References 1 Zahran HH: Rhizobium -legume symbiosis and nitrogen

References 1. Zahran HH: Rhizobium -legume symbiosis and nitrogen fixation under severe conditions and in an arid climate. Microbiol Mol Biol Rev 1999, 63:968–989.PubMed 2. Galinski EA: Osmoadaptation in bacteria. Adv Microb Physiol 1995, 37:272–328.PubMed 3. Miller KJ, Wood JM: Osmoadaptation by rhizosphere bacteria. Annu Rev Microbiol 1996, 50:101–136.PubMedCrossRef 4. da Costa MS, Santos H, Galinski EA: An overview of the role and diversity of compatible solutes in Bacteria and Archaea. Adv

Biochem Eng Biotechnol 1998, 61:117–153.PubMed 5. Brown AD: Microbial water stress. Bacteriol Rev 1976, 40:803–846.PubMed 6. Welsh DT: Ecological significance of compatible solute accumulation by micro organisms: from AR-13324 supplier single cells to global climate. FEMS Microbiol Rev 2000, 24:263–290.PubMedCrossRef

7. Santos H, da Costa MS: Compatible solutes of organisms that live in hot saline environments. Environ Microbiol 2002, 4:501–509.PubMedCrossRef 8. Breedveld MW, Miller KJ: Cyclic beta-glucans of members of the family Rhizobiaceae . Microbiol Rev 1994, 58:145–161.PubMed 9. Botsford JL, Lewis TA: Osmoregulation in Rhizobium meliloti : production of glutamic acid in response to osmotic stress. Appl Environ Microbiol 1990, 56:488–494.PubMed 10. Domínguez-Ferreras A, Muñoz S, Olivares J, Soto MJ, Sanjuán J: Role of potassium uptake systems in Sinorhizobium meliloti osmoadaptation and symbiotic performance. J Bacteriol 2009, 191:2133–2143.PubMedCrossRef 11. Smith LT, Pocard JA, Bernard-Smith LT, Smith GM: An osmoregulated dipeptide in stressed Rhizobium meliloti . J Bacteriol 1989, 171:4714–4717.PubMed 12. Domínguez-Ferreras A, Soto MJ, Pérez-Arnedo Selleckchem CBL0137 R, Olivares J, Sanjuán J: Importance of XAV-939 trehalose biosynthesis for Sinorhizobium meliloti osmotolerance and nodulation of Alfalfa roots. J Bacteriol 2009, 191:7490–7499.PubMedCrossRef 13. Sugawara M, Cytryn EJ, Sadowsky MJ: Functional role of Bradyrhizobium japonicum trehalose biosynthesis and metabolism genes during physiological stress and nodulation. Appl Environ Microbiol 2010, 76:1071–1081.PubMedCrossRef

14. McIntyre HJ, Davies H, Hore TA, Miller SH, Dufour JP, Ronson CW: Trehalose biosynthesis in Rhizobium leguminosarum bv. trifolii and its role in desiccation tolerance. Appl Environ Microbiol 2007, 73:3984–3992.PubMedCrossRef 15. Martínez-Romero E, Segovia PLEKHM2 L, Mercante FM, Franco AA, Graham P, Pardo MA: Rhizobium tropici , a novel species nodulating Phaseolus vulgaris L. beans and Leucaena sp. trees. Int J System Bacteriol 1991, 41:417–426.CrossRef 16. Amarger N, Macheret V, Laguerre G: Rhizobium gallicum sp. nov. and Rhizobium giardinii sp. nov., from Phaseolus vulgaris nodules. Int J System Bacteriol 1997, 47:996–1006.CrossRef 17. Silva C, Vinuesa P, Eguiarte LE, Souza V, Martínez-Romero E: Evolutionary genetics and biogeographic structure of Rhizobium galliucm sensu lato , a widely distributed bacterial symbiont of diverse legumes. Mol Ecol 2005, 14:4033–4050.PubMedCrossRef 18.

Comments are closed.