首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >A R2R3-MYB gene-based marker for the non-darkening seed coat trait in pinto and cranberry beans (Phaseolus vulgaris L.) derived from 'Wit-rood boontje'
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A R2R3-MYB gene-based marker for the non-darkening seed coat trait in pinto and cranberry beans (Phaseolus vulgaris L.) derived from 'Wit-rood boontje'

机译:吡托和蔓越莓豆类的非变暗种子涂层性状的基于R2R3-MYB基因标记物(Phoudolusulus vulgaris L.)衍生自'Wit-Rood Boontje'

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Key message The gene Phvul.010G130600 which codes for a MYB was shown to be tightly associated with seed coat darkening in Phaseolus vulgaris and a single nucleotide deletion in the allele in Wit-rood disrupts a transcription activation region that likely prevents its functioning in this non-darkening genotype. The beige and white background colors of the seed coats of conventional pinto and cranberry beans turn brown through a process known as postharvest darkening (PHD). Seed coat PHD is attributed to proanthocyanidin accumulation and its subsequent oxidation in the seed coat. The J gene is an uncharacterized classical genetic locus known to be responsible for PHD in common bean (P. vulgaris) and individuals that are homozygous for its recessive allele have a non-darkening (ND) seed coat phenotype. A previous study identified a major colorimetrically determined QTL for seed coat color on chromosome 10 that was associated with the ND trait. The objectives of this study were to identify a gene associated with seed coat postharvest darkening in common bean and understand its function in promoting seed coat darkening. Amplicon sequencing of 21 candidate genes underlying the QTL associated with the ND trait revealed a single nucleotide deletion (c.703delG) in the candidate gene Phvul.010G130600 in non-darkening recombinant inbred lines derived from crosses between ND 'Wit-rood boontje' and a regular darkening pinto genotype. In silico analysis indicated that Phvul.010G130600 encodes a protein with strong amino acid sequence identity (70%) with a R2R3-MYB-type transcription factor MtPAR, which has been shown to regulate proanthocyanidin biosynthesis in Medicago truncatula seed coat tissue. The deletion in the 'Wit-rood boontje' allele of Phvul.010G130600 likely causes a translational frame shift that disrupts the function of a transcriptional activation domain contained in the C-terminus of the R2R3-MYB. A gene-based dominant marker was developed for the dominant allele of Phvul.010G130600 which can be used for marker-assisted selection of ND beans.
机译:关键消息的基因PHVVUL.010G130600显示了MYB的代码被显示为紧密与vihaotususualus的种子涂层变暗紧密相关,并且在Wit-Rood中的等位基因中的单个核苷酸缺失破坏了可能防止其在这种非功能下的转录激活区域-Dardening基因型。常规PINTO和蔓越莓豆类种子涂层的米色和白色背景颜色通过称为POSTHARVETY DAGNENY(PHD)的过程变成棕色。种子涂层PHD归因于原花青素积累及其随后的种子涂层氧化。 J基因是已知的一种不表征的古典遗传基因座,该遗传源位于普通豆(vulgaris)和纯合的纯合的个体,其隐性等位基因具有非变暗(Nd)种子涂层表型。先前的研究鉴定了与ND特征相关的染色体10上的种子涂层颜色的主要测定QTL。本研究的目的是鉴定与普通豆类中的种子外皮降钙质的基因,并了解其在促进种子涂层变暗中的功能。与ND特征相关的QTL下面的QTL的扩增子测序揭示了候选基因Phvul.010G130600中的单一核苷酸缺失(C.703DelG),其在ND'Wit-Rood Boontje'之间的交叉之间衍生的非变暗的重组自交系中常规变暗的pinto基因型。在硅分析中,PHVUL.010G130600用R2R3-MYB型转录因子MTPAR编码具有强氨基酸序列同一性(70%)的蛋白质,该转录因子MTPAR已被证明在Medicago Truncatula种子涂层组织中调节原花青素生物合成。 PHVVUL.010G130600的“WIT-Rood Boontje”等位基因中的删除可能会导致翻译帧移位,这些帧偏移破坏R2R3-MYB的C-末端中包含的转录激活域的功能。为PHVVUL.010G130600的主要等位基因开发了基因的显性标志物,其可用于标记辅助选择Nd Bean。

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