4.7 Article

Whole-genome sequencing of Mesorhizobium huakuii 7653R provides molecular insights into host specificity and symbiosis island dynamics

Journal

BMC GENOMICS
Volume 15, Issue -, Pages -

Publisher

BMC
DOI: 10.1186/1471-2164-15-440

Keywords

Mesorhizobium huakuii 7653R; Genome sequencing; Comparative analysis; Host specificity; Symbiosis island

Funding

  1. National Basic Research Program of China (973 Program) [2010CB126502]
  2. Research Fund for the Doctoral Program of Higher Education of China [20110146110012]
  3. Fundamental Research Funds for the Central Universities [2009PY020, 2010QC016]
  4. National Natural Science Foundation of China [30970074, 31100602]
  5. Natural Sciences and Engineering Research Council of Canada

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Background: Evidence based on genomic sequences is urgently needed to confirm the phylogenetic relationship between Mesorhizobium strain MAFF303099 and M. huakuii. To define underlying causes for the rather striking difference in host specificity between M. huakuii strain 7653R and MAFF303099, several probable determinants also require comparison at the genomic level. An improved understanding of mobile genetic elements that can be integrated into the main chromosomes of Mesorhizobium to form genomic islands would enrich our knowledge of how genome dynamics may contribute to Mesorhizobium evolution in general. Results: In this study, we sequenced the complete genome of 7653R and compared it with five other Mesorhizobium genomes. Genomes of 7653R and MAFF303099 were found to share a large set of orthologs and, most importantly, a conserved chromosomal backbone and even larger perfectly conserved synteny blocks. We also identified candidate molecular differences responsible for the different host specificities of these two strains. Finally, we reconstructed an ancestral Mesorhizobium genomic island that has evolved into diverse forms in different Mesorhizobium species. Conclusions: Our ortholog and synteny analyses firmly establish MAFF303099 as a strain of M. huakuii. Differences in nodulation factors and secretion systems T3SS, T4SS, and T6SS may be responsible for the unique host specificities of 7653R and MAFF303099 strains. The plasmids of 7653R may have arisen by excision of the original genomic island from the 7653R chromosome.

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