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Phylogenetic Diversity and Single-Cell Genome Analysis of “Melainabacteria”, a Non-Photosynthetic Cyanobacterial Group, in the Termite Gut

Termite guts harbor diverse yet-uncultured bacteria, including a non-photosynthetic cyanobacterial group, the class “Melainabacteria”. We herein reported the phylogenetic diversity of “Melainabacteria” in the guts of diverse termites and conducted a single-cell genome analysis of a melainabacterium...

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Autores principales: Utami, Yuniar Devi, Kuwahara, Hirokazu, Murakami, Takumi, Morikawa, Takahiro, Sugaya, Kaito, Kihara, Kumiko, Yuki, Masahiro, Lo, Nathan, Deevong, Pinsurang, Hasin, Sasitorn, Boonriam, Warin, Inoue, Tetsushi, Yamada, Akinori, Ohkuma, Moriya, Hongoh, Yuichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: the Japanese Society of Microbial Ecology (JSME)/the Japanese Society of Soil Microbiology (JSSM)/the Taiwan Society of Microbial Ecology (TSME)/the Japanese Society of Plant Microbe Interactions (JSPMI) 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5877343/
https://www.ncbi.nlm.nih.gov/pubmed/29415909
http://dx.doi.org/10.1264/jsme2.ME17137
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author Utami, Yuniar Devi
Kuwahara, Hirokazu
Murakami, Takumi
Morikawa, Takahiro
Sugaya, Kaito
Kihara, Kumiko
Yuki, Masahiro
Lo, Nathan
Deevong, Pinsurang
Hasin, Sasitorn
Boonriam, Warin
Inoue, Tetsushi
Yamada, Akinori
Ohkuma, Moriya
Hongoh, Yuichi
author_facet Utami, Yuniar Devi
Kuwahara, Hirokazu
Murakami, Takumi
Morikawa, Takahiro
Sugaya, Kaito
Kihara, Kumiko
Yuki, Masahiro
Lo, Nathan
Deevong, Pinsurang
Hasin, Sasitorn
Boonriam, Warin
Inoue, Tetsushi
Yamada, Akinori
Ohkuma, Moriya
Hongoh, Yuichi
author_sort Utami, Yuniar Devi
collection PubMed
description Termite guts harbor diverse yet-uncultured bacteria, including a non-photosynthetic cyanobacterial group, the class “Melainabacteria”. We herein reported the phylogenetic diversity of “Melainabacteria” in the guts of diverse termites and conducted a single-cell genome analysis of a melainabacterium obtained from the gut of the termite Termes propinquus. We performed amplicon sequencing of 16S rRNA genes from the guts of 60 termite and eight cockroach species, and detected melainabacterial sequences in 48 out of the 68 insect species, albeit with low abundances (0.02–1.90%). Most of the melainabacterial sequences obtained were assigned to the order “Gastranaerophilales” and appeared to form clusters unique to termites and cockroaches. A single-cell genome of a melainabacterium, designated phylotype Tpq-Mel-01, was obtained using a fluorescence-activated cell sorter and whole genome amplification. The genome shared basic features with other melainabacterial genomes previously reconstructed from the metagenomes of human and koala feces. The bacterium had a small genome (~1.6 Mb) and possessed fermentative pathways possibly using sugars and chitobiose as carbon and energy sources, while the pathways for photosynthesis and carbon fixation were not found. The genome contained genes for flagellar components and chemotaxis; therefore, the bacterium is likely motile. A fluorescence in situ hybridization analysis showed that the cells of Tpq-Mel-01 and/or its close relatives are short rods with the dimensions of 1.1±0.2 μm by 0.5±0.1 μm; for these bacteria, we propose the novel species, “Candidatus Gastranaerophilus termiticola”. Our results provide fundamental information on “Melainabacteria” in the termite gut and expand our knowledge on this underrepresented, non-photosynthetic cyanobacterial group.
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spelling pubmed-58773432018-04-04 Phylogenetic Diversity and Single-Cell Genome Analysis of “Melainabacteria”, a Non-Photosynthetic Cyanobacterial Group, in the Termite Gut Utami, Yuniar Devi Kuwahara, Hirokazu Murakami, Takumi Morikawa, Takahiro Sugaya, Kaito Kihara, Kumiko Yuki, Masahiro Lo, Nathan Deevong, Pinsurang Hasin, Sasitorn Boonriam, Warin Inoue, Tetsushi Yamada, Akinori Ohkuma, Moriya Hongoh, Yuichi Microbes Environ Articles Termite guts harbor diverse yet-uncultured bacteria, including a non-photosynthetic cyanobacterial group, the class “Melainabacteria”. We herein reported the phylogenetic diversity of “Melainabacteria” in the guts of diverse termites and conducted a single-cell genome analysis of a melainabacterium obtained from the gut of the termite Termes propinquus. We performed amplicon sequencing of 16S rRNA genes from the guts of 60 termite and eight cockroach species, and detected melainabacterial sequences in 48 out of the 68 insect species, albeit with low abundances (0.02–1.90%). Most of the melainabacterial sequences obtained were assigned to the order “Gastranaerophilales” and appeared to form clusters unique to termites and cockroaches. A single-cell genome of a melainabacterium, designated phylotype Tpq-Mel-01, was obtained using a fluorescence-activated cell sorter and whole genome amplification. The genome shared basic features with other melainabacterial genomes previously reconstructed from the metagenomes of human and koala feces. The bacterium had a small genome (~1.6 Mb) and possessed fermentative pathways possibly using sugars and chitobiose as carbon and energy sources, while the pathways for photosynthesis and carbon fixation were not found. The genome contained genes for flagellar components and chemotaxis; therefore, the bacterium is likely motile. A fluorescence in situ hybridization analysis showed that the cells of Tpq-Mel-01 and/or its close relatives are short rods with the dimensions of 1.1±0.2 μm by 0.5±0.1 μm; for these bacteria, we propose the novel species, “Candidatus Gastranaerophilus termiticola”. Our results provide fundamental information on “Melainabacteria” in the termite gut and expand our knowledge on this underrepresented, non-photosynthetic cyanobacterial group. the Japanese Society of Microbial Ecology (JSME)/the Japanese Society of Soil Microbiology (JSSM)/the Taiwan Society of Microbial Ecology (TSME)/the Japanese Society of Plant Microbe Interactions (JSPMI) 2018-03 2018-03-29 /pmc/articles/PMC5877343/ /pubmed/29415909 http://dx.doi.org/10.1264/jsme2.ME17137 Text en Copyright © 2018 by Japanese Society of Microbial Ecology / Japanese Society of Soil Microbiology / Taiwan Society of Microbial Ecology / Japanese Society of Plant Microbe Interactions. http://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Utami, Yuniar Devi
Kuwahara, Hirokazu
Murakami, Takumi
Morikawa, Takahiro
Sugaya, Kaito
Kihara, Kumiko
Yuki, Masahiro
Lo, Nathan
Deevong, Pinsurang
Hasin, Sasitorn
Boonriam, Warin
Inoue, Tetsushi
Yamada, Akinori
Ohkuma, Moriya
Hongoh, Yuichi
Phylogenetic Diversity and Single-Cell Genome Analysis of “Melainabacteria”, a Non-Photosynthetic Cyanobacterial Group, in the Termite Gut
title Phylogenetic Diversity and Single-Cell Genome Analysis of “Melainabacteria”, a Non-Photosynthetic Cyanobacterial Group, in the Termite Gut
title_full Phylogenetic Diversity and Single-Cell Genome Analysis of “Melainabacteria”, a Non-Photosynthetic Cyanobacterial Group, in the Termite Gut
title_fullStr Phylogenetic Diversity and Single-Cell Genome Analysis of “Melainabacteria”, a Non-Photosynthetic Cyanobacterial Group, in the Termite Gut
title_full_unstemmed Phylogenetic Diversity and Single-Cell Genome Analysis of “Melainabacteria”, a Non-Photosynthetic Cyanobacterial Group, in the Termite Gut
title_short Phylogenetic Diversity and Single-Cell Genome Analysis of “Melainabacteria”, a Non-Photosynthetic Cyanobacterial Group, in the Termite Gut
title_sort phylogenetic diversity and single-cell genome analysis of “melainabacteria”, a non-photosynthetic cyanobacterial group, in the termite gut
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5877343/
https://www.ncbi.nlm.nih.gov/pubmed/29415909
http://dx.doi.org/10.1264/jsme2.ME17137
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