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Pod and Seed Trait QTL Identification To Assist Breeding for Peanut Market Preferences

机译:荚果和种子性状QTL鉴定有助于花生市场偏好的育种

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摘要

Although seed and pod traits are important for peanut breeding, little is known about the inheritance of these traits. A recombinant inbred line (RIL) population of 156 lines from a cross of Tifrunner x NC 3033 was genotyped with the Axiom_Arachis1 SNP array and SSRs to generate a genetic map composed of 1524 markers in 29 linkage groups (LG). The genetic positions of markers were compared with their physical positions on the peanut genome to confirm the validity of the linkage map and explore the distribution of recombination and potential chromosomal rearrangements. This linkage map was then used to identify Quantitative Trait Loci (QTL) for seed and pod traits that were phenotyped over three consecutive years for the purpose of developing trait-associated markers for breeding. Forty-nine QTL were identified in 14 LG for seed size index, kernel percentage, seed weight, pod weight, single-kernel, double-kernel, pod area and pod density. Twenty QTL demonstrated phenotypic variance explained (PVE) greater than 10% and eight more than 20%. Of note, seven of the eight major QTL for pod area, pod weight and seed weight (PVE >20% variance) were attributed to NC 3033 and located in a single linkage group, LG B06_1. In contrast, the most consistent QTL for kernel percentage were located on A07/B07 and derived from Tifrunner.
机译:尽管种子和荚果性状对于花生育种很重要,但对这些性状的遗传知之甚少。使用Axiom_Arachis1 SNP阵列和SSR对来自Tifrunner x NC 3033杂交的156个品系的重组自交系(RIL)群体进行基因分型,以生成由29个连锁组(LG)中的1524个标记组成的遗传图谱。将标记的遗传位置与其在花生基因组上的物理位置进行比较,以证实连锁图谱的有效性,并探索重组的分布和潜在的染色体重排。然后使用该连锁图谱来鉴定种子和豆荚性状的定量性状位点(QTL),这些连续三年被表型化,以开发与性状相关的标记进行育种。在14个LG中鉴定出49个QTL,用于种子大小指数,籽粒百分比,种子重量,荚果重量,单仁,双仁,荚果面积和荚果密度。二十个QTL证明表型变异解释(PVE)大于10%,八个大于20%。值得注意的是,豆荚面积,豆荚重量和种子重量(PVE> 20%方差)的八个主要QTL中有七个归因于NC 3033,位于单个连锁组LG B06_1中。相反,最一致的内核百分比QTL位于A07 / B07上,并从Tifrunner派生。

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