the community structure of the microbes became significantly divergent. Soil properties, plant cover, and aboveground biomass explained the majority of the changes in microbial communities, suggesting that the changes in soil and plant characteristics mainly regulate the response of soil microbes to zokor disturbance in alpine grasslands. Zokor disturbances result in positive soil microbial responses in phyla with carbon cycle and mineral encrustation associations, suggesting a positive role for soil microbial community functions. Our findings provide novel evidence that zokors are important ecosystem engineers essential for alpine ecosystem functions.
机译:高山草原是一种对人类干扰敏感的脆弱的生态系统;青藏高原高原草原是目前遭受退化的大面积的一个例子。虽然船舶哺乳动物(例如,高原Zokor,EoSpalax Baileyi)被认为有助于草原土壤和植物退化,它们是天然物种,并在高山生态系统中发挥阳性作用作为生态系统工程师。然而,对它们对土壤微生物群落的影响很少。使用16S rRNA基因的illumina测序和内部转录的间隔2(ITS2)区域,我们在草地恢复过程中比较了高原议员受到干扰的地区的土壤原核和真菌群落组成和多样性。我们发现观察到的土壤原核和真菌微生物的观察业务分类单位(OTU)的数量增加,而微生物的群落结构变得显着发散。土壤性质,植物覆盖和地上生物量解释了微生物社区的大部分变化,这表明土壤和植物特征的变化主要调节土壤微生物对高山草原垄断障碍的反应。 Zokor扰动导致碳循环和矿物结壳关联的脊髓阳性土壤微生物反应,表明土壤微生物群落功能的积极作用。我们的调查结果提供了新的证据,即宗旨是对高山生态系统功能至关重要的重要生态系统工程师。

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