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Zarrabian, M.

Publications and source records attributed to Zarrabian, M..

2 recordsLinked to original sources

Relationships of Worldwide Onobrychis species: from seed & pod morphology and molecular perspective

The present study aimed to investigate the phylogeny of 31 Onobrychis species with the help of seed and fruit macro & micro-morphological traits and ISSR molecular markers. The species were found to be highly variable in their seed and fruit morphological traits. Also, a new type of fruit (O. crista galli type), in addition to the three predefined types of fruit, was introduced. From molecular perspective, a set of 22 ISSR primers were shown to have a good efficiency for genetic discrimination among the species. Bayesian model based STRUCTURE analysis grouped the genotypes into 4 genetic clusters, and the high value of Fst calculated for these clusters indicated a high level of genetic differentiation among them. On the other hand, based on the Maximum Likelihood phylogenetic tree, our results are in agreement with the subgenus classification (Onobrychis and Sisyrosema), while contrary to Sisyrosema, the Onobrychis subgenus (the Lophobrychis and Onobrychis sections) appears not to be monophyletic. Furthermore, in contrast to the traditional taxonomic classification, species belonging to the Lophobrychis section do not form a coherent group, indicating that this section could be considered as a heterogeneous unit and perhaps could be merge into the Onobrychis section. HighlightThis paper discusses a worldwide phylogenic analysis and population structures of Onobrychis genus. The results of this paper provide a comprehensive answer to complexity of subgenus and section discrimination.

evolutionary biology↗

A promiscuity locus confers Lotus burttii nodulation with rhizobia from five different genera

Legumes acquire access to atmospheric nitrogen through nitrogen fixation by rhizobia in root nodules. Rhizobia are soil dwelling organisms and there is a tremendous diversity of rhizobial species in different habitats. From the legume perspective, host range is a compromise between the ability to colonize new habitats, where the preferred symbiotic partner may be absent, and guarding against infection by suboptimal nitrogen fixers. Here, we investigate natural variation in rhizobial host range across Lotus species. We find that Lotus burttii is considerably more promiscuous than Lotus japonicus, represented by the Gifu accession, in its interactions with rhizobia. This promiscuity allows Lotus burttii to form nodules with Mesorhizobium, Rhizobium, Sinorhizobium, Bradyrhizobium, and Allorhizobium species that represent five distinct genera. Using recombinant inbred lines, we have mapped the Gifu/burttii promiscuity QTL to the same genetic locus regardless of rhizobial genus, suggesting a general genetic mechanism for host-range expansion. The Gifu/burttii QTL now provides an opportunity for genetic and mechanistic understanding of promiscuous legume-rhizobia interactions.

plant biology↗