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Genetic dissection of seed oil and protein content and identification of networks associated with oil content in Brassica napus

机译:种子油和蛋白质含量的遗传解剖和芸薹属含油含量的网络鉴定

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High-density linkage maps can improve the precision of QTL localization. A high-density SNP-based linkage map containing 3207 markers covering 3072.7?cM of the Brassica napus genome was constructed in the KenC-8?×?N53-2 (KNDH) population. A total of 67 and 38 QTLs for seed oil and protein content were identified with an average confidence interval of 5.26 and 4.38?cM, which could explain up to 22.24% and 27.48% of the phenotypic variation, respectively. Thirty-eight associated genomic regions from BSA overlapped with and/or narrowed the SOC-QTLs, further confirming the QTL mapping results based on the high-density linkage map. Potential candidates related to acyl-lipid and seed storage underlying SOC and SPC, respectively, were identified and analyzed, among which six were checked and showed expression differences between the two parents during different embryonic developmental periods. A large primary carbohydrate pathway based on potential candidates underlying SOC- and SPC-QTLs, and interaction networks based on potential candidates underlying SOC-QTLs, was constructed to dissect the complex mechanism based on metabolic and gene regulatory features, respectively. Accurate QTL mapping and potential candidates identified based on high-density linkage map and BSA analyses provide new insights into the complex genetic mechanism of oil and protein accumulation in the seeds of rapeseed.
机译:高密度连杆地图可以提高QTL本地化的精度。含有3207个标记的高密度SNP基键覆盖3072.7Ω·克拉斯纳州内部基因组的标记物,在KENC-8?×N53-2(KNDH)群体中构建。鉴定了总共67和38 QTL的种子油和蛋白质含量,平均置信区间为5.26和4.38Ωcm,可分别解释高达22.24%和27.48%的表型变异。来自BSA的三十八个相关基因组区域与SOC-QTL重叠,进一步证实了基于高密度连杆地图的QTL映射结果。鉴定并分析了与酰脂和种子储存相关的潜在候选者,并分析了SOC和SPC,其中在不同胚胎发育期间检查了两个父母之间的表达差异。基于Soc-and SPC-QTLS的潜在候选者的大型碳水化合物途径,以及基于潜在的SOC-QTL的潜在候选的相互作用网络,分别根据代谢和基因调节特征对复杂机制进行解剖。基于高密度连杆地图和BSA分析确定的精确QTL映射和潜在候选者提供了新的洞察油菜籽种子中油和蛋白质积累的复杂遗传机制。

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