Hara-Skrzypiec Agnieszka, Śliwka J, Jakuczun H, Zimnoch-Guzowska E
Plant Breeding and Acclimatization Institute - National Research Institute, Platanowa 19, 05-831, Młochów, Poland.
J Appl Genet. 2018 May;59(2):123-132. doi: 10.1007/s13353-018-0433-x. Epub 2018 Feb 28.
A diploid, potato mapping population consisting of 149 individuals was assessed in three consecutive years for important agronomic and quality traits: tuber shape, regularity of tuber shape, eye depth, mean tuber weight, and tuber flesh color. Analysis of variance showed that the genotype had the largest influence on the phenotypic scores but effect of the genotype × year interactions was also strong. Using this data and an existing genetic map, a quantitative trait loci (QTL) analysis was conducted. From four to seven QTL were detected for each trait except tuber flesh color, which was determined by a major QTL on chromosome III explaining 76.8% of the trait variance. Additionally, a minor QTL for flesh color was localized on chromosome II. For the other traits, significant QTL were detected: for tuber shape on chromosome X, for regularity of tuber shape on chromosome III, for eye depth on chromosome IV, and for tuber weight on chromosome I. Some detected QTL confirmed previous studies, but new ones were also identified.
一个由149个个体组成的二倍体马铃薯作图群体连续三年被评估了重要的农艺和品质性状:块茎形状、块茎形状的规则性、芽眼深度、平均块茎重量和块茎肉色。方差分析表明,基因型对表型评分的影响最大,但基因型×年份互作效应也很强。利用这些数据和现有的遗传图谱,进行了数量性状位点(QTL)分析。除块茎肉色外,每个性状检测到4至7个QTL,块茎肉色由Ⅲ号染色体上的一个主QTL决定,解释了该性状变异的76.8%。此外,一个肉色的次要QTL定位在Ⅱ号染色体上。对于其他性状,检测到显著的QTL:X染色体上的块茎形状、Ⅲ号染色体上的块茎形状规则性、Ⅳ号染色体上的芽眼深度和Ⅰ号染色体上的块茎重量。一些检测到的QTL证实了先前的研究,但也发现了新的QTL。