Literature DB >> 22977066

Endosymbiotic bacteria as a source of carotenoids in whiteflies.

Daniel B Sloan1, Nancy A Moran.   

Abstract

Although carotenoids serve important biological functions, animals are generally unable to synthesize these pigments and instead obtain them from food. However, many animals, such as sap-feeding insects, may have limited access to carotenoids in their diet, and it was recently shown that aphids have acquired the ability to produce carotenoids by lateral transfer of fungal genes. Whiteflies also contain carotenoids but show no evidence of the fungus-derived genes found in aphids. Because many sap-feeding insects harbour intracellular bacteria, it has long been hypothesized that these endosymbionts could serve as an alternative source of carotenoid biosynthesis. We sequenced the genome of the obligate bacterial endosymbiont Portiera from the whitefly Bemisia tabaci. The genome exhibits typical signatures of obligate endosymbionts in sap-feeding insects, including extensive size reduction (358.2 kb) and enrichment for genes involved in essential amino acid biosynthesis. Unlike other sequenced insect endosymbionts, however, Portiera has bacterial homologues of the fungal carotenoid biosynthesis genes in aphids. Therefore, related lineages of sap-feeding insects appear to have convergently acquired the same functional trait by distinct evolutionary mechanisms-bacterial endosymbiosis versus fungal lateral gene transfer.

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Year:  2012        PMID: 22977066      PMCID: PMC3497135          DOI: 10.1098/rsbl.2012.0664

Source DB:  PubMed          Journal:  Biol Lett        ISSN: 1744-9561            Impact factor:   3.703


  24 in total

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Journal:  Nucleic Acids Res       Date:  2004-03-19       Impact factor: 16.971

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3.  RAxML-VI-HPC: maximum likelihood-based phylogenetic analyses with thousands of taxa and mixed models.

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5.  SOAP2: an improved ultrafast tool for short read alignment.

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Journal:  Bioinformatics       Date:  2009-06-03       Impact factor: 6.937

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7.  IMG ER: a system for microbial genome annotation expert review and curation.

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8.  Lateral transfer of genes from fungi underlies carotenoid production in aphids.

Authors:  Nancy A Moran; Tyler Jarvik
Journal:  Science       Date:  2010-04-30       Impact factor: 47.728

9.  The 160-kilobase genome of the bacterial endosymbiont Carsonella.

Authors:  Atsushi Nakabachi; Atsushi Yamashita; Hidehiro Toh; Hajime Ishikawa; Helen E Dunbar; Nancy A Moran; Masahira Hattori
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Journal:  Appl Environ Microbiol       Date:  2004-06       Impact factor: 4.792

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  58 in total

1.  Carotenoid Metabolism in Terrestrial Animals.

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Authors:  Diego Santos-Garcia; Pierre-Antoine Farnier; Francisco Beitia; Einat Zchori-Fein; Fabrice Vavre; Laurence Mouton; Andrés Moya; Amparo Latorre; Francisco J Silva
Journal:  J Bacteriol       Date:  2012-12       Impact factor: 3.490

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Authors:  Zi-Feng Jiang; Fangfang Xia; Kipp W Johnson; Christopher D Brown; Elizabeth Bartom; Jigyasa H Tuteja; Rick Stevens; Robert L Grossman; Marina Brumin; Kevin P White; Murad Ghanim
Journal:  Appl Environ Microbiol       Date:  2013-01-11       Impact factor: 4.792

Review 4.  Horizontal gene transfer in the acquisition of novel traits by metazoans.

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Review 5.  The molecular basis of bacterial-insect symbiosis.

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Journal:  Microb Ecol       Date:  2015-01-28       Impact factor: 4.552

7.  Characterization of a newly discovered symbiont of the whitefly Bemisia tabaci (Hemiptera: Aleyrodidae).

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8.  Conditional fitness benefits of the Rickettsia bacterial symbiont in an insect pest.

Authors:  Bodil N Cass; Anna G Himler; Elizabeth C Bondy; Jacquelyn E Bergen; Sierra K Fung; Suzanne E Kelly; Martha S Hunter
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Review 9.  Microbial brokers of insect-plant interactions revisited.

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10.  Methods for the Extraction of Endosymbionts from the Whitefly Bemisia tabaci.

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Journal:  J Vis Exp       Date:  2017-06-19       Impact factor: 1.355

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