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首页> 外文期刊>Journal of Agricultural Science >Combining Ability and Heterosis of Selected Grain and Forage Dual Purpose Sorghum Genotypes
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Combining Ability and Heterosis of Selected Grain and Forage Dual Purpose Sorghum Genotypes

机译:谷物和牧草两用高粱基因型的配合力和杂种优势

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Sorghum is an important food and feed source in mixed crop-livestock production systems where its dual usage is a preferred option, especially among the resource poor small-scale farmers. Attempts to improve fodder quality traits in maize have been at the expense of grain traits and vice versa, but other studies demonstrated that it was possible to select for high stem biomass without compromising the improvement of grain yields in sorghum. As a follow up to this effort, this study was undertaken to estimate the combining ability of grain and forage sorghum genotypes and determine heterosis for several traits as a criteria for improving dual purpose sorghum cultivars. Four grain and four forage sorghum cultivars were crossed to generate 23 crosses following the half diallel mating design scheme at Makerere University Agricultural Research institute Kabanyolo (MUARIK) in 2013. The crosses were evaluated at three locations in Uganda during two rainy seasons of 2014. Data were taken and analysed on leaf area, leaf-stem ratio, plant height, seed weight, grain yield, and biomass. Results indicated that the gene action for the traits under observation was controlled by both additive and non additive genetic effects. Majority of the parental lines had significant GCA estimates for all traits except line 20 for grain yield, lines 22 and 34 for plant height, line 35 for leaf-stem ratio, and line 22 for days to flowering. Significant (P ≤ 0.05) SCA estimates were prominent in most of the individual parental combinations for all traits except leaf area and leaf-stem ratio indicating the role of dominance gene action. Bakers ratio and heritability coefficients were > 52% for biomass, flowering duration and plant height indicating that genetic gains can be achieved by conventional breeding for the three traits. Heterosis in grain yield and biomass over both the mid and better parents was shown by more than half of the crosses studied. This study suggested that both inter and intra allelic interactions were involved in the expression of the traits.
机译:高粱是农作物-畜牧混合生产系统中重要的食品和饲料来源,因此,高粱是双重用途,特别是在资源贫乏的小农中。改善玉米饲料品质性状的尝试已经以牺牲谷物性状为代价,反之亦然,但是其他研究表明,可以选择高茎生物量而不损害高粱谷物产量的提高。作为这项工作的后续措施,本研究旨在评估谷物和牧草高粱基因型的结合能力,并确定几种性状的杂种优势,以此作为改良两用高粱品种的标准。按照马凯雷雷大学农业研究所Kabanyolo(MUARIK)在2013年进行的半拨号配对设计方案,对四个谷物和四个草料高粱品种进行杂交,以产生23个杂交。在2014年的两个雨季中,在乌干达的三个地点评估了杂交。进行叶片面积,叶茎比,植物高度,种子重量,谷物产量和生物量的分析。结果表明,所观察性状的基因作用受加性和非加性遗传效应的控制。大多数亲本品系对所有性状均具有显着的GCA估计值,除了谷物产量的第20行,植物高度的第22和34行,叶干比的第35行以及开花天数的第22行。在大多数个体亲本组合中,对于所有性状而言,SCA估计值均显着(P≤0.05),但叶面积和叶干比除外,表明主导基因作用的作用。生物量,开花持续时间和株高的贝克比和遗传系数均> 52%,这表明通过常规育种可实现这三个性状的遗传增益。超过一半的杂交研究表明,中亲和更好亲本的谷物产量和生物量都有杂种优势。这项研究表明等位基因之间和内部的相互作用都参与了性状的表达。

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