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The Evolution of Vicia Ramuliflora (Fabaceae) at Tetraploid and Diploid Levels Revealed with FISH and RAPD

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Journal PLoS One
Date 2017 Jan 31
PMID 28135314
Citations 2
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Abstract

Vicia ramuliflora L. is a widely distributed species in Eurasia with high economic value. For past 200 years, it has evolved a tetraploid cytotype and new subspecies at the diploid level. Based on taxonomy, cytogeography and other lines of evidence, previous studies have provided valuable information about the evolution of V. ramuliflora ploidy level, but due to the limited resolution of traditional methods, important questions remain. In this study, fluorescence in situ hybridization (FISH) and random amplified polymorphic DNA (RAPD) were used to analyze the evolution of V. ramuliflora at the diploid and tetraploid levels. Our aim was to reveal the genomic constitution and parents of the tetraploid V. ramuliflora and the relationships among diploid V. ramuliflora populations. Our study showed that the tetraploid cytotype of V. ramuliflora at Changbai Mountains (M) has identical 18S and 5S rDNA distribution patterns with the diploid Hengdaohezi population (B) and the diploid Dailing population (H). However, UPGMA clustering, Neighbor-Joining clustering and principal coordinates analysis based on RAPD showed that the tetraploid cytotype (M) has more close relationships with Qianshan diploid population T. Based on our results and the fact that interspecific hybridization among Vicia species is very difficult, we think that the tetraploid V. ramuliflora is an autotetraploid and its genomic origin still needs further study. In addition, our study also found that Qianshan diploid population (T) had evolved distinct new traits compared with other diploid populations, which hints that V. ramuliflora evolved further at diploid level. We suggest that diploid population T be re-classified as a new subspecies.

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References
1.
Grant V . Cytogenetics of the hybrid Gilia millefoliata x achilleaefolia. I. Variations in meiosis and polyploidy rate as affected by nutritional and genetic conditions. Chromosoma. 1952; 5(4):372-90. View

2.
Abdullah A, Muwalla M, Qudsieh R, Titi H . Effect of bitter vetch (Vicia ervilia) seeds as a replacement protein source of soybean meal on performance and carcass characteristics of finishing Awassi lambs. Trop Anim Health Prod. 2009; 42(2):293-300. DOI: 10.1007/s11250-009-9420-x. View

3.
Wei J, Wang R . Genome- and species-specific markers and genome relationships of diploid perennial species in Triticeae based on RAPD analyses. Genome. 1995; 38(6):1230-6. DOI: 10.1139/g95-161. View

4.
Traldi J, Blanco D, Vicari M, Martinez J, Lui R, Barros A . Chromosomal diversity in Hypostomus (Siluriformes, Loricariidae) with emphasis on physical mapping of 18S and 5S rDNA sites. Genet Mol Res. 2013; 12(1):463-71. DOI: 10.4238/2013.February.8.11. View

5.
G Williams J, Kubelik A, Livak K, Rafalski J, Tingey S . DNA polymorphisms amplified by arbitrary primers are useful as genetic markers. Nucleic Acids Res. 1990; 18(22):6531-5. PMC: 332606. DOI: 10.1093/nar/18.22.6531. View