首页> 外文期刊>African Journal of Agricultural Research >Combining ability of selected maize (Zea mays L.) inbred lines for major diseases, grain yield and selected agronomic traits evaluated at Melko, South West Oromia region, Ethiopia
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Combining ability of selected maize (Zea mays L.) inbred lines for major diseases, grain yield and selected agronomic traits evaluated at Melko, South West Oromia region, Ethiopia

机译:在埃塞俄比亚西南奥罗米亚地区梅尔科评估所选玉米(Zea mays L.)自交系对主要疾病,籽粒产量和所选农艺性状的结合能力

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The genetic potentials of resistance to turcicum leaf blight (TLB), grey leaf spot (GLS), and common rust (CR) disease, grain yield and selected agronomic trait were studied in 45 F1 hybrids from a half diallel following Griffing’s Model 1, Method 4. The 45 hybrids excluding parents were evaluated in 5 × 9 alpha lattice designs with three replications. The study was carried out at Jimma Agricultural Research Center during 2015 cropping season with the objective to evaluate combining ability for turcicum leaf blight, grey leaf spot, common rust disease, grain yield and selected agronomic trait in maize inbred lines. For analysis of variance, days to 50% anthesis, days to 50% silking, turcicum leaf blight, grey leaf spot, common rust disease severity index, days to maturity and grain yield data were collected. Mean square due to general combining ability (GCA) was highly significant (P ≤ 0.01) for all traits, while specific combining ability (SCA) mean square was non-significant except for grain yield, days to 50% tasseling, days to 50% of silking, and days to maturity. This study showed the importance of additive types of gene action in controlling the inheritance of the traits. Among ten inbred lines, L7 and L10 were best combiners for GLS tolerance with the highest negative value of GCA effects and inbred line L7 was the best combiner for TLB and CR tolerance with the highest negative value of GCA effect. Inbred lines L2 and L9 were best combiner for grain yield with the highest positive GCA effect value. Therefore, maize breeding program can engage in hybridization and synthetic variety formation based on the information of inbred lines with high negative value GCA effect for diseases tolerant and high GCA for grain yield.
机译:根据格里芬格(Griffing)的模型1,方法,在半个表盘的45个F1杂种中研究了对斜叶白叶枯病(TLB),灰叶斑病(GLS)和常见锈病(CR)的遗传潜力,籽粒产量和选定的农艺性状。 4.在5×9α晶格设计中对不包括亲本的45个杂种进行了评估,并进行了三次重复。这项研究是在2015年作物季节的吉马农业研究中心进行的,目的是评估玉米自交系中斜叶枯萎病,灰叶斑病,常见锈病,谷物产量和所选农艺性状的综合能力。为了进行方差分析,收集了花期至50%的花期,蚕丝期至50%的天数,斜方叶枯萎病,灰叶斑病,常见锈病严重程度指数,成熟期和谷物产量数据。对于所有性状,由于一般组合能力(GCA)引起的均方值高度显着(P≤0.01),而除了谷物产量,抽穗至50%的天数,至50%抽穗的天数之外,特异性结合能力(SCA)的均方值不显着丝滑,成熟的日子。这项研究表明,在控制性状遗传方面,基因作用的加性类型很重要。在十个自交系中,L7和L10是GLS耐受性最好的组合物,具有最大的GCA负值,而L7和L10是TLB和CR耐受性最好的组合物,具有最大的GCA负值。自交系L2和L9是谷物产量的最佳组合,具有最高的正GCA效应值。因此,玉米育种程序可以基于对耐病性高的负值GCA效应和对谷物产量的高GCA的自交系信息进行杂交和合成品种形成。

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