Diallel Analysis of the Bread Wheat (Triticum aestivum L.) in the Southern Regions of the Republic of Uzbekistan

Boysunov Nurzod Bekmurodovich, Juraev Diyor Turdikulovich, Dilmurodov Sherzod Dilmurodovich, Nurillaev Ilhom Xolbekovich, Begmatov Bekzod Elmurodovich, Karimov Abduxoliq Abdullayevich
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引用次数: 1

Abstract

Diallel analysis assumes that the genetic interactions contributing to trait variation can be adequately captured by GCA and SCA effects. However, in reality, genetic interactions can be more complex, involving higher-order epistatic interactions, pleiotropy, and other factors that are not accounted for in the traditional diallel analysis, for this purpose, studies were conducted to study the combinatorial ability of wheat varieties widely planted in Uzbekistan. The mode of inheritance for the 1000- kernel weight, vegetation period, plant height, vitreousity, grain yield, mass of grain in the ear and productive accumulation of 4x4 full diallel crosses of wheat varieties was estimated in F1 generation. The results indicated significant differences between the parents for Generаl Combining Ability and cross for Specific Combining Ability, reciprocal effect for 1000- kernel weight, vegetation period, plant height, vitreousity, grain yield, mass of grain in the ear and productive accumulation. However, analysis of variance of combining capable for grain yield indicated that Generаl Combining Ability and Reciprocal effects were highly importance while Specific Combining Ability. Highly significant Generаl Combining Ability and Specific Combining Ability variances showed the predominance of additive, epistatic and dominant genes in controlling this character. In the process of hybridization, the application of the original biped gene is important, and for its appearance in the generation, it is necessary to choose a positive line of General Combining Ability. In this way, it will be possible to pre-estimate the characteristics of the future. A positive and negative heterozygosity for the parent was found for the studied trait, which increased the genetic diversity of the parents.
乌兹别克斯坦共和国南部地区面包小麦(Triticum aestivum L.)双列杂交分析
双列分析认为,遗传相互作用对性状变异的影响可以通过GCA和SCA效应充分体现出来。然而,在现实中,遗传相互作用可能更复杂,涉及高阶上位相互作用、多效性和其他因素,这些因素在传统的双列杂交分析中没有考虑到,为此,研究人员对乌兹别克斯坦广泛种植的小麦品种的组合能力进行了研究。估计了小麦品种4 × 4全双列杂交F1代千粒重、生长期、株高、玻璃体、产量、穗粒质量和产量积累的遗传模式。结果表明,亲本间的一般配合力和特殊配合力存在显著差异,千粒重、生长期、株高、玻璃体、产量、穗粒质量和产量积累存在显著的互反效应。然而,配合力对产量的方差分析表明,一般配合力和互反效应对产量的影响比特定配合力更大。遗传配合力和特异配合力变异均极显著,表明加性、上位性和显性基因在控制本性状中占优势。在杂交过程中,原双足基因的应用很重要,为了使其在世代中出现,必须选择一般配合力正系。这样,就有可能预先估计未来的特征。本性状与亲本存在正杂合性和负杂合性,增加了亲本的遗传多样性。
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