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A Genomic Reappraisal of Symbiotic Function in the Aphid/Buchnera Symbiosis: Reduced Transporter Sets and Variable Membrane Organisations

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Title
A Genomic Reappraisal of Symbiotic Function in the Aphid/Buchnera Symbiosis: Reduced Transporter Sets and Variable Membrane Organisations
Published in
PLOS ONE, December 2011
DOI 10.1371/journal.pone.0029096
Pubmed ID
Authors

Hubert Charles, Séverine Balmand, Araceli Lamelas, Ludovic Cottret, Vicente Pérez-Brocal, Béatrice Burdin, Amparo Latorre, Gérard Febvay, Stefano Colella, Federica Calevro, Yvan Rahbé

Abstract

Buchnera aphidicola is an obligate symbiotic bacterium that sustains the physiology of aphids by complementing their exclusive phloem sap diet. In this study, we reappraised the transport function of different Buchnera strains, from the aphids Acyrthosiphon pisum, Schizaphis graminum, Baizongia pistaciae and Cinara cedri, using the re-annotation of their transmembrane proteins coupled with an exploration of their metabolic networks. Although metabolic analyses revealed high interdependencies between the host and the bacteria, we demonstrate here that transport in Buchnera is assured by low transporter diversity, when compared to free-living bacteria, being mostly based on a few general transporters, some of which probably have lost their substrate specificity. Moreover, in the four strains studied, an astonishing lack of inner-membrane importers was observed. In Buchnera, the transport function has been shaped by the distinct selective constraints occurring in the Aphididae lineages. Buchnera from A. pisum and S. graminum have a three-membraned system and similar sets of transporters corresponding to most compound classes. Transmission electronic microscopic observations and confocal microscopic analysis of intracellular pH fields revealed that Buchnera does not show any of the typical structures and properties observed in integrated organelles. Buchnera from B. pistaciae seem to possess a unique double membrane system and has, accordingly, lost all of its outer-membrane integral proteins. Lastly, Buchnera from C. cedri revealed an extremely poor repertoire of transporters, with almost no ATP-driven active transport left, despite the clear persistence of the ancestral three-membraned system.

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The data shown below were compiled from readership statistics for 100 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Spain 2 2%
Canada 1 1%
India 1 1%
Belgium 1 1%
Iran, Islamic Republic of 1 1%
Unknown 94 94%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 26 26%
Researcher 23 23%
Student > Master 13 13%
Student > Bachelor 7 7%
Student > Doctoral Student 6 6%
Other 15 15%
Unknown 10 10%
Readers by discipline Count As %
Agricultural and Biological Sciences 63 63%
Biochemistry, Genetics and Molecular Biology 14 14%
Computer Science 2 2%
Nursing and Health Professions 1 1%
Philosophy 1 1%
Other 2 2%
Unknown 17 17%