首页> 外文期刊>Science Journal of Applied Mathematics and Statistics >Evaluation of Field Pea (Pisum sativum L.) Genotypes for Yield and Yield Attributing Traits at High Land of Arsi, South East Ethiopia
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Evaluation of Field Pea (Pisum sativum L.) Genotypes for Yield and Yield Attributing Traits at High Land of Arsi, South East Ethiopia

机译:Arsi,东南埃塞俄比亚Arsi高地产量和产量归因于产量和产量征收性状的评价

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The production and productivity of field pea in Ethiopia is constrained by low-yielding potential of land race, susceptibility to diseases like powdery mildew and Ascochyta blight/spot as well as a biotic stresses like frost and soil acidity. The field experiment was conducted in 2018/19 main cropping season at two locations using simple lattice design to evaluate the genetic variability and performance of forty nine field pea genotypes for yield ad yield attributing traits. The combined/pooled / analysis of variance revealed highly significant (P0.01) to significant (P0.05) differences among genotypes observed for all traits under study except for number of seeds pod~(-1). The seed yield ranged from 1955 to 5997 kg ha~(-1) with a mean of 3803 kg across the two locations. Two genotypes PDFPT-BEK and P-313-053 were relatively high yielder over the two locations. The genotypic (GCV) and phenotypic (PCV) coefficient of variation (GCV) ranged from (1.07%) to (22.40%) and (1.22%) to (28.18% for days to maturity and grain yield, respectively for combined analyses. The PCV values were relatively greater than GCV in magnitude for all traits, of which significantly higher PCV than GCV values observed for number of pods per plant, Stand count, powdery mildew and ascocayta blight, but insignificant differences between PCV and GCV values observed for days to flowering, days to maturity, plant height, 1000 seed weight, and grain yield. Broad sense heritability ranged from 23.66% to 90.73%. The genetic advance as percentage of mean (GAM) varied from 1.92% to 36.73%. Higher heritability (H2) coupled with high GAM observed for grain yield per ha and Higher heritability (H2) coupled with Moderate or relatively high value of GAM in plant height and seed size. Therefore, improvement of these traits could be done through selection of genotypes based on the phenotypic performance.
机译:埃塞俄比亚领域豌豆的生产和生产率受到土地种族的低屈服潜力的限制,粉末状霉菌和ascochyta枯萎/斑点的疾病易感性以及像霜和土壤酸度这样的生物应力。现场实验是在2018 / 19/19主要种植季节进行的,在两个地点使用简单的晶格设计,评估四十九个野生豌豆基因型的遗传变异性和性能,用于收益率归因于归因于归因于产量。除了种子荚数〜(-1)的数量外,组合/汇集的/汇集差异显着(p0.01)在研究中观察到的基因型中的显着(p0.05)差异。种子产量从1955年到5997 kg ha〜(-1),平均两个位置均为3803千克。两个基因型PDFPT-BEK和P-313-053在两个位置相对较高的Yielder。基因型(GCV)和表型(PCV)变异系数(GCV)分别为(1.07%)至(22.40%)和(1.22%)至分别用于组合分析的成熟度和籽粒产量为28.18%。该对于所有特征的PCV值相对大于GCV,其中PCV显着高于针对每株植物数量的豆荚数,支架计数,粉状霉菌和ascocayta枯萎的PCV,但PCV与GCV值之间的微不足道差异开花,成熟度,植物高,1000种种子重量和谷物产量。广泛的感受力范围从23.66%到90.73%。遗传推进作为平均值(gam)的百分比从1.92%变化至36.73%。遗传性较高(H2 )与植物高度和种子大小相加的每只公顷的籽粒产量和较高的遗传性(H2)偶联的高gam耦合,并且在植物身高和种子大小中,可以通过选择基于素质的基因型来改进这些性状典型的性能。

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