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Allele Frequency of Local Maize Inbred Lines (Zea mays L.)

机译:局部玉米自交系等位基因频率(Zea Mays L.)

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摘要

The objective of this study was to screen the genetic divergence of 32 inbred lines in the F4 generation of inbreeding, originating from domestic populations of Eastern Serbia. In order to speed up the selection process, it is important to select genotypes with desirable properties at an early stage. Isoenzymes, as a direct product of genes, can be used as genetic markers in the selection process. Different numbers and distribution of certain alleles in inbred lines of maize indicate their mutual distance and genetic divergence. Differences in the investigated inbred lines can be shown by the presence or absence of specific alleles in loci and their frequency. The highest number of alleles (14) was found in line 5, 14 inbred lines had 13 alleles each, while line 9 had 12 alleles. Three lines each had 10 and 11 alleles, while one line had nine alleles (line 30). Only eight lines were homozygous for all loci (3,7, 10, 21, 24, 26, 28 and 30). In accordance with allele frequencies, all lines were allocated to three groups with a different number of lines. The first and second groups joined at a distance of 4.2 and formed a new group connected to the third group at the furthest distance of 7. The third group of lines was clearly separated from the first two groups. Lines 26, 28 and 32 can be viewed as independent genotypes, joined to the third group at a distance of 2.25. These results permit a clearer evaluation of the lines during the process of selection and, together with other desirable traits, faster choice of material for further selection.
机译:本研究的目的是筛选F4近亲繁殖中的32种近交系的遗传分歧,源自塞尔维亚东部的国内群体。为了加速选择过程,重要的是在早期选择具有所需性质的基因型。作为基因的直接产物的同次酶可以用作选择过程中的遗传标记。玉米自交系中某些等位基因的不同数量和分布表明了它们的相互距离和遗传分歧。通过基因座及其频率的特定等位基因存在或不存在,所研究的近交系的差异可以显示。在5号线中发现了最多的等位基因(14),14条近交系有13个等位基因,而第9行有12个等位基因。三条线均具有10和11等位基因,而一条线具有九个等位基因(第30行)。对于所有基因座仅纯合(3,7,10,21,26,26,28和30)纯合。根据等位基因频率,所有线条分配给具有不同数量的线条的三个组。在4.2的距离下加入的第一和第二组,并形成在最远距离7的距离处连接到第三组的新组。第三组线与前两组明显分离。线26,28和32可以被视为独立基因型,在2.25的距离处连接到第三组。这些结果允许在选择过程中更清楚地评估线的线条,以及其他理想的特征,更快地选择材料以进行进一步选择。

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