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Analysis of soil eDNA functional genes: potential to increase profitability and sustainability of pastoral agriculture

机译:土壤EDNA功能基因分析:提高田园农业盈利能力和可持续性的潜力

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ABSTRACTManagement of soil biological resources to optimise plant production, efficiency of nutrient inputs, and system sustainability is an emerging opportunity for pastoral agriculture. To achieve these goals, suitable tools that can assess the functional state of the soil ecosystem must be developed and standardised approaches to their application adopted. Towards this end, we have undertaken comprehensive, high-density functional-gene microarray analysis (GeoChip5) of environmental DNA (eDNA) extracted from 50 pastoral soils. When combined with soil, environmental and management metadata, the information can be used to provide insights into soil biological processes spanning greenhouse gas emissions, through to natural suppression of plant root diseases. To provide an example of a structured workflow of analysis in a pastoral system context, we analysed the GeoChip data using a combination of approaches spanning routine univariate methods through to more complex multivariate and network-based analysis...
机译:土壤生物资源的抽象管理,优化植物生产,营养投入效率,系统可持续发展是牧区农业的新兴机遇。为了实现这些目标,必须向采用的申请制定和标准化方法,可以评估土壤生态系统功能状态的合适工具。为此,我们已经采用了50个牧草土壤中提取的环境DNA(EDNA)的综合性高密度官能 - 基因微阵列分析(Geochip5)。当与土壤,环境和管理元数据结合时,该信息可用于提供跨越温室气体排放的土壤生物过程的见解,通过植物根系疾病的自然抑制。为了提供田园系统上下文中分析的结构化工作流程的示例,我们使用跨越常规单变量方法的方法的组合分析了地球接种数据,通过更复杂的多变量和基于网络的分析......

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