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Genetic Analysis and QTL Detection for Biennial Bearing in Apple

机译:苹果双年轴承遗传分析与QTL检测

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Genetic determinants of biennial bearing in apple trees were investigated using a quantitative genetic strategy. The mapping population, the F1 progeny of 123 individuals, is derived from a cross between two cultivars that exhibit either biennial or annual bearing. The number of inflorescences, the number and the mass of fruit harvested per tree were recorded over six years. These data were summarized by indices such as biennial bearing (BBI), precocity (PI) and cumulative yield (CY) that were used to estimate genotypic effects and detect Quantitative Trait Loci (QTL). The variables with the highest genotypic effect were for inflorescence traits. Two genomic regions on linkage group (LG) 1 and 15 comprised several QTLs for inflorescence and fruit production. Four genomic regions were identified for production precocity on distinct and non-homologous LGs. Three QTLs were detected for BBI for the number of inflorescences and these together explained 49% of the phenotypic variability. Two common QTLs were detected on LG10 and 13 for BBI for the number and the mass of harvested fruits. Results suggest that both production precocity and biennial bearing are under multi-genetic control.
机译:使用定量遗传策略研究了苹果树中两年轴承的遗传决定因素。映射人群(123个个体的F1后代)来自两年内轴承的两种品种之间的交叉。每棵树收获的花序数量,数量和果实的数量被记录在六年内。这些数据通过诸如双年轴承(BBI),预幂(PI)和累积产率(CY)的索引来概述,用于估计基因型效应并检测定量性状基因座(QTL)。基因型效果最高的变量是为了花序性状。连锁组(Lg)1和15上的两个基因组区域包含几种QTL用于花序和果实生产。鉴定了四个基因组区域,用于在不同和非同源LG上的生产预折。为花序数量的BBI检测到三个QTL,这些QBI一起解释了表型变异性的49%。在LG10和13上检测到两个常见的QTL,用于BBI的数量和收获的水果的质量。结果表明,两种生产精采和双年轴承都在多遗传控制下。

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