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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Assessing the impact of composting and vermicomposting on bacterial community size and structure, and microbial functional diversity of an olive-mill waste
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Assessing the impact of composting and vermicomposting on bacterial community size and structure, and microbial functional diversity of an olive-mill waste

机译:评估堆肥和ver堆肥对橄榄工厂废物的细菌群落大小和结构以及微生物功能多样性的影响

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摘要

The aim of this study was to couple biochemical and molecular methodologies for evaluating the impact of two recycling technologies (composting and vermicomposting) on a toxic organic waste. To do this, six enzyme activities controlling the key metabolic pathways of the breakdown of organic matter, real-time PCR assays targeting 16S rRNA genes, and denaturing gradient gel electrophoresis (DGGE) profilingsequence analysis of PCR-amplified 16S rRNA fragments have been used to determine the functional diversity, bacterial number, and bacterial community structure, respectively, in a mixture of olive waste and sheep manure, and in the derived compost and vermicompost. Both the recycling technologies were effective in activating the microbial parameters of the toxic waste, the vermicomposting being the best process to produce greater bacterial diversity, greater bacterial numbers and greater functional diversity. Although several identical populations were detected in the processed and non-processed materials, each technology modified the original microbial communities of the waste in a diverse way, indicating the different roles of each one in the bacterial selection.
机译:这项研究的目的是结合生物化学和分子方法,以评估两种回收技术(堆肥和and堆肥)对有毒有机废物的影响。为此,已使用六种酶活性来控制有机物分解的关键代谢途径,靶向16S rRNA基因的实时PCR分析以及PCR扩增的16S rRNA片段的变性梯度凝胶电泳(DGGE)分析序列分析,以用于分别确定橄榄废料和绵羊粪便的混合物以及衍生的堆肥和ver堆肥中的功能多样性,细菌数量和细菌群落结构。两种回收技术均有效地激活了有毒废物的微生物参数,ver石堆肥是产生更大细菌多样性,更大细菌数量和更大功能多样性的最佳方法。尽管在经过处理和未经处理的材料中检测到几个相同的种群,但是每种技术都以多种方式修改了废物的原始微生物群落,从而表明了每种细菌在细菌选择中的不同作用。

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