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Soil bacterial and fungal diversity differently correlated with soil biochemistry in alpine grassland ecosystems in response to environmental changes

机译:高寒草原生态系统中土壤细菌和真菌多样性与土壤生物化学对环境变化的响应不同

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摘要

To understand effects of soil microbes on soil biochemistry in alpine grassland ecosystems under environmental changes, we explored relationships between soil microbial diversity and soil total nitrogen, organic carbon, available nitrogen and phosphorus, soil microbial biomass and soil enzyme activities in alpine meadow, alpine steppe and cultivated grassland on the Qinghai-Tibetan plateau under three-year warming, enhanced precipitation and yak overgrazing. Soil total nitrogen, organic carbon and NH4-N were little affected by overgrazing, warming or enhanced precipitation in three types of alpine grasslands. Soil microbial biomass carbon and phosphorus along with the sucrase and phosphatase activities were generally stable under different treatments. Soil NO3-N, available phosphorus, urease activity and microbial biomass nitrogen were increased by overgrazing in the cultivated grassland. Soil bacterial diversity was positively correlated with, while soil fungal diversity negatively with soil microbial biomass and enzyme activities. Soil bacterial diversity was negatively correlated with, while soil fungal diversity positively with soil available nutrients. Our findings indicated soil bacteria and fungi played different roles in affecting soil nutrients and microbiological activities that might provide an important implication to understand why soil biochemistry was generally stable under environmental changes in alpine grassland ecosystems.
机译:为了了解环境变化下土壤微生物对高寒草地生态系统土壤生物化学的影响,我们探讨了高寒草甸,高寒草原土壤微生物多样性与土壤总氮,有机碳,有效氮和磷,土壤微生物量和土壤酶活性之间的关系。三年变暖,青藏高原上的耕地,降水增加和牛过度放牧。在三种类型的高寒草地上,过度放牧,变暖或降水增加对土壤总氮,有机碳和NH4-N的影响很小。在不同处理条件下,土壤微生物生物量碳和磷以及蔗糖酶和磷酸酶的活性通常是稳定的。耕地过度放牧增加了土壤NO3-N,有效磷,脲酶活性和微生物生物量氮。土壤细菌多样性与土壤微生物生物量和酶活性呈负相关,而土壤真菌多样性与土壤微生物量和酶活性呈负相关。土壤细菌多样性与土壤细菌多样性呈负相关,而土壤真菌多样性与土壤有效养分呈正相关。我们的研究结果表明,土壤细菌和真菌在影响土壤养分和微生物活动中起着不同的作用,这可能对理解为何在高寒草地生态系统中环境变化下土壤生物化学通常保持稳定具有重要意义。

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