首页> 外文期刊>Генетика: Ежемес. журн. >Assessment of genetic diversity among Syrian durum (Triticum turgidum ssp. durum) and bread wheat (Triticum aestivum L.) using SSR markers.
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Assessment of genetic diversity among Syrian durum (Triticum turgidum ssp. durum) and bread wheat (Triticum aestivum L.) using SSR markers.

机译:之间的遗传多样性评估叙利亚硬质(小麦属植物turgidum ssp。(小麦l .)利用SSR标记。

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Genetic diversity among 49 wheat varieties (37 durum and 12 bread wheat) was assayed using 32 microsatellites representing 34 loci covering almost the whole wheat genome. The polymorphic information content (PIC) across the tested loci ranged from 0 to 0.88 with average values of 0.57 and 0.65 for durum and bread wheat respectively. B genome had the highest mean number of alleles (10.91) followed by A genome (8.3) whereas D genome had the lowest number (4.73). The correlation between PIC and allele number was significant in all genome groups accounting for 0.87, 074 and 0.84 for A, B and D genomes respectively, and over all genomes, the correlation was higher in tetraploid (0.8) than in hexaploid wheat varieties (0.5). The cluster analysis discriminated all varieties and clearly divided the two ploidy levels into two separate clusters that reflect the differences in genetic diversity within each cluster. This study demonstrates that microsatellites markers have unique advantages compared to other molecular and biochemical fingerprinting techniques in revealing the genetic diversity in Syrian wheat varieties that is crucial for wheat improvement.
机译:49个小麦品种之间的遗传多样性(37硬质和12个面包小麦)化验使用32代表34个微卫星位点几乎整个小麦基因组。整个检测位点信息内容(图片)范围从0到0.88,平均值为0.57分别为0.65,硬质小麦和小麦面包。B基因组最高平均等位基因的数量(10.91),后跟一个基因组(8.3)而D基因组数量最低(4.73)。图片和等位基因之间的相关性在所有基因组组织占显著0.87, 074和0.84 A, B和D基因组分别和全基因组相关性是高四倍体(0.8)在六倍体小麦品种(0.5)。分析各种歧视和清楚两倍性水平分成两个独立的集群反映基因的差异在每个集群的多样性。表明微卫星标记相比于其他分子和独特的优势生化指纹识别技术揭示了在叙利亚小麦遗传多样性品种对小麦改良是至关重要的。

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