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High-density SNP-based genetic map development and linkage disequilibrium assessment in Brassica napus L

机译:甘蓝型油菜的高密度基于SNP的遗传图谱开发和连锁不平衡评估

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摘要

Background High density genetic maps built with SNP markers that are polymorphic in various genetic backgrounds are very useful for studying the genetics of agronomical traits as well as genome organization and evolution. Simultaneous dense SNP genotyping of segregating populations and variety collections was applied to oilseed rape (Brassica napus L.) to obtain a high density genetic map for this species and to study the linkage disequilibrium pattern. Results We developed an integrated genetic map for oilseed rape by high throughput SNP genotyping of four segregating doubled haploid populations. A very high level of collinearity was observed between the four individual maps and a large number of markers (>59%) was common to more than two maps. The precise integrated map comprises 5764 SNP and 1603 PCR markers. With a total genetic length of 2250?cM, the integrated map contains a density of 3.27 markers (2.56 SNP) per cM. Genotyping of these mapped SNP markers in oilseed rape collections allowed polymorphism level and linkage disequilibrium (LD) to be studied across the different collections (winter vs spring, different seed quality types) and along the linkage groups. Overall, polymorphism level was higher and LD decayed faster in spring than in “00” winter oilseed rape types but this was shown to vary greatly along the linkage groups. Conclusions Our study provides a valuable resource for further genetic studies using linkage or association mapping, for marker assisted breeding and for Brassica napus sequence assembly and genome organization analyses.
机译:背景技术利用在各种遗传背景下具有多态性的SNP标记构建的高密度遗传图谱,对于研究农艺性状的遗传学以及基因组的组织和进化非常有用。同时对分离的种群和品种集合进行密集的SNP基因分型,将其用于油菜(油菜),以获得该物种的高密度遗传图谱并研究连锁不平衡模式。结果我们通过对四个分离的双单倍体种群进行高通量SNP基因分型,为油菜开发了完整的遗传图谱。在四个单独的图之间观察到非常高的共线性,并且两个以上的图共有大量标记(> 59%)。精确的整合图谱包含5764 SNP和1603 PCR标记。整合图谱的总遗传长度为2250?cM,每cM包含3.27个标记(2.56 SNP)的密度。在油菜油菜收集物中对这些作图的SNP标记进行基因分型,可以研究不同收集物(冬季与春季,不同种子质量类型)以及沿着连锁群的多态性水平和连锁不平衡(LD)。总体而言,春季多态性水平较高,LD衰变速度快于“ 00”冬季油菜类型,但这在连锁群上差异很大。结论我们的研究为使用连锁或关联作图的进一步遗传研究,标记辅助育种以及甘蓝型油菜序列装配和基因组组织分析提供了宝贵的资源。

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