4.5 Article

Diversity and distribution of Sophora davidii rhizobia in habitats with different irradiances and soil traits in Loess Plateau area of China

期刊

出版社

ELSEVIER GMBH
DOI: 10.1016/j.syapm.2021.126224

关键词

Rhizobia; Sophora davidii; Phylogeny; Biogeography; Diversity; Light habitat

资金

  1. National Natural Science Foundation of China [31901100, 41871036]
  2. Postdoctoral Research Foundation of China [2019M653889XB]
  3. Natural Science Foundation of Shaanxi Provincial Department of Education [19JK0838]

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The study investigated the diversity and distribution of rhizobia associated with Sophora davidii in habitats with different light and soil conditions at the Loess Plateau. Illumination conditions were found to play a role, but soil pH and nutrient content were the main determinants for the community structure of S. davidii rhizobia. Evidence of symbiotic gene lateral transfer between Mesorhizobium robiniae and some S. davidii rhizobia under the forest of Robinia pseudoacacia was also observed.
To investigate the diversity and distribution of rhizobia associated with Sophora davidii in habitats with different light and soil conditions at the Loess Plateau, we isolated rhizobia from root nodules of this plant grown at 14 sites at forest edge or understory in Shaanxi Province. Based on PCR-RFLP and phylogenies of 16S rRNA gene, housekeeping genes (atpD, dnaK, recA), and symbiosis genes (nodC and nifH), a total of 271 isolates were identified as 16 Mesorhizobium genospecies, belonging to four nodC lineages, and three nifH lineages. The dominance of M. waimense in the forest edge and of M. amorphae/Mesorhizobium sp. X in the understory habitat evidenced the illumination as a possible factor to affect the diversity and biogeographic patterns of rhizobia. However, the results of Canonical Correlation Analysis (CCA) among the environmental factors and distribution of rhizobial genospecies illustrated that soil pH and contents of total phosphorus, total potassium and total organic carbon were the main determinants for the community structure of S. davidii rhizobia, while the illumination conditions and available P presented similar and minor effects. In addition, high similarity of nodC and nifH genes between Mesorhizobium robiniae and some S. davidii rhizobia under the forest of Robinia pseudoacacia might be evidence for symbiotic gene lateral transfer. These findings firstly brought an insight into the diversity and distribution of rhizobia associated with S. davidii, and revealed illumination conditions a possible factor with impacts less than the soil traits to drive the symbiosis association between rhizobia and their host legumes. (c) 2021 Published by Elsevier GmbH.

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