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Assessment of genetic diversity within and among Basmati and non-Basmati rice varieties using AFLP, ISSR and SSR markers

机译:使用AFLP,ISSR和SSR标记评估印度香米和非印度香米品种内部和之间的遗传多样性

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Molecular markers provide novel tools to differentiate between the various grades of Basmati rice, maintain fair-trade practices and to determine its relationship with other rice groups in Oryza sativa. We have evaluated the genetic diversity and patterns of relationships among the 18 rice genotypes representative of the traditional Basmati, cross-bred Basmati and non-Basmati (indica and japonica) rice varieties using AFLP, ISSR and SSR markers. All the three marker systems generated higher levels of polymorphism and could distinguish between all the 18 rice cultivars. The minimum number of assay-units per system needed to distinguish between all the cultivars was one for AFLP, two for ISSR and five for SSR. A total of 171 (110 polymorphic), 240 (188 polymorphic) and 160 (159 polymorphic) bands were detected using five primer combinations of AFLP, 25 UBC ISSR primers and 30 well distributed, mapped SSR markers, respectively. The salient features of AFLP, ISSR and SSR marker data analyzed using clustering algorithms, principal component analysis, Mantel test and AMOVA analysis are as given below: (i) the two traditional Basmati rice varieties were genetically distinct from indica and japonica rice varieties and invariably formed a separate cluster, (ii) the six Basmati varieties developed from various indica × Basmati rice crosses and backcrosses were grouped variably depending upon the marker system employed; CSR30 and Super being more closer to traditional Basmati followed by HKR228, Kasturi, Pusa Basmati 1 and Sabarmati, (iii) AFLP, ISSR and SSR marker data-sets showed moderate levels of positive correlation (Mantel test, r = 0.42–0.50), and (iv) the partitioning of the variance among and within rice groups (traditional Basmati, cross-bred Basmati, indica and japonica) using AMOVA showed greater variation among than within groups using SSR data-set, while reverse was true for both ISSR and AFLP data-sets. The study emphasizes the need for using a combination of different marker systems for a comprehensive genetic analysis of Basmati rice germplasm. The high-level polymorphism generated by SSR, ISSR and AFLP assays described in this study shall provide novel markers to differentiate between traditional Basmati rice supplies from cheaper cross-bred Basmati and long-grain non-Basmati varieties at commercial level.
机译:分子标记物提供了新颖的工具,可以区分不同等级的印度香米,维持公平贸易惯例,并确定其与稻米中其他水稻品种的关系。我们使用AFLP,ISSR和SSR标记评估了代表传统印度香米,杂交印度香米和非印度香米(印度和粳稻)的18种水稻基因型的遗传多样性和相关模式。这三个标记系统均产生较高水平的多态性,并且可以区分所有18个水稻品种。区分所有品种所需的每个系统的最小化验单位数是AFLP的一个,ISSR的两个和SSR的五个。使用AFLP的5个引物组合,25个UBC ISSR引物和30个分布良好的作图SSR标记分别检测到171条(110个多态性),240条(188个多态性)和160条(159个多态性)条带。使用聚类算法,主成分分析,Mantel试验和AMOVA分析对AFLP,ISSR和SSR标记数据进行分析的主要特征如下:(i)两个传统印度香米品种在遗传上与from稻和粳稻品种不同,并且始终形成一个单独的簇,(ii)根据各种various种和印度香米杂交和回交产生的六个印度香米品种根据所采用的标记系统进行可变分组; CSR30和Super更加接近传统的印度香格里拉,其次是HKR228,Kasturi,Pusa Basmati 1和Sabarmati,(iii)AFLP,ISSR和SSR标记数据集显示出中等水平的正相关(Mantel检验,r = 0.42-0.50), (iv)使用SMO数据集,使用AMOVA进行的稻米组(传统印度香米,杂交巴斯马蒂,印度d和粳稻)之间和内部的方差划分显示,各组之间的差异大于使用SSR数据集的稻米组之间的差异,而ISSR和AFLP数据集。该研究强调需要结合使用不同的标记系统对印度香米的种质进行全面的遗传分析。这项研究中描述的SSR,ISSR和AFLP分析产生的高水平多态性将提供新的标记,以区分传统的印度香米大米商品和廉价的杂交印度香米大米商品,以及长粒非印度香米大米商业品种。

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