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Evolutionary pattern of rDNA following polyploidy in Leymus (Triticeae: Poaceae). | LitMetric

Evolutionary pattern of rDNA following polyploidy in Leymus (Triticeae: Poaceae).

Mol Phylogenet Evol

Triticeae Research Institute, Sichuan Agricultural University, Wenjiang 611130, Sichuan, China; Key Laboratory of Crop Genetic Resources and Improvement, Ministry of Education, Sichuan Agricultural University, Yaan 625014, Sichuan, China. Electronic address:

Published: August 2014

AI Article Synopsis

  • The study investigated ribosomal ITS polymorphism and its origins in polyploid Leymus to understand how rDNA genes evolved after allopolyploid speciation and to explore geographic variation in ITS.
  • Findings revealed that different Leymus polyploids had distinct evolutionary paths, showing various outcomes like maintenance of diverse DNA arrays and potential pseudogenes.
  • Key points include that Leymus originated from multiple ancestral species, uniparental rDNA types may be linked to segmental allopolyploid origins, and geographic factors influenced the rDNA structure of Leymus species.

Article Abstract

Ribosomal ITS polymorphism and its ancestral genome origin of polyploid Leymus were examined to infer the evolutionary outcome of rDNA gene following allopolyploid speciation and to elucidate the geographic pattern of ITS variation. The results demonstrated that different polyploids have experienced varying fates, including maintenance or homogenization of divergent arrays, occurrence of chimeric repeats and potential pseudogenes. Our data suggested that (1) the Ns, P/F, and St genomic types in Leymus were originated from Psathyrostachys, Agropyron/Eremopyrum, and Pseudoroegneria, respectively; (2) the occurrence of a higher proportion of Leymus species with predominant uniparental rDNA type might associate with the segmental allopolyploid origin, nucleolar dominance of alloploids, and rapid radiation of Leymus; (3) maintenance of multiple parental ITS types in allopolyploid might result from long generation times associated to vegetative multiplication, number and chromosomal location of ribosomal loci and/or recurrent hybridization; (4) the rDNA genealogical structure of Leymus species might associate with the geographic origins; and (5) ITS sequence clade shared by Leymus species from Central Asia, North America, and Nordic might be an outcome of ancestral ITS homogenization. Our results shed new light on understanding evolutionary outcomes of rDNA following allopolyploid speciation and geographic isolation.

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Source
http://dx.doi.org/10.1016/j.ympev.2014.04.016DOI Listing

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