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Ploidy Manipulations and Genetic Markers as Tools for Analysis of Quantitative Trait Variation in Progeny Derived from Triploid Plantains

机译:倍性操纵和遗传标记作为分析三倍体车前草后代数量性状变异的工具

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Plantains (Musa spp. AAB group) are starchy bananas widely grown in Africa and tropical America by small landholders. Genetic analysis of the plantain genome is difficult due to its triploidy and high sterility. Ploidy manipulations (scaling up and down the number of chromosomes) and interspecific plantain-banana hybridization opened the path for the genetic amelioration of the crop and for the investigation of its genome for further manipulations. This report shows the associated effects of ploidy and of the major loci controlling vegetative fruit parthenocarpy and resistance to black sigatoka fungal leaf spot on growth and yield characteristics of plantain-banana euploid hybrids. The number of copies of the black sigatoka resistance allele (bs1) and of the fruit parthenocarpy gene (P1) in addition to their intralocus interaction and ploidy level were all found to significantly affect bunch and fruit characteristics in euploid plantain-banana hybrids. Epistasis significantly affected fruit weight and size in one cross but not in another. Significant multiple regression models combining ploidy and genetic markers explained 15 % to 85 % of quantitative trait variation (QTV). The amount of QTV accounted by ploidy and genetic markers varied according to the characteristic and cross in which the markers were examined.
机译:车前草(Musa spp。AAB集团)是淀粉状香蕉,由小土地所有者广泛种植在非洲和热带美洲。车前草基因组的三倍体和高无菌性使其难以进行遗传分析。倍性操纵(增加和减少染色体数目)和种间车前草-香蕉杂交为作物的遗传改良和研究其基因组进一步操纵开辟了道路。该报告显示了倍性和控制营养性水果单性结实的主要位点以及对黑蕉叶真菌叶斑病的抗性对车前草-香蕉整倍体杂种的生长和产量特性的相关影响。研究发现,黑茎叶轮虫抗性等位基因(bs1)和果实单性结实基因(P1)的拷贝数除了它们的位点内相互作用和倍性水平以外,都显着影响整倍体车前草-香蕉杂交种的束和果实特性。在一个杂交中,上位性显着影响果实的重量和大小,而在另一个杂交中则没有。结合倍性和遗传标记的重要多元回归模型解释了数量性状变异(QTV)的15%至85%。倍性和遗传标记占QTV的数量根据标记的特征和交叉而变化。

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