Hybrid Performance and Heterosis for Yield and Agronomic Traits of Quality Protein Maize (Zea mays L.) Inbred Lines Adapted to Mid-altitude Agroecology of Ethiopia

Lemi Yadesa Mideksa, S. Alamerew, B. Tadesse
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引用次数: 2

Abstract

Maize is a primary crop in most farming systems and staple food of the rural population in abundant of the mid-altitude sub- humid agro-ecologies of Ethiopia. Nearly 88% of maize produced in Ethiopia is consumed as food, both as green and dry grain. Yet, it has low protein content since it is normal maize, with poor protein quality limited by deficiencies in lysine and tryptophan and has an excess of leucine and isoleucine. Suggestions on hybrid performance and heterosis of QPM inbred for grain yield and its components is vital to design suitable breeding strategies for the development of nutritionally enhanced maize varieties. A line x tester analysis involving 36 crosses generated by crossing nine elite maize inbred lines with four testers and four checks were evaluated for yield and yield related traits at Bako and Jimma. The objectives were to evaluate mean performance and the magnitude of heterosis for quality protein maize inbred lines, adapted to mid altitude agroecology of Ethiopia. The genotypes were evaluated in alpha lattice design replicated three times. Analyses of variances showed significant (p<0.05 or p<0.01) mean squares due to genotypes in each and across locations for most traits studied, indicating the existence of appropriate genetic variability. The crosses, L5xT2, L7xT2, L8xT1, L8xT2, L3xT2, L5xT1, and L1xT1 showed higher grain yield. The estimated mid and better parent heterosis for grain yield across locations for all crosses displayed positive and highly significant variances which ranged from 386.6% to 111.2% and 288.9% to 72.2%, respectively. From this study, about 77.78% of crosses had better potential for grain yield. The results attained in this experiment suggest that the hopeful potentials of the identified inbred lines for further breeding of QPM for the mid-altitude agroecology of Ethiopia.
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优质蛋白玉米(Zea mays L.)产量和农艺性状的杂交性能及杂种优势适应埃塞俄比亚中海拔农业生态的自交系
玉米是大多数农业系统的主要作物,也是埃塞俄比亚中高海拔半湿润农业生态丰富地区农村人口的主食。埃塞俄比亚生产的近88%的玉米作为食物消费,包括绿色谷物和干粮。然而,由于它是普通玉米,蛋白质含量较低,蛋白质质量较差,赖氨酸和色氨酸缺乏,亮氨酸和异亮氨酸过量。研究QPM自交系的杂种性能和杂种优势对籽粒产量及其构成因素的影响,对设计适宜的营养增强型玉米品种育种策略具有重要意义。对巴科和吉马9个优良玉米自交系的36个杂交组合进行了4个测试和4个检验,对产量和产量相关性状进行了评价。目的是评价适应埃塞俄比亚中高海拔农业生态的优质蛋白玉米自交系的平均性能和杂种优势程度。在重复三次的α晶格设计中评估基因型。方差分析显示,大多数性状的基因型差异均方显著(p<0.05或p<0.01),表明存在适当的遗传变异。L5xT2、L7xT2、L8xT1、L8xT2、L3xT2、L5xT1和L1xT1表现出较高的产量。各杂交品种籽粒产量的中、优亲本杂种优势估算值在386.6% ~ 111.2%之间,在288.9% ~ 72.2%之间,呈现极显著正方差。结果表明,77.78%的杂交品种具有较好的产量潜力。本试验结果表明,所鉴定的自交系具有进一步选育埃塞俄比亚中海拔农业生态QPM的潜力。
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