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Genomic Features Separating Ten Strains of Neorhizobium Galegae with Different Symbiotic Phenotypes

Overview
Journal BMC Genomics
Publisher Biomed Central
Specialty Genetics
Date 2015 May 3
PMID 25933608
Citations 7
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Abstract

Background: The symbiotic phenotype of Neorhizobium galegae, with strains specifically fixing nitrogen with either Galega orientalis or G. officinalis, has made it a target in research on determinants of host specificity in nitrogen fixation. The genomic differences between representative strains of the two symbiovars are, however, relatively small. This introduced a need for a dataset representing a larger bacterial population in order to make better conclusions on characteristics typical for a subset of the species. In this study, we produced draft genomes of eight strains of N. galegae having different symbiotic phenotypes, both with regard to host specificity and nitrogen fixation efficiency. These genomes were analysed together with the previously published complete genomes of N. galegae strains HAMBI 540T and HAMBI 1141.

Results: The results showed that the presence of an additional rpoN sigma factor gene in the symbiosis gene region is a characteristic specific to symbiovar orientalis, required for nitrogen fixation. Also the nifQ gene was shown to be crucial for functional symbiosis in both symbiovars. Genome-wide analyses identified additional genes characteristic of strains of the same symbiovar and of strains having similar plant growth promoting properties on Galega orientalis. Many of these genes are involved in transcriptional regulation or in metabolic functions.

Conclusions: The results of this study confirm that the only symbiosis-related gene that is present in one symbiovar of N. galegae but not in the other is an rpoN gene. The specific function of this gene remains to be determined, however. New genes that were identified as specific for strains of one symbiovar may be involved in determining host specificity, while others are defined as potential determinant genes for differences in efficiency of nitrogen fixation.

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References
1.
Shimoda Y, Nagata M, Suzuki A, Abe M, Sato S, Kato T . Symbiotic rhizobium and nitric oxide induce gene expression of non-symbiotic hemoglobin in Lotus japonicus. Plant Cell Physiol. 2005; 46(1):99-107. DOI: 10.1093/pci/pci001. View

2.
van der Ploeg J, Cummings N, Leisinger T, Connerton I . Bacillus subtilis genes for the utilization of sulfur from aliphatic sulfonates. Microbiology (Reading). 1998; 144 ( Pt 9):2555-2561. DOI: 10.1099/00221287-144-9-2555. View

3.
de Bruijn F, Rossbach S, Bruand C, Parrish J . A highly conserved Sinorhizobium meliloti operon is induced microaerobically via the FixLJ system and by nitric oxide (NO) via NnrR. Environ Microbiol. 2006; 8(8):1371-81. DOI: 10.1111/j.1462-2920.2006.01030.x. View

4.
Baudouin E, Pieuchot L, Engler G, Pauly N, Puppo A . Nitric oxide is formed in Medicago truncatula-Sinorhizobium meliloti functional nodules. Mol Plant Microbe Interact. 2006; 19(9):970-5. DOI: 10.1094/MPMI-19-0970. View

5.
Poggio S, Osorio A, Dreyfus G, Camarena L . Transcriptional specificity of RpoN1 and RpoN2 involves differential recognition of the promoter sequences and specific interaction with the cognate activator proteins. J Biol Chem. 2006; 281(37):27205-15. DOI: 10.1074/jbc.M601735200. View