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Design of New Genome- and Gene-Sourced Primers and Identification of QTL for Seed Oil Content in a Specially High-Oil Brassica napus Cultivar

机译:在一个特别高油油菜品种的种子油含量QTL的新基因组和基因来源的引物和标识设计

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摘要

Rapeseed (Brassica napus L.) is one of most important oilseed crops in the world. There are now various rapeseed cultivars in nature that differ in their seed oil content because they vary in oil-content alleles and there are high-oil alleles among the high-oil rapeseed cultivars. For these experiments, we generated doubled haploid (DH) lines derived from the cross between the specially high-oil cultivar zy036 whose seed oil content is approximately 50% and the specially low-oil cultivar 51070 whose seed oil content is approximately 36%. First, to address the deficiency in polymorphic markers, we designed 5944 pairs of newly developed genome-sourced primers and 443 pairs of newly developed primers related to oil-content genes to complement the 2244 pairs of publicly available primers. Second, we constructed a new DH genetic linkage map using 527 molecular markers, consisting of 181 publicly available markers, 298 newly developed genome-sourced markers and 48 newly developed markers related to oil-content genes. The map contained 19 linkage groups, covering a total length of 2,265.54 cM with an average distance between markers of 4.30 cM. Third, we identified quantitative trait loci (QTL) for seed oil content using field data collected at three sites over 3 years, and found a total of 12 QTL. Of the 12 QTL associated with seed oil content identified, 9 were high-oil QTL which derived from the specially high-oil cultivar zy036. Two high-oil QTL on chromosomes A2 and C9 co-localized in two out of three trials. By QTL mapping for seed oil content, we found four candidate genes for seed oil content related to four gene markers: GSNP39, GSSR161, GIFLP106 and GIFLP046. This information will be useful for cloning functional genes correlated with seed oil content in the future.
机译:油菜籽(Brassica napus L.)是世界上最重要的油料作物之一。现在自然界中存在各种油菜籽种子油含量不同的油菜品种,因为它们的油含量等位基因不同,并且在高油菜籽品种中也有高油等位基因。对于这些实验,我们从种子油含量约为50%的特高油品种zy036与种子油含量约为36%的特低油品种51070之间的杂交中获得了双倍单倍体(DH)系。首先,为了解决多态性标记的缺陷,我们设计了5944对新开发的来自基因组的引物和443对新开发的与含油量基因相关的引物,以补充2244对可公开获得的引物。其次,我们使用527个分子标记构建了一个新的DH遗传连锁图谱,该分子标记由181个可公开获得的标记,298个新开发的基因组来源标记和48个与油含量基因相关的新开发标记组成。该图包含19个连锁组,覆盖总长度2265.54 cM,标记之间的平均距离为4.30 cM。第三,我们使用3年中在三个地点收集的田间数据确定了种子油含量的定量性状位点(QTL),总共发现了12个QTL。在确定的12个与籽油含量相关的QTL中,有9个是高油QTL,其来源于特高油品种zy036。在三分之二的试验中,两个A2和C9染色体上的高油QTL共定位。通过对种子油含量的QTL作图,我们发现了四个与四个基因标记有关的种子油含量候选基因:GSNP39,GSSR161,GIFLP106和GIFLP046。该信息对于将来与种子油含量相关的功能基因的克隆将是有用的。

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