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Life  2013 

Molecular Mechanisms of Adaptation of the Moderately Halophilic Bacterium Halobacillis halophilus to Its Environment

DOI: 10.3390/life3010234

Keywords: osmoadaptation, chloride accumulation, compatible solutes, hybrid strategy

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Abstract:

The capability of osmoadaptation is a prerequisite of organisms that live in an environment with changing salinities. Halobacillus halophilus is a moderately halophilic bacterium that grows between 0.4 and 3 M NaCl by accumulating both chloride and compatible solutes as osmolytes. Chloride is absolutely essential for growth and, moreover, was shown to modulate gene expression and activity of enzymes involved in osmoadaptation. The synthesis of different compatible solutes is strictly salinity- and growth phase-dependent. This unique hybrid strategy of H. halophilus will be reviewed here taking into account the recently published genome sequence. Based on identified genes we will speculate about possible scenarios of the synthesis of compatible solutes and the uptake of potassium ion which would complete our knowledge of the fine-tuned osmoregulation and intracellular osmolyte balance in H. halophilus.

References

[1]  Claus, D.; Fahmy, F.; Rolf, H.J.; Tosunoglu, N. Sporosarcina halophila sp. nov., an obligate, slightly halophilic bacterium from salt marsh soils. Syst. Appl. Microbiol.?1983, 4, 496–506.
[2]  Spring, S.; Ludwig, W.; Marquez, M.C.; Ventosa, A.; Schleifer, K.-H. Halobacillus gen. nov., with descriptions of Halobacillus litoralis sp. nov. and Halobacilus trueperi sp. nov., and transfer of Sporosarcina halophila to Halobacillus halophilus comb. nov. Int. J. Syst. Bacteriol.?1996, 46, 492–496.
[3]  Roessler, M.; Müller, V. Quantitative and physiological analyses of chloride dependence of growth of Halobacillus halophilus. Appl. Environ. Microbiol.?1998, 64, 3813–3817.
[4]  Galinski, E.A.; Trüper, H.G. Microbial behavior in salt-stressed ecosystems. FEMS Microbiol. Rev.?1994, 15, 95–108, doi:10.1111/j.1574-6976.1994.tb00128.x.
[5]  Ventosa, A.; Nieto, J.J.; Oren, A. Biology of moderately halophilic aerobic bacteria. Microbiol. Mol. Biol. R?1998, 62, 504–544.
[6]  Roessler, M.; Müller, V. Osmoadaptation in bacteria and archaea: Common principles and differences. Environ. Microbiol.?2001, 3, 743–754, doi:10.1046/j.1462-2920.2001.00252.x.
[7]  Saum, S.; Pfeiffer, F.; Palm, P.; Rampp, M.; Schuster, S.; Müller, V.; Oesterhelt, D. Chloride and organic osmolytes: A hybrid strategy to cope with elevated salinities by the moderately halophilic, chloride-dependent bacterium Halobacillus halophilus. Environ. Microbiol.?2012, doi:10.1111/j.1462-2920.2012.02770.x.
[8]  Dohrmann, A.B.; Müller, V. Chloride dependence of endospore germination in Halobacillus halophilus. Arch. Microbiol.?1999, 172, 264–267, doi:10.1007/s002030050769.
[9]  Roessler, M.; Müller, V. Chloride, a new environmental signal molecule involved in gene regulation in a moderately halophilic bacterium, Halobacillus halophilus. J. Bacteriol.?2002, 184, 6207–6215, doi:10.1128/JB.184.22.6207-6215.2002.
[10]  Saum, S.H.; Müller, V. Regulation of osmoadaptation in the moderate halophile Halobacillus halophilus: Chloride, glutamate and switching osmolyte strategies. Saline Syst.?2008, 4, 4, doi:10.1186/1746-1448-4-4.
[11]  Bakker, E.P. CRC Press: Boca Raton, FL, USA, 1992; pp. 205–224.
[12]  Saum, S.H.; Sydow, J.F.; Palm, P.; Pfeiffer, F.; Oesterhelt, D.; Müller, V. Biochemical and molecular characterization of the biosynthesis of glutamine and glutamate, two major compatible solutes in the moderately halophilic bacterium Halobacillus halophilus. J. Bacteriol.?2006, 188, 6808–6815, doi:10.1128/JB.00781-06.
[13]  Saum, S.H.; Müller, V. Salinity-dependent switching of osmolyte strategies in a moderately halophilic bacterium: Glutamate induces proline biosynthesis in Halobacillus halophilus. J. Bacteriol.?2007, 189, 6968–6975, doi:10.1128/JB.00775-07.
[14]  Saum, S.H.; Müller, V. Growth phase-dependent switch in osmolyte strategy in a moderate halophile: Ectoine is a minor osmolyte but major stationary phase solute in Halobacillus halophilus. Environ. Microbiol.?2008, 10, 716–726, doi:10.1111/j.1462-2920.2007.01494.x.
[15]  Burkhardt, J.; Sewald, X.; Bauer, B.; Saum, S.H.; Müller, V. Synthesis of glycine betaine from choline in the moderate halophilic Halobacillus halophilus: Co-regulation of two divergent, polycistronic operons. Environ. Microbiol. Rep.?2009, 1, 38–43, doi:10.1111/j.1758-2229.2008.00001.x.

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