Optimization of RAPD-PCR reaction system for genetic relationships analysis of 15 camellia cultivars

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Abstract

With orthogonal analysis by L27(36), the random amplified polymorphic DNA (RAPD)-PCR optimization reaction system for camellia were acquired. Results showed that the optimization system was 10xPCR Buffer (2.5 μL), 25 mM MgCl2 (2.5 μL), 2.5 mM dNTPs (2.0 μL), 20 μM primer (1.0 μL), Tag (1.5 U), temple DNA (40 ng or so) and added ddH2O to the total volume 25 uL. With the optimized system and fifteen 10 nt random primers, we analyzed 15 camellia cultivars and observed 102 clear amplified loci, in which polymorphic loci were 79 while the percentage of polymorphic loci were 77.54%. Cluster analysis showed that the four groups were divided at the point 0.75 of similarity coefficient, indicating relatively high genetic diversity. We also found that the gene controlling petal color may play an important role in RAPD analysis. Moreover, genetic diversities based on RAPD analysis could be clearly reflected by morphological traits among 15 camellia cultivars. This study showed the RAPD optimization system was suitable and RAPD molecular marker was effective and useful tool for detection of genetic relationships among camellia cultivars. © 2010 Academic Journals.

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Wang, X. F., Zheng, W. H., Zheng, H. X., Xie, Q. Q., Zheng, H. Y., Tang, H., & Tao, Y. L. (2010). Optimization of RAPD-PCR reaction system for genetic relationships analysis of 15 camellia cultivars. African Journal of Biotechnology, 9(6), 798–804. https://doi.org/10.5897/ajb09.304

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