Becker_2014_PLoS.Genet_10_e1004784

Reference

Title : Phylogenetically driven sequencing of extremely halophilic archaea reveals strategies for static and dynamic osmo-response - Becker_2014_PLoS.Genet_10_e1004784
Author(s) : Becker EA , Seitzer PM , Tritt A , Larsen D , Krusor M , Yao AI , Wu D , Madern D , Eisen JA , Darling AE , Facciotti MT
Ref : PLoS Genet , 10 :e1004784 , 2014
Abstract :

Organisms across the tree of life use a variety of mechanisms to respond to stress-inducing fluctuations in osmotic conditions. Cellular response mechanisms and phenotypes associated with osmoadaptation also play important roles in bacterial virulence, human health, agricultural production and many other biological systems. To improve understanding of osmoadaptive strategies, we have generated 59 high-quality draft genomes for the haloarchaea (a euryarchaeal clade whose members thrive in hypersaline environments and routinely experience drastic changes in environmental salinity) and analyzed these new genomes in combination with those from 21 previously sequenced haloarchaeal isolates. We propose a generalized model for haloarchaeal management of cytoplasmic osmolarity in response to osmotic shifts, where potassium accumulation and sodium expulsion during osmotic upshock are accomplished via secondary transport using the proton gradient as an energy source, and potassium loss during downshock is via a combination of secondary transport and non-specific ion loss through mechanosensitive channels. We also propose new mechanisms for magnesium and chloride accumulation. We describe the expansion and differentiation of haloarchaeal general transcription factor families, including two novel expansions of the TATA-binding protein family, and discuss their potential for enabling rapid adaptation to environmental fluxes. We challenge a recent high-profile proposal regarding the evolutionary origins of the haloarchaea by showing that inclusion of additional genomes significantly reduces support for a proposed large-scale horizontal gene transfer into the ancestral haloarchaeon from the bacterial domain. The combination of broad (17 genera) and deep (>/=5 species in four genera) sampling of a phenotypically unified clade has enabled us to uncover both highly conserved and specialized features of osmoadaptation. Finally, we demonstrate the broad utility of such datasets, for metagenomics, improvements to automated gene annotation and investigations of evolutionary processes.

PubMedSearch : Becker_2014_PLoS.Genet_10_e1004784
PubMedID: 25393412
Gene_locus related to this paper: 9eury-m0a9w6 , 9eury-m0c9s2 , 9eury-m0cx66 , 9eury-m0fpi4 , halpt-m0fxy0 , 9eury-m0jb87 , halvd-metxa

Related information

Gene_locus 9eury-m0a9w6    9eury-m0c9s2    9eury-m0cx66    9eury-m0fpi4    halpt-m0fxy0    9eury-m0jb87    halvd-metxa

Citations formats

Becker EA, Seitzer PM, Tritt A, Larsen D, Krusor M, Yao AI, Wu D, Madern D, Eisen JA, Darling AE, Facciotti MT (2014)
Phylogenetically driven sequencing of extremely halophilic archaea reveals strategies for static and dynamic osmo-response
PLoS Genet 10 :e1004784

Becker EA, Seitzer PM, Tritt A, Larsen D, Krusor M, Yao AI, Wu D, Madern D, Eisen JA, Darling AE, Facciotti MT (2014)
PLoS Genet 10 :e1004784