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首页> 外文期刊>Scientific reports. >QTL mapping and molecular characterization of the classical D locus controlling seed and flower color in Linum usitatissimum (flax)
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QTL mapping and molecular characterization of the classical D locus controlling seed and flower color in Linum usitatissimum (flax)

机译:亚麻(亚麻)中控制种子和花朵颜色的经典D基因座的QTL定位和分子表征

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The flowers of flax (linseed) are blue-hued, ephemeral and self-pollinating, and the seeds are typically brown. A century-old interest in natural yellow seed variants and a historical model point to recessive alleles in B1, D and G loci being responsible, but the functional aspects had remained unknown. Here, we characterized the “D” locus by quantitative trait loci (QTL) mapping and identified a FLAVONOID 3′5′ HYDROXYLASE (F3′5′H) gene therein. It does not belong to the F3′5′H clade, but resembles biochemically characterized F3′Hs (flavonoid 3′ hydroxylase) but without F3′H activity. The genome lacks other F3′H or F3′H-like genes. The apparent neo-functionalization from F3′H is associated with a Thr498?→?Ser498 substitution in a substrate recognition site (SRS). The yellow seed and white flower phenotypes of the classical d mutation was found to be due to one nucleotide deletion that would truncate the deduced product and remove three of the six potential SRS, negatively impacting delphinidin synthesis. Delphinidin is sporadic in angiosperms, and flax has no known pollination syndrome(s) with functional pollinator group(s) that are attracted to blue flowers, raising questions on the acquisition of F3′5′H. The appearance of d allele is suggestive of the beginning of the loss of F3′5′H in this species.
机译:亚麻(亚麻籽)的花是蓝色,短暂的和自花授粉的,种子通常是棕色的。对天然黄色种子变体的百年兴趣和历史模型表明,B1,D和G位点的隐性等位基因是负责任的,但功能方面仍然未知。在这里,我们通过定量性状基因座(QTL)作图来表征“ D”基因座,并在其中鉴定出黄酮类3'5'羟化酶(F3'5'H)基因。它不属于F3'5'H进化枝,但类似于生化特征的F3'Hs(类黄酮3'羟化酶),但没有F3'H活性。基因组缺少其他F3'H或F3'H样基因。来自F3'H的明显新功能与底物识别位点(SRS)中的Thr498→→Ser498取代有关。发现经典d突变的黄色种子和白花表型归因于一个核苷酸的缺失,该核苷酸的缺失会截断推导的产物并去除六个潜在的SRS中的三个,从而对蝶形素的合成产生负面影响。 Delphinidin散布在被子植物中,亚麻没有已知的授粉综合症,其功能性授粉者群被蓝色花所吸引,这引发了对F3'5'H的获取的疑问。 d等位基因的出现暗示了该物种中F3'5'H丢失的开始。

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