A tale of two oxidation states:: Bacterial colonization of arsenic-rich environments

被引:135
作者
Muller, Daniel
Medigue, Claudine
Koechler, Sandrine
Barbe, Valerie
Barakat, Mohamed
Talla, Emmanuel
Bonnefoy, Violaine
Krin, Evelyne
Arsene-Ploetze, Florence
Carapito, Christine
Chandler, Michael
Cournoyer, Benoit
Cruveiller, Stephane
Dossat, Caroline
Duval, Simon
Heymann, Michael
Leize, Emmanuelle
Lieutaud, Aurelie
Lievremont, Didier
Makita, Yuko
Mangenot, Sophie
Nitschke, Wolfgang
Ortet, Philippe
Perdrial, Nicolas
Schoepp, Barbara
Siguier, Patricia
Simeonova, Diliana D.
Rouy, Zoe
Segurens, Beatrice
Turlin, Evelyne
Vallenet, David
Van Dorsselaer, Alain
Weiss, Stephanie
Weissenbach, Jean
Lett, Marie-Claire
Danchin, Antoine
Bertin, Philippe N. [1 ]
机构
[1] CNRS, UMR7156, Genet Mol Genom & Microbiol, F-67000 Strasbourg, France
[2] Univ Strasbourg 1, Strasbourg, France
[3] CNRS, UMR8030, Genoscope, Evry, France
[4] Univ Aix Marseille 2, St Paul Les Durance, France
[5] CNRS, CEA, UMR6191, Lab Ecol Microbienne Rhizosphere & Environm Extre, St Paul Les Durance, France
[6] CNRS, Inst Biol Struct & Microbiol, UPR9043, Lab Chim Bacterienne, Marseille, France
[7] Inst Pasteur, URA2171, Genet Genom Bacteriens, Paris, France
[8] CNRS, UMR7178, Inst Pluridisciplinaire Hubert Curien, Lab Spectrometrie Masse Bioorgan, F-67000 Strasbourg, France
[9] CNRS, UMR5100, Lab Microbiol & Genet Mol, Toulouse, France
[10] Univ Lyon 1, F-69622 Villeurbanne, France
[11] CNRS, UMR5557, Ecol Microbienne, Villeurbanne, France
[12] CNRS, Inst Biol Struct & Microbiol, UPR9036, Lab Bioenerget & Ingn Prot, Marseille, France
[13] CNRS, UMR7157, Ctr Geochim Surface, F-67000 Strasbourg, France
来源
PLOS GENETICS | 2007年 / 3卷 / 04期
关键词
D O I
10.1371/journal.pgen.0030053
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Microbial biotransformations have a major impact on contamination by toxic elements, which threatens public health in developing and industrial countries. Finding a means of preserving natural environments-including ground and surface waters-from arsenic constitutes a major challenge facing modern society. Although this metalloid is ubiquitous on Earth, thus far no bacterium thriving in arsenic-contaminated environments has been fully characterized. In-depth exploration of the genome of the b-proteobacterium Herminiimonas arsenicoxydans with regard to physiology, genetics, and proteomics, revealed that it possesses heretofore unsuspected mechanisms for coping with arsenic. Aside from multiple biochemical processes such as arsenic oxidation, reduction, and efflux, H. arsenicoxydans also exhibits positive chemotaxis and motility towards arsenic and metalloid scavenging by exopolysaccharides. These observations demonstrate the existence of a novel strategy to efficiently colonize arsenic-rich environments, which extends beyond oxidoreduction reactions. Such a microbial mechanism of detoxification, which is possibly exploitable for bioremediation applications of contaminated sites, may have played a crucial role in the occupation of ancient ecological niches on earth.
引用
收藏
页码:0518 / 0530
页数:13
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