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首页> 外文期刊>Turkish Journal of Botany >Genetic diversity of Turkish commercial cotton varieties revealed by molecular markers and fiber quality traits
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Genetic diversity of Turkish commercial cotton varieties revealed by molecular markers and fiber quality traits

机译:分子标记和纤维品质性状揭示土耳其商品棉品种的遗传多样性

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摘要

To assess the genetic diversity and relationships among commercial Gossypium species released in Turkey between 1964 and 2014, 96 cotton varieties were analyzed using morphological and molecular markers. Morphological analysis was performed based on 4 fiber quality traits including fiber length, strength, fineness, and uniformity, and the mean values of each trait for each genotype were calculated using 2-year data. The results showed that most of the genotypes have long fiber length, very high fiber strength, coarse (45 genotypes) or average (50 genotypes) fiber fineness, and high uniformity. Twenty-six simple sequence repeat (SSR) markers and 14 markers linked to quantitative trait loci (QTLs) for fiber quality traits produced a total of 103 alleles, with an average of 2.57 alleles per locus ranging from 80 bp to 300 bp products, with an average polymorphism information content (PIC) value of 0.233. Markers DPL513 and DPL431 (among 26 SSR markers) and markers CIR246 and BNL4108 (among 14 molecular markers) were found to be very informative, with 0.724, 0.663, 0.749, and 0.583 PIC values, respectively. The combined morphological and molecular data analysis resulted in more than 8 clades using the unweighted pair group method with arithmetic average (UPGMA). The upland cotton varieties were distinctly separated from the lowland cotton variety Maydos Yerlisi (Gossypium herbaceum L.). Within the upland cotton varieties, the Egyptian cotton variety Giza 70 (G. barbadense L.) was distinctly separated from commercial cotton varieties of Turkey (G. hirsutum L.), as revealed by both morphological and molecular dendrograms. Principal component analysis (PCA) derived from combined data was in agreement with UPGMA analysis. It is concluded that commercial Turkish cotton varieties have a good genetic diversity with high fiber quality, considering the upland cotton's narrow genetic structure. These results can provide a useful guide for selecting specific germplasm with distinct genetic backgrounds in cotton breeding programs.
机译:为了评估1964年至2014年间在土耳其发布的商业棉属品种的遗传多样性和关系,使用形态学和分子标记对96个棉花品种进行了分析。根据纤维长度,强度,细度和均匀度这4种纤维质量特征进行形态分析,并使用2年数据计算每种基因型的每种特征的平均值。结果表明,大多数基因型具有较长的纤维长度,非常高的纤维强度,较粗的(45个基因型)或中等的(50个基因型)纤维细度和较高的均匀度。 26个简单序列重复(SSR)标记和14个与纤维质量性状的数量性状基因座(QTL)关联的标记共产生103个等位基因,平均每个位点为2.57个等位基因,范围从80 bp到300 bp,其中平均多态信息含量(PIC)值为0.233。发现标记DPL513和DPL431(在26个SSR标记中)以及标记CIR246和BNL4108(在14个分子标记中)非常有用,PIC值分别为0.724、0.663、0.749和0.583。结合形态学和分子数据分析,使用算术平均值(UPGMA)的非加权成对组方法可以得到8个以上进化枝。高地棉花品种与低地棉花品种Maydos Yerlisi(棉铃兰)明显分开。在陆地棉品种中,形态和分子树状图都表明,埃及棉花品种Giza 70(G. barbadense L.)与土耳其商业棉花品种(G. hirsutum L.)明显分开。从合并数据中得出的主成分分析(PCA)与UPGMA分析一致。结论是,考虑到陆地棉的遗传结构较窄,土耳其商品棉品种具有良好的遗传多样性和较高的纤维品质。这些结果可为选择具有不同遗传背景的棉花育种计划中的特定种质提供有用的指导。

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