AI Article Synopsis

  • - Two nucleotide sequences, psbA-trnH and Acc1, were analyzed in 75 Avena plant samples to study their evolutionary relationships using maximum parsimony and Bayesian inference methods.
  • - The findings suggested that the A genome diploid is likely the maternal source for many Avena species, while the AB genome tetraploids showed evidence of hybrid origins, indicated by two distinct haplotypes of the Acc1 gene.
  • - Among the hexaploid species with the ACD genome, three haplotypes of the Acc1 gene indicated genetic diversity, and specific clustering patterns proposed a revision of genomic designations for species Avena murphyi and Avena maroccana.

Article Abstract

Two uncorrelated nucleotide sequences, chloroplast intergenic spacer psbA-trnH and acetyl CoA carboxylase gene (Acc1), were used to perform phylogenetic analyses in 75 accessions of the genus Avena, representing 13 diploids, seven tetraploid, and four hexaploids by maximum parsimony and Bayesian inference. Phylogenic analyses based on the chloroplast intergenic spacer psbA-trnH confirmed that the A genome diploid might be the maternal donor of species of the genus Avena. Two haplotypes of the Acc1 gene region were obtained from the AB genome tetraploids, indicating an allopolyploid origin for the tetraploid species. Among the AB genome species, both gene trees revealed differences between Avena agadiriana and the other species, suggesting that an AS genome diploid might be the A genome donor and the other genome diploid donor might be the Ac genome diploid Avena canariensis or the Ad genome diploid Avena damascena. Three haplotypes of the Acc1 gene have been detected among the ACD genome hexaploid species. The haplotype that seems to represent the D genome clustered with the tetraploid species Avena murphyi and Avena maroccana, which supported the CD genomic designation instead of AC for A. murphyi and A. maroccana.

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http://dx.doi.org/10.1139/gen-2014-0075DOI Listing

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