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Correlation Model Analysis of Nitrogen Addition and Tan Sheep Grazing Effects on Soil Bacterial Community in the Loess Plateau, China

机译:黄土高原地区氮素和谭羊放牧对土壤细菌群落影响的相关模型分析

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In recent years, the rapid development of high-throughput sequencing technologies and bioinformatics methods has greatly facilitated the monitoring of soil microbial diversity. Monitoring microbial diversity in soil could lead to a number of applications for example a better understanding of the characteristics of spatial and temporal variation of microbial community in soil and the identification of the driving mechanisms of soil microbial composition, diversity, and functional genes in different ecosystems, such as forests, grasslands, wetlands, and farmland. However, there are still no universally adaptable models to explain the relationships between microbial diversity change and ecosystem functions. This study is based on the special geographical environment of the Loess Plateau. Control experiments for grazing and nitrogen addition were set up and, through to analysis soil bacterial community was analyzed through high-throughput sequencing technology. A joint model of soil bacterial community diversity, soil physical and chemical properties, and human disturbance such as grazing has been established. The results show that grazing and nitrogen addition have different effects on soil bacterial community diversity. Within a certain range, nitrogen addition can balance the effects of grazing.
机译:近年来,高通量测序技术和生物信息学方法的迅速发展极大地促进了土壤微生物多样性的监测。监测土壤中微生物的多样性可能会导致许多应用,例如更好地了解土壤中微生物群落的时空变化特征,并确定不同生态系统中土壤微生物组成,多样性和功能基因的驱动机制。 ,例如森林,草原,湿地和农田。但是,仍然没有通用适应性强的模型来解释微生物多样性变化与生态系统功能之间的关系。这项研究基于黄土高原的特殊地理环境。建立了放牧和氮添加的对照实验,并通过高通量测序技术对土壤细菌群落进行了分析。建立了土壤细菌群落多样性,土壤理化性质和放牧等人为干扰的联合模型。结果表明,放牧和施氮对土壤细菌群落多样性的影响不同。在一定范围内,氮的添加可以平衡放牧的影响。

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