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首页> 外文期刊>Journal of Plant Breeding and Crop Science >Genetic variability, heritability and genetic advance of maize (Zea mays L.) inbred lines for yield and yield related traits in southwestern Ethiopia
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Genetic variability, heritability and genetic advance of maize (Zea mays L.) inbred lines for yield and yield related traits in southwestern Ethiopia

机译:埃塞俄比亚西南部玉米(Zea mays L.)自交系的产量及其相关性状的遗传变异,遗传力和遗传进展

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Understanding the genetic variability, heritability and genetic advance of traits in any plant population is an important pre-requisite for breeding program. The experiment was conducted to assess the magnitude of genetic variability, heritability and genetic advance of 24 maize inbred lines for 16 quantitative traits. The field experiment was conducted during 2016 cropping season at Jimma Agricultural Research Center (JARC).? Alpha lattice (0, 1) design with three replications and nine blocks was used. Analysis of variance showed high significance (P<0.01) differences among genotypes for all traits studied except tassel size. The genotypic coefficient of variation (GCV) for all traits studied was smaller than the phenotypic coefficient of variation (PCV), indicating the significant role of environment in the expression of traits studied. The estimates of PCV and GCV was high for grain yield, thousand kernel weight, ear height, ear diameter, anthesis and silking interval and plant aspect. Heritability estimates ranged from 9.15 for tassel size to 96.02 for thousand kernel weight. Estimates of genetic advance as percent of mean at 5% selection intensity ranged from 2.76% for days to maturity to 50.69% for grain yield. High heritability along with high genetic advance was obtained for plant height, ear length and 1000-kernel weight, indicating the predominance of additive gene effects in controlling the traits and effective selection on the basis of these traits would be absolutely useful for the improvement of inbred lines. Therefore, it could be recommended that due emphasis should be given for these traits for the improvement of maize inbred lines.
机译:了解任何植物种群中性状的遗传变异性,遗传性和遗传进展是育种计划的重要先决条件。进行该实验以评估24个玉米自交系的16个数量性状的遗传变异性,遗传力和遗传进展的程度。在2016年作物季节期间,在吉马农业研究中心(JARC)进行了田间试验。使用具有三个重复和九个块的Alpha晶格(0,1)设计。方差分析显示,除了流苏大小,所有研究的性状之间的基因型差异显着(P <0.01)。研究的所有性状的基因型变异系数(GCV)小于表型的变异系数(PCV),表明环境在研究的性状表达中具有重要作用。对谷物产量,千粒重,穗高,穗直径,花期和丝裂间隔以及植物纵横比的PCV和GCV估算值很高。遗传力估计范围从流苏大小的9.15到千粒重的96.02。在5%选择强度下,以平均百分数表示的遗传进展的估计范围为:到成熟期的天数为2.76%,至谷物产量的50.69%。在植物高度,穗长和千粒重方面获得了高遗传力和高遗传优势,表明在控制性状中附加基因效应占优势,基于这些性状的有效选择对改良自交系绝对有用。线。因此,建议对这些性状给予应有的重视,以改善玉米自交系。

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