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The functional evolution of termite gut microbiota
by
Šobotník, Jan
, Tokuda, Gaku
, Kinjo, Yukihiro
, Buček, Aleš
, Sillam-Dussès, David
, Kim, Ki Yoon
, Bourguignon, Thomas
, Stiblik, Petr
, Park, Yung Chul
, Roisin, Yves
, Brune, Andreas
, Lo, Nathan
, Žifčáková, Lucia
, Arora, Jigyasa
, Hervé, Vincent
, Clitheroe, Crystal
in
Animals
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedicine
/ Bioreactors
/ Diet
/ Endosymbionts
/ Environmental Sciences
/ Enzymes
/ Estimates
/ Flagellates
/ Gastrointestinal Microbiome - genetics
/ Genes
/ Gut microbiota
/ Intestinal microflora
/ Isoptera
/ Life Sciences
/ Lignocellulose
/ Medical Microbiology
/ Metagenome
/ Metagenomics
/ Microbial Ecology
/ Microbial Genetics and Genomics
/ Microbiology
/ Microbiota
/ Microbiota (Symbiotic organisms)
/ Phylogenetics
/ Phylogeny
/ Physiological aspects
/ Prokaryotes
/ Soil
/ Stoichiometry
/ Symbiosis
/ Taxonomy
/ Termites
/ Vertical inheritance
/ Virology
2022
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The functional evolution of termite gut microbiota
by
Šobotník, Jan
, Tokuda, Gaku
, Kinjo, Yukihiro
, Buček, Aleš
, Sillam-Dussès, David
, Kim, Ki Yoon
, Bourguignon, Thomas
, Stiblik, Petr
, Park, Yung Chul
, Roisin, Yves
, Brune, Andreas
, Lo, Nathan
, Žifčáková, Lucia
, Arora, Jigyasa
, Hervé, Vincent
, Clitheroe, Crystal
in
Animals
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedicine
/ Bioreactors
/ Diet
/ Endosymbionts
/ Environmental Sciences
/ Enzymes
/ Estimates
/ Flagellates
/ Gastrointestinal Microbiome - genetics
/ Genes
/ Gut microbiota
/ Intestinal microflora
/ Isoptera
/ Life Sciences
/ Lignocellulose
/ Medical Microbiology
/ Metagenome
/ Metagenomics
/ Microbial Ecology
/ Microbial Genetics and Genomics
/ Microbiology
/ Microbiota
/ Microbiota (Symbiotic organisms)
/ Phylogenetics
/ Phylogeny
/ Physiological aspects
/ Prokaryotes
/ Soil
/ Stoichiometry
/ Symbiosis
/ Taxonomy
/ Termites
/ Vertical inheritance
/ Virology
2022
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The functional evolution of termite gut microbiota
by
Šobotník, Jan
, Tokuda, Gaku
, Kinjo, Yukihiro
, Buček, Aleš
, Sillam-Dussès, David
, Kim, Ki Yoon
, Bourguignon, Thomas
, Stiblik, Petr
, Park, Yung Chul
, Roisin, Yves
, Brune, Andreas
, Lo, Nathan
, Žifčáková, Lucia
, Arora, Jigyasa
, Hervé, Vincent
, Clitheroe, Crystal
in
Animals
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedicine
/ Bioreactors
/ Diet
/ Endosymbionts
/ Environmental Sciences
/ Enzymes
/ Estimates
/ Flagellates
/ Gastrointestinal Microbiome - genetics
/ Genes
/ Gut microbiota
/ Intestinal microflora
/ Isoptera
/ Life Sciences
/ Lignocellulose
/ Medical Microbiology
/ Metagenome
/ Metagenomics
/ Microbial Ecology
/ Microbial Genetics and Genomics
/ Microbiology
/ Microbiota
/ Microbiota (Symbiotic organisms)
/ Phylogenetics
/ Phylogeny
/ Physiological aspects
/ Prokaryotes
/ Soil
/ Stoichiometry
/ Symbiosis
/ Taxonomy
/ Termites
/ Vertical inheritance
/ Virology
2022
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Journal Article
The functional evolution of termite gut microbiota
2022
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Overview
Background
Termites primarily feed on lignocellulose or soil in association with specific gut microbes. The functioning of the termite gut microbiota is partly understood in a handful of wood-feeding pest species but remains largely unknown in other taxa. We intend to fill this gap and provide a global understanding of the functional evolution of termite gut microbiota.
Results
We sequenced the gut metagenomes of 145 samples representative of the termite diversity. We show that the prokaryotic fraction of the gut microbiota of all termites possesses similar genes for carbohydrate and nitrogen metabolisms, in proportions varying with termite phylogenetic position and diet. The presence of a conserved set of gut prokaryotic genes implies that essential nutritional functions were present in the ancestor of modern termites. Furthermore, the abundance of these genes largely correlated with the host phylogeny. Finally, we found that the adaptation to a diet of soil by some termite lineages was accompanied by a change in the stoichiometry of genes involved in important nutritional functions rather than by the acquisition of new genes and pathways.
Conclusions
Our results reveal that the composition and function of termite gut prokaryotic communities have been remarkably conserved since termites first appeared ~ 150 million years ago. Therefore, the “world’s smallest bioreactor” has been operating as a multipartite symbiosis composed of termites, archaea, bacteria, and cellulolytic flagellates since its inception.
6ZEqoadJZKDhT5Ju82dN1j
Video Abstract
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
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