首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Construction of a dense SNP map of a highly heterozygous diploid potato population and QTL analysis of tuber shape and eye depth
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Construction of a dense SNP map of a highly heterozygous diploid potato population and QTL analysis of tuber shape and eye depth

机译:高度杂合二倍体马铃薯种群的密集SNP图谱的构建以及块茎形状和眼深的QTL分析

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Generation of a dense SNP-based linkage map of a diploid potato population and identification of major QTLs for tuber shape and eye depth on chromosomes 2 and 10. This paper reports the construction of a genetic map of a highly heterozygous full-sib diploid potato population (06H1) based on the use of a set of 8,303 single nucleotide polymorphism (SNP) markers. The map contains 1,355 distinct loci and 2,157 SNPs, 802 of which co-segregate with other markers. We find high levels of collinearity between the 12 chromosomal maps with a recently improved version of the potato genome assembly, with the expected genetic clustering in centromeric regions. The linkage maps are used in combination with highly detailed phenotypic assessments conducted over two growing seasons to perform quantitative trait loci analysis of two important potato traits, tuber shape and eye depth. The major loci segregating for tuber shape in 06H1 map to loci on chromosomes 2 and 10, with smaller effects mapping to three other chromosomes. A major locus for tuber eye depth co-locates with the tuber shape locus on chromosome 10. To assess when tuber shape is established in the developing tuber, we have performed staged observations of tuber formation. Our observations suggest that tuber shape is determined very early in tuber development
机译:二倍体马铃薯群体的基于SNP的密集连锁图谱的生成以及2号和10号染色体上块茎形状和眼深的主要QTL的鉴定。 (06H1)基于使用一组8,303个单核苷酸多态性(SNP)标记。该图包含1,355个不同的基因座和2,157个SNP,其中802个与其他标记共聚。我们发现在12个染色体图之间具有高水平的共线性,其中马铃薯基因组装配具有最新改进的版本,并在着丝粒区域具有预期的遗传聚类。将连锁图与在两个生长季节进行的高度详细的表型评估结合使用,以对两个重要的马铃薯性状(块茎形状和眼深)进行定量性状基因座分析。在06H1中,块茎形状分离的主要基因座映射到2号和10号染色体上的基因座,较小的效应则映射到其他三个染色体上。块茎眼深度的主要基因座与第10号染色体上的块茎形状基因座在同一位置。为评估何时在正在发育的块茎中建立块茎形状,我们进行了分期观察块茎形成的研究。我们的观察结果表明,块茎的形状是在块茎发育的早期确定的

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