首页> 外文期刊>Polish Journal of Environmental Studies >Characterizing Bacteria and Methanogens in a Balloon-Type Digester Fed with Dairy Cattle Manure for Anaerobic Mono-Digestion
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Characterizing Bacteria and Methanogens in a Balloon-Type Digester Fed with Dairy Cattle Manure for Anaerobic Mono-Digestion

机译:表征细菌和产甲烷菌的气球型消化池饲喂牛厌氧的单消化。

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摘要

In this study, bacteria and methanogens involved in the decomposition of dairy cattle manure have been characterized via cultivation on selective microbiological media by the viable plate count technique. In addition, DNA was extracted from digested samples, and the 16S rRNA gene was amplified using six primer sets specific to bacterial and archaeal domain via PCR. The sequences of the PCR products were determined and compared to similar sequences in the GenBank database using the BLASTN tools to identify the closest relatives. By culture, E. coli, Salmonella, Shigella, and Campylobacter species were identified and belonged to the phylum Proteobacteria. Following, 16S rRNA analysis, Firmicutes (80%) was the most dominant bacterial phylum represented by the predominant order Clostridiales and genus Clostridium. Other members belonged to the phyla Proteobacteria and Spirochaetes. The phylum Euryarchaeota (100%) was the only observed archaeal domain with members that belonged to the dominant class Methanomicrobia and genus Methanocorpusculum. Other members were related to the order Methanobacteriales and Methanosarcinales. Results suggested that Clostridium sp, Clostridium related organisms, and other acidogens were responsible for the deconstruction of biomass-generating substrates metabolized by Methanocorpusculum and Methanobrevibacter species to produce methane via the fundamental hydrogenotrophic pathway.
机译:在这项研究中,通过活板计数技术在选择性微生物培养基上进行培养,对参与奶牛粪便分解的细菌和产甲烷菌进行了表征。另外,从消化的样品中提取DNA,并通过PCR使用六种特异于细菌和古细菌域的引物对16S rRNA基因进行扩增。确定了PCR产物的序列,并使用BLASTN工具将其与GenBank数据库中的相似序列进行比较,以鉴定最接近的亲戚。通过培养,鉴定出大肠杆菌,沙门氏菌,志贺氏菌和弯曲杆菌属,并且属于门Proteobacteria。随后,通过16S rRNA分析,以主要梭菌和梭菌属为代表的Firmicutes(80%)是最主要的细菌门。其他成员属于门类Proteobacteria和Spirochaetes。 Euryarchaeota门(100%)是唯一观察到的古细菌域,成员属于优势菌种Methanomicrobia和Methanocorpusculum属。其他成员与甲烷细菌和甲烷菌纲有关。结果表明,梭状芽孢杆菌,梭状芽孢杆菌相关生物和其他产酸酶负责分解由甲烷菌属和甲烷短杆菌属物种代谢的生物质产生底物,从而通过基本的氢营养途径合成甲烷。

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  • 来源
    《Polish Journal of Environmental Studies》 |2019年第3期|1287-1293|共7页
  • 作者单位

    Univ Ft Hare, Ft Hare Inst Technol, Alice Campus, Alice, Eastern Cape Pr, South Africa|Univ Ft Hare, Dept Biochem & Microbiol, Appl & Environm Microbiol Res Grp AEMREG, Alice Campus, Alice, Eastern Cape Pr, South Africa|Univ Ft Hare, South Africa Med Res Council, Microbial Water Qual Monitoring Ctr, Alice Campus, Alice, Eastern Cape Pr, South Africa;

    Univ Ft Hare, Ft Hare Inst Technol, Alice Campus, Alice, Eastern Cape Pr, South Africa;

    Univ Ft Hare, Ft Hare Inst Technol, Alice Campus, Alice, Eastern Cape Pr, South Africa;

    Univ Ft Hare, Dept Biochem & Microbiol, Appl & Environm Microbiol Res Grp AEMREG, Alice Campus, Alice, Eastern Cape Pr, South Africa|Univ Ft Hare, South Africa Med Res Council, Microbial Water Qual Monitoring Ctr, Alice Campus, Alice, Eastern Cape Pr, South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    balloon digester; characterization; microorganisms; dairy cattle manure; South Africa;

    机译:球囊消化器;表征;微生物;奶牛粪便;南非;

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