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Isolation and characterization of microsatellite markers from guineagrass (Panicum maximum) for genetic diversity estimate and cross-species amplification

机译:豚鼠(最大草)微卫星标记的分离和鉴定,用于遗传多样性估计和跨物种扩增

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Guineagrass (Panicum maximum Jacq.) is one of the major forage grasses in tropical and semitropical regions, largely apomictic and predominantly exist as tetraploid. Non-availability of polymorphic molecular markers has been a major limitation in its characterization and improvement. We report isolation and characterization of microsatellites in P. maximum and cross-species results with other five Panicum species. Based on microsatellite-motifs, 15 functional and polymorphic simple sequence repeat (SSR) primer-pairs were designed, validated and employed in estimating genetic relationship among 34 guineagrass accessions. Thirteen primer-pairs amplified single locus and remaining two generated more than two loci with an average of 3.57 bands per locus amounts to 63 bands with 34 guineagrass accessions. Average expected heterozygosity (H-E) of 0.35 (maximum 0.97) and observed heterozygosity (H-O) of 0.37 (maximum 0.91) established the efficiency of developed markers for discriminating guineagrass accessions. Dice's similarity coefficients-based unweighted pair group with arithmetic average method-clustering supported with high bootstrap values (>= 40) indicated its significance and distinguished all accessions except IG97-93 and IG97-6. Utility of these new SSR loci in genetic diversity study of P. maximum and other cross-amplified species is discussed.
机译:几内亚(Panicum maximum Jacq。)是热带和亚热带地区主要的牧草之一,主要是无融合生殖的,并且主要以四倍体的形式存在。多态性分子标记物的不可用性一直是其表征和改进的主要限制。我们报告了孤立和表征的体育最大和跨物种结果与其他五种Panicum物种中的微卫星。基于微卫星基序,设计,验证和使用了15个功能和多态性简单序列重复(SSR)引物对,以估计34种豚鼠种之间的遗传关系。十三对引物对扩增了单个位点,其余两个引物对产生了两个以上的位点,平均每个位点有3.57条带,相当于63条带,其中有34个豚鼠。平均预期杂合度(H-E)为0.35(最大0.97)和观察到的杂合度(H-O)为0.37(最大0.91)建立了区分几内亚种质的已开发标记的效率。具有较高的自举值(> = 40)并支持算术平均法聚类的基于Dice相似度系数的未加权对组表明了其重要性,并区分了除IG97-93和IG97-6以外的所有入藏物。讨论了这些新的SSR基因座在最大体育和其他交叉扩增物种的遗传多样性研究中的用途。

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