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Response of Soil Properties and Microbial Communities to Agriculture: Implications for Primary Productivity and Soil Health Indicators

机译:土壤特性和微生物群落对农业的响应:对初级生产力和土壤健康指标的影响

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摘要

Agricultural intensification is placing tremendous pressure on the soil’s capacity to maintain its functions leading to large-scale ecosystem degradation and loss of productivity in the long term. Therefore, there is an urgent need to find early indicators of soil health degradation in response to agricultural management. In recent years, major advances in soil meta-genomic and spatial studies on microbial communities and community-level molecular characteristics can now be exploited as ‘biomarker’ indicators of ecosystem processes for monitoring and managing sustainable soil health under global change. However, a continental scale, cross biome approach assessing soil microbial communities and their functional potential to identify the unifying principles governing the susceptibility of soil biodiversity to land conversion is lacking. We conducted a meta-analysis from a dataset generated from 102 peer-reviewed publications as well as unpublished data to explore how properties directly linked to soil nutritional health (total C and N; C:N ratio), primary productivity (NPP) and microbial diversity and composition (relative abundance of major bacterial phyla determined by next generation sequencing techniques) are affected in response to agricultural management across the main biomes of Earth (arid, continental, temperate and tropical). In our analysis, we found strong statistical trends in the relative abundance of several bacterial phyla in agricultural (e.g., Actinobacteria and Chloroflexi) and natural (Acidobacteria, Proteobacteria, and Cyanobacteria) systems across all regions and these trends correlated well with many soil properties. However, main effects of agriculture on soil properties and productivity were biome-dependent. Our meta-analysis provides evidence on the predictable nature of the microbial community responses to vegetation type. This knowledge can be exploited in future for developing a new set of indicators for primary productivity and soil health.
机译:农业集约化正在对土壤保持其功能的能力造成巨大压力,从而长期导致生态系统大规模退化和生产力下降。因此,迫切需要找到针对农业管理的土壤健康退化的早期指标。近年来,关于微生物群落和群落一级分子特征的土壤亚基因组和空间研究的重大进展现已被用作生态系统过程的“生物标志”指标,以监测和管理全球变化下的可持续土壤健康。但是,缺乏评估土壤微生物群落及其功能潜力的大陆性,跨生物群落方法,以查明控制土壤生物多样性对土地转化的敏感性的统一原则。我们从102个经过同行评审的出版物以及未发表的数据中生成的数据集进行了荟萃分析,以探索特性如何直接与土壤营养健康(总碳和氮;碳氮比),初级生产力(NPP)和微生物响应于整个地球主要生物群落(干旱,大陆,温带和热带)的农业管理,其多样性和组成(主要细菌菌群的相对丰度由下一代测序技术确定)受到影响。在我们的分析中,我们发现在所有地区的农业(例如放线菌和绿弯曲菌)和天然(Acidobacteria,Proteobacteria和Cyanobacteria)系统中几种细菌门的相对丰度有很强的统计趋势,并且这些趋势与许多土壤特性密切相关。但是,农业对土壤性质和生产力的主要影响是生物群落依赖性的。我们的荟萃分析提供了微生物群落对植被类型反应的可预测性质的证据。将来可以利用这些知识来开发一套有关初级生产力和土壤健康的新指标。

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