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Relationships among Contrasting Measurements of Microbial Dynamicsin Pasture and Organic Farm Soils

机译:牧场微生物动态对比测量与有机农场土壤的关系

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摘要

Soil bacteria exhibit short-term variations in community structure, providing an indication of anthropogenic disturbances. In this study, microbial biomass carbon (MBC), potentially mineralizable nitrogen (PMN), community level physiological profiling (CLPP), and culture-dependent DGGE (CD DGGE) fingerprinting of the 16S rRNA gene were used to compare microbial communities in organic farm and pasture soils subjected to differing agronomic treatments. Correlation analyses revealed significant relationships between MBC, PMN, and data derived from microbial community analyses. All measures separated soil types but varied in their ability to distinguish among treatments within a soil type. Overall, MBC, PMN, and CLPP were most responsive to compost and manure amendments, while CD DGGE resolved differences in legume cropping and inorganic fertilization. The results support the hypothesis that culturable soil bacteria are a responsive fraction of the total microbial community, sensitive to agronomic perturbations and amenable to further studies aimed at linking community structure with soil functions.
机译:土壤细菌在群落结构中表现出短期变化,提供了人为干扰的迹象。在这项研究中,使用微生物生物量碳(MBC),潜在的可矿化氮(PMN),社区水平生理概况(CLPP)和依赖于培养物的DGGE(CD DGGE)指纹图谱对16S rRNA基因进行了比较,以比较有机农场中的微生物群落和牧场土壤经过不同的农艺处理。相关分析显示,MBC,PMN与微生物群落分析数据之间存在显着关系。所有措施都将土壤类型分开,但是区分土壤类型中的处理方法的能力各不相同。总体而言,MBC,PMN和CLPP对堆肥和粪肥改良反应最灵敏,而CD DGGE解决了豆类作物种植和无机施肥方面的差异。结果支持以下假设:可培养的土壤细菌是总微生物群落的响应部分,对农艺扰动敏感,并且适合于旨在将群落结构与土壤功能联系起来的进一步研究。

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