Development, characterization and cross-species transferability of expressed sequence tag-simple sequence repeat (EST-SSR) markers derived from kelampayan tree transcriptome

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Abstract

Neolamarckia cadamba (or locally known as kelampayan) is an important fast growing plantation free species that confers various advantages for timber industry as a sfrategy for reducing the logging pressure on natural forests for wood production to an acceptable level. Hence, attempts were made to develop a set of EST-SSR markers for kelampayan frees based on the EST sequences of kelampayan (NcdbEST) and further assessed the polymorphisms and frarisferability of the markers to other species. In this study, 155 (2.34%) out of 6,622 EST sequences which contain 232 SSRs were mined from NcdbEST. Of these, 97 ESTs were assigned with putative functions and gene ontology tenns. Eighteen EST-SSR markers were developed according to the criteria, and further chanicterized and validated by using 50 individuals of kelampayan from two selected mother trees. The markers exhibited a considerable high level of polymorphism in kelampayan trees with an average of 4.17 and 4.11 alleles per locus, and PlC values of 0.465 and 0.537, respectively for mother frees Ti and T2. Parentage assignment analysis snggests a high probability for kelampayan frees to be predominantly outcrossed. The transferability rate was ranging from 16.7-94.4% among the five cross-genera species of kelampayan. The present study is the first report of the development of EST-SSR markers in kelampayan. These markers will be valuable genomic resources that could pave the way for exploiting the genotype data for comparative genome mapping, association genetics, population genetics studies and molecular breeding of kelampayan and other indigenous tropical free species in future. © 2013 Asian Network for Scientific Information.

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APA

Lai, P. S., Ho, W. S., & Pang, S. L. (2013). Development, characterization and cross-species transferability of expressed sequence tag-simple sequence repeat (EST-SSR) markers derived from kelampayan tree transcriptome. Biotechnology, 12(6), 225–235. https://doi.org/10.3923/biotech.2013.225.235

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