Literature DB >> 33077930

Genome-wide analysis of the Firmicutes illuminates the diderm/monoderm transition.

Najwa Taib1,2, Daniela Megrian1,3, Jerzy Witwinowski1, Panagiotis Adam1,4, Daniel Poppleton1,5, Guillaume Borrel1, Christophe Beloin6, Simonetta Gribaldo7.   

Abstract

The transition between cell envelopes with one membrane (Gram-positive or monoderm) and those with two membranes (Gram-negative or diderm) is a fundamental open question in the evolution of Bacteria. Evidence of the presence of two independent diderm lineages, the Halanaerobiales and the Negativicutes, within the classically monoderm Firmicutes has blurred the monoderm/diderm divide and specifically anticipated that other members with an outer membrane (OM) might exist in this phylum. Here, by screening 1,639 genomes of uncultured Firmicutes for signatures of an OM, we highlight a third and deep branching diderm clade, the Limnochordia, strengthening the hypothesis of a diderm ancestor and the occurrence of independent transitions leading to the monoderm phenotype. Phyletic patterns of over 176,000 protein families constituting the Firmicutes pan-proteome identify those that strongly correlate with the diderm phenotype and suggest the existence of new potential players in OM biogenesis. In contrast, we find practically no largely conserved core of monoderms, a fact possibly linked to different ways of adapting to repeated OM losses. Phylogenetic analysis of a concatenation of main OM components totalling nearly 2,000 amino acid positions illustrates the common origin and vertical evolution of most diderm bacterial envelopes. Finally, mapping the presence/absence of OM markers onto the tree of Bacteria shows the overwhelming presence of diderm phyla and the non-monophyly of monoderm ones, pointing to an early origin of two-membraned cells and the derived nature of the Gram-positive envelope following multiple OM losses.

Mesh:

Year:  2020        PMID: 33077930     DOI: 10.1038/s41559-020-01299-7

Source DB:  PubMed          Journal:  Nat Ecol Evol        ISSN: 2397-334X            Impact factor:   15.460


  47 in total

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Authors:  T Cavalier-Smith
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2.  Separation and characterization of two chemically distinct lipopolysaccharides in two Pectinatus species.

Authors:  I M Helander; R Hurme; A Haikara; A P Moran
Journal:  J Bacteriol       Date:  1992-05       Impact factor: 3.490

Review 3.  One or two membranes? Diderm Firmicutes challenge the Gram-positive/Gram-negative divide.

Authors:  Daniela Megrian; Najwa Taib; Jerzy Witwinowski; Christophe Beloin; Simonetta Gribaldo
Journal:  Mol Microbiol       Date:  2020-03       Impact factor: 3.501

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Journal:  J Bacteriol       Date:  2010-09-17       Impact factor: 3.490

Review 5.  Sporulation, bacterial cell envelopes and the origin of life.

Authors:  Elitza I Tocheva; Davi R Ortega; Grant J Jensen
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Authors:  Chantal Campbell; Iain C Sutcliffe; Radhey S Gupta
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7.  Origin of diderm (Gram-negative) bacteria: antibiotic selection pressure rather than endosymbiosis likely led to the evolution of bacterial cells with two membranes.

Authors:  Radhey S Gupta
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2.  Conservation and Evolution of the Sporulation Gene Set in Diverse Members of the Firmicutes.

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3.  Euendolithic Cyanobacteria and Proteobacteria Together Contribute to Trigger Bioerosion in Aquatic Environments.

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4.  An ancient divide in outer membrane tethering systems in bacteria suggests a mechanism for the diderm-to-monoderm transition.

Authors:  Anna Sartori-Rupp; Najwa Taib; Jerzy Witwinowski; Nika Pende; To Nam Tham; Daniel Poppleton; Jean-Marc Ghigo; Christophe Beloin; Simonetta Gribaldo
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5.  A Comprehensive Evolutionary Scenario of Cell Division and Associated Processes in the Firmicutes.

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Review 6.  Evolving Perspective on the Origin and Diversification of Cellular Life and the Virosphere.

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