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Analysis of Genetic Parameters on Ethiopian Mustard (Brassica Carinata A. Braun) Genotypes in Northwestern Ethiopia

机译:埃塞俄比亚西北部埃塞俄比亚芥菜(Brassica Carinata A. Braun)基因型的遗传参数分析

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This study was carried out with the objective to estimate the genotypic variability and other yield related traits of Ethiopian mustard in North West Ethiopia. A total of 36 genotypes of Ethiopian mustard were considered for this study. Analysis of variance was computed to contrast the variability within the collected genotypes based on yield and other yield related traits. The results revealed highly significant values(p<0.01) for days to maturity, grain filling period, number of pod per plot, secondary branches per plant, harvest index, seed yield per plot, seed yield per hectare and oil content. Significant differences (p<0.05) were noted for days to flowering, plant height, primary branch per plant, biomass per plot, oil yield per plot differences among the genotypes. Genotypic coefficient of variation (GCV %) was lower than phenotypic coefficient of variation (PCV %) for all the traits studied. High genetic advance with heritability was observed in the following characters; plant height, biomass of the plant, number of secondary branch per plant and grain filling period. There are variations in the extent of genetic variability, heritability and genetic advance of traits which can facilitate selection for further improvement of important traits of Ethiopian mustard. Therefore, it can be concluded that the variability within Ethiopian mustard genotypes collected from different areas of northern Ethiopia is high and vital for better crop improvement.
机译:进行这项研究的目的是估计埃塞俄比亚西北部埃塞俄比亚芥菜的基因型变异性和其他与产量相关的性状。这项研究共考虑了36种埃塞俄比亚芥菜基因型。计算方差分析以对比基于产量和其他与产量相关的性状在收集的基因型中的变异性。结果显示,成熟期,籽粒充实期,每块荚的荚数,每株植物的次级分支,收获指数,每块种子的产量,每公顷种子的产量和含油量具有极显着的数值(p <0.01)。在基因型之间,开花天数,植物高度,每株植物的初生枝,每田生物量,每田油产量差异显着(p <0.05)。对于所有研究的性状,基因型变异系数(GCV%)均低于表型变异系数(PCV%)。具有以下特征的遗传性高,具有遗传性:株高,植物生物量,每株次枝的数量和灌浆期。性状的遗传变异性,遗传性和遗传进展程度存在差异,可以促进选择以进一步改善埃塞俄比亚芥菜的重要性状。因此,可以得出结论,从埃塞俄比亚北部不同地区收集的埃塞俄比亚芥菜基因型内部的变异性很高,对于改善作物生长至关重要。

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