首页> 外文期刊>Plant Breeding >Dissection of a major QTL for seed colour and fibre content in Brassica napus reveals colocalization with candidate genes for phenylpropanoid biosynthesis and flavonoid deposition.
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Dissection of a major QTL for seed colour and fibre content in Brassica napus reveals colocalization with candidate genes for phenylpropanoid biosynthesis and flavonoid deposition.

机译:对甘蓝型油菜种子颜色和纤维含量的主要QTL的解剖揭示了与苯丙烷类生物合成和类黄酮沉积的候选基因共定位。

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摘要

A major quantitative trait locus (QTL) influencing seed fibre and colour in Brassica napus was dissected by marker saturation in a doubled haploid (DH) population from the black-seeded oilseed rape line "Express 617" crossed with a yellow-seeded B. napus line, "1012-98". The marker at the peak of a sub-QTL with a strong effect on both seed colour and acid detergent lignin content lay only 4 kb away from a Brassica (H+)-ATPase gene orthologous to the transparent testa gene AHA10. Near the peak of a second sub-QTL, we mapped a copy of the key phenylpropanoid biosynthesis gene cinnamyl alcohol dehydrogenase, while another key phenylpropanoid biosynthesis gene, cinnamoyl co-a reductase 1, was found nearby. In a cross between "Express 617" and another dark-seeded parent, "V8", Bna.CCR1 was localized in silico near the peak of a corresponding seed fibre QTL, whereas in this case Bna.CAD2/CAD3 lay nearby. Re-sequencing of the two phenylpropanoid genes via next-generation amplicon sequencing revealed intragenic rearrangements and functionally relevant allelic variation in the three parents
机译:通过标记饱和度来分析影响甘蓝型油菜种子纤维和颜色的主要数量性状基因座(QTL),该标记来自黑种油菜油菜系“ Express 617”的双单倍体(DH)群体,并与黄种菜油菜杂交。行“ 1012-98”。在亚QTL的峰值处对种子颜色和酸性去污剂木质素含量均具有强烈影响的标记,与与透明睾丸基因AHA10同源的甘蓝(H +)-ATPase基因仅4 kb。在第二个子QTL的峰值附近,我们绘制了关键的苯丙烷生物合成基因肉桂醇脱氢酶的一个拷贝,而附近发现了另一个关键的苯丙烷生物合成基因肉桂酸co-a还原酶1。在“ Express 617”和另一个深色种子母体“ V8”之间的杂交中,Bna.CCR1在计算机中定位在相应种子纤维QTL峰值附近,而在这种情况下,Bna.CAD2 / CAD3位于附近。通过下一代扩增子测序对两个苯基丙烷基因进行重新测序,揭示了三个亲本中的基因内重排和功能相关的等位基因变异

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