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Molecular techniques for the analysis of soil microbial processes: Functional gene analysis and the utility of DNA microarrays

机译:分析土壤微生物过程的分子技术:功能基因分析和DNA微阵列的实用性

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摘要

Traditional methods for the analysis of soil processes are based on measuring and modeling the distribution of chemical compounds and determining their transformation rates. These approaches have formed the basis of our understanding of soil biogeochemical processes, and they have demonstrated the fundamental role of microbes in regulating these processes, but they do not provide a complete view of the complexity of the microbial contribution to soil function. Recent research has revealed the tremendous diversity of microorganisms responsible for catalyzing a variety of soil processes. Such functional redundancy within soil microbial communities may have significant impacts on process rates and ecosystem stability. Therefore, the analysis of functional diversity and its dynamics in the environment is essential for understanding the biogeochemistry of soil systems. Until recently, methodological limitations hindered investigation of the relationship between microbial diversity and soil processes. Over the last decade, innovative molecular approaches to the study of natural microbial communities and the functional genes responsible for biogeochemical processes have given us new insight into this relationship. One new approach, DNA microarray analysis, promises to be especially useful for the analysis of these functional genes.
机译:用于分析土壤过程的传统方法是基于对化合物的分布进行测量和建模并确定其转化率。这些方法构成了我们对土壤生物地球化学过程理解的基础,并且它们已经证明了微生物在调节这些过程中的基本作用,但是它们并未提供微生物对土壤功能的复杂性的完整视图。最近的研究表明,负责催化多种土壤过程的微生物种类繁多。土壤微生物群落中的这种功能冗余可能会对处理速率和生态系统稳定性产生重大影响。因此,功能多样性及其在环境中的动力学分析对于理解土壤系统的生物地球化学至关重要。直到最近,方法学的局限性还阻碍了微生物多样性与土壤过程之间关系的研究。在过去的十年中,用于研究天然微生物群落和负责生物地球化学过程的功能基因的创新分子方法使我们对这种关系有了新的认识。 DNA微阵列分析是一种新方法,有望对这些功能基因的分析特别有用。

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