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Acetic acid bacteria genomes reveal functional traits for adaptation to life in insect guts.


ABSTRACT: Acetic acid bacteria (AAB) live in sugar rich environments, including food matrices, plant tissues, and the gut of sugar-feeding insects. By comparing the newly sequenced genomes of Asaia platycodi and Saccharibacter sp., symbionts of Anopheles stephensi and Apis mellifera, respectively, with those of 14 other AAB, we provide a genomic view of the evolutionary pattern of this bacterial group and clues on traits that explain the success of AAB as insect symbionts. A specific pre-adaptive trait, cytochrome bo3 ubiquinol oxidase, appears ancestral in AAB and shows a phylogeny that is congruent with that of the genomes. The functional properties of this terminal oxidase might have allowed AAB to adapt to the diverse oxygen levels of arthropod guts.

SUBMITTER: Chouaia B 

PROVIDER: S-EPMC4007555 | biostudies-literature | 2014 Apr

REPOSITORIES: biostudies-literature

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Acetic acid bacteria genomes reveal functional traits for adaptation to life in insect guts.

Chouaia Bessem B   Gaiarsa Stefano S   Crotti Elena E   Comandatore Francesco F   Degli Esposti Mauro M   Ricci Irene I   Alma Alberto A   Favia Guido G   Bandi Claudio C   Daffonchio Daniele D  

Genome biology and evolution 20140401 4


Acetic acid bacteria (AAB) live in sugar rich environments, including food matrices, plant tissues, and the gut of sugar-feeding insects. By comparing the newly sequenced genomes of Asaia platycodi and Saccharibacter sp., symbionts of Anopheles stephensi and Apis mellifera, respectively, with those of 14 other AAB, we provide a genomic view of the evolutionary pattern of this bacterial group and clues on traits that explain the success of AAB as insect symbionts. A specific pre-adaptive trait, c  ...[more]

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