Distinct soil bacterial communities revealed under a diversely managed agroecosystem.
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ABSTRACT: Land-use change and management practices are normally enacted to manipulate environments to improve conditions that relate to production, remediation, and accommodation. However, their effect on the soil microbial community and their subsequent influence on soil function is still difficult to quantify. Recent applications of molecular techniques to soil biology, especially the use of 16S rRNA, are helping to bridge this gap. In this study, the influence of three land-use systems within a demonstration farm were evaluated with a view to further understand how these practices may impact observed soil bacterial communities. Replicate soil samples collected from the three land-use systems (grazed pine forest, cultivated crop, and grazed pasture) on a single soil type. High throughput 16S rRNA
SUBMITTER: Shange RS
PROVIDER: S-EPMC3402512 | biostudies-literature | 2012
REPOSITORIES: biostudies-literature
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