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基于离子测序法对白蚁肠道和蚁巢微生物多样性的比较分析

Comparative Analysis of Microbial Diversity in Termite Gut and Termite Nest Using Ion Sequencing.

作者信息

Manjula Arumugam, Pushpanathan Muthuirulan, Sathyavathi Sundararaju, Gunasekaran Paramasamy, Rajendhran Jeyaprakash

机构信息

Department of Genetics, Centre for Excellence in Genomic Sciences, School of Biological Sciences, Madurai Kamaraj University, Madurai, Tamil Nadu, 625021, India.

Laboratory of Gene Regulation and Development, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, 20892, MD, USA.

出版信息

Curr Microbiol. 2016 Mar;72(3):267-75. doi: 10.1007/s00284-015-0947-y. Epub 2015 Nov 28.

Abstract

Termite gut and termite nest possess complex microbial communities. However, only limited information is available on the comparative investigation of termite gut- and nest-associated microbial communities. In the present study, we examined and compared the bacterial diversity of termite gut and their respective nest by high-throughput sequencing of V3 hypervariable region of 16S rDNA. A total of 14 barcoded libraries were generated from seven termite gut samples and their respective nest samples, and sequenced using Ion Torrent platform. The sequences of each group were pooled, which yielded 170,644 and 132,000 reads from termite gut and termite nest samples, respectively. Phylogenetic analysis revealed significant differences in the bacterial diversity and community structure between termite gut and termite nest samples. Phyla Verrucomicrobia and Acidobacteria were observed only in termite gut, whereas Synergistetes and Chlorobi were observed only in termite nest samples. These variations in microbial structure and composition could be attributed with the differences in physiological conditions prevailing in the termite gut (anoxic and alkaline) and termite nest (oxic, slightly acidic and rich in organic matter) environment. Overall, this study unmasked the complexity of bacterial population in the respective niche. Interestingly, majority of the sequence reads could be classified only up to the domain level indicating the presence of a huge number of uncultivable or unidentified novel bacterial species in both termite gut and nest samples. Whole metagenome sequencing and assessing the metabolic potential of these samples will be useful for biotechnological applications.

摘要

白蚁肠道和蚁巢拥有复杂的微生物群落。然而,关于白蚁肠道和蚁巢相关微生物群落的比较研究仅有有限的信息。在本研究中,我们通过对16S rDNA的V3高变区进行高通量测序,检测并比较了白蚁肠道及其相应蚁巢的细菌多样性。从七个白蚁肠道样本及其相应的蚁巢样本中总共生成了14个带条形码的文库,并使用Ion Torrent平台进行测序。将每组的序列汇总,分别从白蚁肠道和蚁巢样本中获得了170,644条和132,000条读数。系统发育分析表明,白蚁肠道和蚁巢样本之间的细菌多样性和群落结构存在显著差异。疣微菌门和酸杆菌门仅在白蚁肠道中观察到,而互养菌门和绿菌门仅在蚁巢样本中观察到。微生物结构和组成的这些差异可能归因于白蚁肠道(缺氧和碱性)和蚁巢(有氧、微酸性且富含有机物)环境中存在的生理条件差异。总体而言,本研究揭示了各个生态位中细菌种群的复杂性。有趣的是,大多数序列读数仅能分类到域水平,这表明在白蚁肠道和蚁巢样本中都存在大量不可培养或未鉴定的新细菌物种。对这些样本进行全基因组测序并评估其代谢潜力将有助于生物技术应用。

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