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老化垃圾中优势微生物种群的分子系统发育分析。

Molecular phylogenetic analysis of dominant microbial populations in aged refuse.

机构信息

Shanghai Key Laboratory of Urbanization and Ecological Restoration, School of Resources and Environment Science, East China Normal University, 500 Dongchuan Road, Shanghai, 200241, China,

出版信息

World J Microbiol Biotechnol. 2014 Mar;30(3):1037-45. doi: 10.1007/s11274-013-1522-y. Epub 2013 Oct 16.

Abstract

The phylogenetic analysis of dominant microbial populations in 8-year-old refuse samples was done in terms of the whole Bacterial and Archaeal domains. The results indicated that the Bacterial 16S rRNA genes sequences from the aged refuse were largely affiliated with the genus Bacillus, and that more than 60 % of the Archaeal sequences were closely related to the methanogenic archaeon. Some inferentially identified extremophilic organisms, particularly alkaliphiles and/or halophiles, were noted to be present in the aged refuse. Moreover, molecular evidence for the occurrence of ammonia-oxidizing Archaea in aged refuse was reported, which opens up avenues for elucidating its role in ammonia transformation in landfill systems. It seems reasonable to assume that the highly complex environment within the landfill systems may select for microbial populations with versatile metabolism and strong adaptation. These findings underline the need for further biochemical and ecological study of these organisms in aged refuse.

摘要

对 8 年垃圾样本中优势微生物种群进行了系统发育分析,涵盖了整个细菌域和古菌域。结果表明,老化垃圾中的细菌 16S rRNA 基因序列主要与芽孢杆菌属有关,而超过 60%的古菌序列与产甲烷古菌密切相关。一些推测的极端微生物,特别是嗜碱菌和/或嗜盐菌,被发现在老化垃圾中存在。此外,还报告了在老化垃圾中氨氧化古菌的分子证据,这为阐明其在垃圾填埋场系统中氨转化中的作用开辟了途径。可以合理地假设,垃圾填埋场系统内高度复杂的环境可能会选择具有多样代谢和强大适应性的微生物种群。这些发现强调了需要进一步研究这些老化垃圾中微生物的生物化学和生态学特性。

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