4.6 Article

Molecular Characterization of Tinospora cordifolia (Willd.) Miers Using Novel g-SSR Markers and Their Comparison with EST-SSR and SCoT Markers for Genetic Diversity Study

期刊

GENES
卷 13, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/genes13112042

关键词

Tinospora cordifolia; genetic diversity; g-SSR; EST-SSR; SCoT markers; principal coordinate analysis (PCoA); cross-species transferability

资金

  1. ICAR-National Bureau of Plant Genetic Resources, New Delhi

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In this study, novel genomic-SSR (g-SSR) markers were used to characterize Tinospora cordifolia and related species. The g-SSR marker was compared with EST-SSR and SCoT markers and found to be a better marker for genetic diversity studies of T. cordifolia. In addition, the g-SSR marker showed high cross-species transferability, making it useful for studying related species.
In the present study, novel genomic-SSR (g-SSR) markers generated in our laboratory were used to characterize Tinospora cordifolia and related species. The g-SSR marker was also compared with EST-SSR and SCoT markers used earlier in our laboratory to assess the genetic diversity of T. cordifolia. A total of 26 accessions of T. cordifolia and 1 accession each of Tinospora rumphii and Tinospora sinensis were characterized using 65 novel g-SSR markers. A total of 125 alleles were detected with 49 polymorphic g-SSR markers. The number of alleles per locus varied from 1-4 with a mean value of 2.55 alleles per locus. Mean PIC, gene diversity, and heterozygosity were estimated to be 0.33, 0.41, and 0.65, respectively. The two species, namely T. rumphii and T. sinensis, showed cross-species transferability of g-SSRs developed in T. cordifolia. The success rate of cross-species transferability in T. rumphii was 95.3% and 93.8% in T. sinensis, proving the usefulness of this marker in genetic diversity studies of related species. The Tinospora accessions were also used for molecular characterization using SCoT and EST-SSR markers and compared for genetic diversity and cross-species transferability. The PIC, gene diversity, heterozygosity, and principal coordinate analysis showed that g-SSR is the better maker for a genetic diversity study of T. cordifolia. Additionally, high cross-species transferability of g-SSRs was found (95.3% and 93.8%) compared to EST-SSRs (68.8% and 67.7%) in T. rumphii and T. sinensis, respectively.

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