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Inheritance of grain yield and its correlation with yield components in bread wheat (Triticum aestivum L.)

机译:面包小麦(Triticum aestivum L.)的籽粒产量遗传及其与产量构成的相关性

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The genetic effect of grain yield plant-1 and its correlation with yield components were investigated in a 7 × 7 incomplete diallel cross of seven wheat parents during the crop season of 2009 to 2010. Mean square of general combining ability (GCA) effect was 2.90 for grain yield plant-1, which was highly significant (P<0.01), indicating that additive effect played important role in the inheritance of the trait. Specific combining ability (SCA) effect was highly significant (P<0.01) for grain yield plant-1 (0.68), suggesting that the trait was also controlled by non-additive effect. The estimates of GCA showed that the best combiner for grain yield plant-1 was Ningmai 9. The additive-dominance model was partially adequate for grain yield plant-1 and it was controlled by the over dominance type of gene action. Ningmai 8 possessed maximum dominant genes, whereas Yangmai 9 had maximum recessive genes. Grain yield plant-1 might be controlled by two groups of genes and exhibited moderately high value of narrow sense heritability (h2N=69.51%). The statistical analysis revealed that grain yield plant-1 was positively and significantly correlated with tillers plant-1 (rp=0.584, rg=0.595) and number of grains spike-1 (rp=0.528, rg=0.507) at phenotypic and genotypic levels. The information obtained from the study might be helpful for wheat breeders trying to develop new varieties with high-yielding potential.
机译:在2009年至2010年的作物种植季节,研究了7个小麦亲本的7×7不完整的拨号杂交,研究了籽粒产量植株1的遗传效应及其与产量构成因素的关系。综合结合能力(GCA)效应的均方为2.90籽粒增产植株1的显着性(P <0.01),表明加性效应在该性状的遗传中起重要作用。籽粒产量植株1的特异性结合能力(SCA)效应非常显着(P <0.01)(0.68),表明该性状也受非累加效应的控制。 GCA的估计表明,粮食作物1的最佳组合是宁麦9号。加性优势模型部分适合粮食作物1,并且受基因作用的过大控制。宁麦8号具有最大的显性基因,而扬麦9号具有最大的隐性基因。粮食产量植物1可能受两组基因控制,并表现出中等高的狭义遗传力值(h2N = 69.51%)。统计分析表明,在表型和基因型水平上,籽粒产量plant-1与分till植物-1(rp = 0.584,rg = 0.595)和穗粒1的数量(rp = 0.528,rg = 0.507)呈显着正相关。 。从研究中获得的信息可能对试图开发具有高产潜力的新品种的小麦育种者有所帮助。

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