1. Relationships of Bradyrhizobium strains nodulating three Algerian Genista species.
- Author
-
Boudehouche W, Parker MA, and Boulila F
- Subjects
- Bayes Theorem, Bradyrhizobium genetics, Bradyrhizobium physiology, Computational Biology methods, Genes, Essential, Genista classification, Haplotypes, Multilocus Sequence Typing, Phylogeny, Quantitative Trait Loci, RNA, Ribosomal, 23S genetics, Soil Microbiology, Symbiosis, Bradyrhizobium classification, Genista microbiology, Root Nodules, Plant microbiology
- Abstract
The Mediterranean world is the cradle for the diversification of a large number of plant species, including legumes belonging to the Tribe Genisteae. Nodule bacteria from three species of Genista legumes indigenous to northwestern Africa (G. ferox, G. numidica, G. tricuspidata) were sampled across a 150km region of Algeria in order to investigate symbiotic relationships. Partial 23S rRNA sequences from 107 isolates indicated that Bradyrhizobium was the predominant symbiont genus (96% of isolates), with the remainder belonging to Rhizobium or Mesorhizobium. A multilocus sequence analysis on 46 Bradyrhizobium strains using seven housekeeping (HK) genes showed that strains were differentiated into multiple clades with affinities to seven species: B. canariense (17 isolates), B. japonicum (2), B. ottawaense (2), B. cytisi/B. rifense (9), 'B. valentinum' (5), and B. algeriense (11). Extensive discordance between the HK gene phylogeny and a tree for four loci in the symbiosis island (SI) region implied that horizontal transfer of SI loci has been common. Cases of close symbiont relationship across pairs of legumes hosts were evident, with 33% of isolates having as their closest relative a strain sampled from a different Genista species. Nevertheless, tree permutation tests also showed that there was substantial host-related phylogenetic clustering. Thus, each of the three Genista hosts utilized a measurably different array of bacterial lineages., (Copyright © 2020 Elsevier GmbH. All rights reserved.)
- Published
- 2020
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