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Genome and metabolic network of "Candidatus Phaeomarinobacter ectocarpi" Ec32, a new candidate genus of Alphaproteobacteria frequently associated with brown algae. | LitMetric

Genome and metabolic network of "Candidatus Phaeomarinobacter ectocarpi" Ec32, a new candidate genus of Alphaproteobacteria frequently associated with brown algae.

Front Genet

Sorbonne Universités, UPMC Univ. Paris 06, UMR 8227, Integrative Biology of Marine Models, Station Biologique de Roscoff Roscoff, France ; CNRS, UMR 8227, Integrative Biology of Marine Models, Station Biologique de Roscoff Roscoff, France.

Published: August 2014

AI Article Synopsis

  • Rhizobiales are a group of bacteria known for forming symbiotic relationships with plant roots, and "Candidatus Phaeomarinobacter ectocarpi" Ec32 is a newly identified member associated with brown algae Ectocarpus.
  • The genome of "Ca. P. ectocarpi" has multiple metabolic pathways that may help it interact with algae, including enzymes for breaking down algal compounds and synthesizing algal hormones and vitamins.
  • Although "Ca. P. ectocarpi" has not been cultured in the lab, related genetic sequences have been found in various environments, suggesting this genus may include multiple species that thrive in different habitats.

Article Abstract

Rhizobiales and related orders of Alphaproteobacteria comprise several genera of nodule-inducing symbiotic bacteria associated with plant roots. Here we describe the genome and the metabolic network of "Candidatus Phaeomarinobacter ectocarpi" Ec32, a member of a new candidate genus closely related to Rhizobiales and found in association with cultures of the filamentous brown algal model Ectocarpus. The "Ca. P. ectocarpi" genome encodes numerous metabolic pathways that may be relevant for this bacterium to interact with algae. Notably, it possesses a large set of glycoside hydrolases and transporters, which may serve to process and assimilate algal metabolites. It also harbors several proteins likely to be involved in the synthesis of algal hormones such as auxins and cytokinins, as well as the vitamins pyridoxine, biotin, and thiamine. As of today, "Ca. P. ectocarpi" has not been successfully cultured, and identical 16S rDNA sequences have been found exclusively associated with Ectocarpus. However, related sequences (≥97% identity) have also been detected free-living and in a Fucus vesiculosus microbiome barcoding project, indicating that the candidate genus "Phaeomarinobacter" may comprise several species, which may colonize different niches.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4110880PMC
http://dx.doi.org/10.3389/fgene.2014.00241DOI Listing

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