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精细定位与候选基因分析控制玉米(Zea mays L.)丝质颜色的 qSRC3。

Fine mapping and candidate gene analysis of qSRC3 controlling the silk color in maize (Zea mays L.).

机构信息

Maize Research Institute, Sichuan Agricultural University, Chengdu, 611130, China.

出版信息

Theor Appl Genet. 2024 Mar 30;137(4):90. doi: 10.1007/s00122-024-04598-w.

Abstract

Fine mapping of the maize QTL qSRC3, responsible for red silk, uncovered the candidate gene ZmMYB20, which encodes an R2R3-MYB transcription factor, has light-sensitive expression, and putatively regulates genes expression associated with anthocyanin biosynthesis. Colorless silk is a key characteristic contributing to the visual quality of fresh corn intended for market distribution. Nonetheless, the identification of Mendelian trait loci and associated genes that control silk color has been scarce. In this study, a F population arising from the hybridization of the single-segment substitution line qSRC3 with red silk, carrying an introgressed allele from teosinte (Zea mays ssp. mexicana), and the recurrent maize inbred line Mo17, characterized by light green silk, was utilized for fine mapping. We found that the red silk trait is controlled by a semi-dominant genetic locus known as qSRC3, and its expression is susceptible to light-mediated inhibition. Moreover, qSRC3 explained 68.78% of the phenotypic variance and was delimited to a 133.2 kb region, which includes three genes. Subsequent expression analyses revealed that ZmMYB20 (Zm00001d039700), which encodes an R2R3-MYB transcription factor, was the key candidate gene within qSRC3. Yeast one-hybrid and dual-luciferase reporter assays provided evidence that ZmMYB20 suppresses the expression of two crucial anthocyanin biosynthesis genes, namely ZmF3H and ZmUFGT, by directly binding to their respective promoter regions. Our findings underscore the significance of light-inhibited ZmMYB20 in orchestrating the spatial and temporal regulation of anthocyanin biosynthesis. These results advance the production of colorless silk in fresh corn, responding to the misconception that fresh corn with withered colored silk is not fresh and providing valuable genetic resources for the improvement of sweet and waxy maize.

摘要

玉米红色穗丝 QTL qSRC3 的精细定位揭示了候选基因 ZmMYB20,它编码一个 R2R3-MYB 转录因子,具有光敏感表达,推测调节与花青素生物合成相关的基因表达。无色穗丝是影响用于市场销售的鲜玉米外观质量的关键特征。然而,控制穗丝颜色的孟德尔性状基因座和相关基因的鉴定一直很少。在这项研究中,利用由携带来自墨西哥类蜀黍(Zea mays ssp. mexicana)的渐渗等位基因的单片段替换系 qSRC3 与红色穗丝杂交产生的 F2 群体,以及具有浅绿色穗丝的轮回自交系 Mo17 进行精细定位。我们发现红色穗丝性状由一个半显性遗传基因座 qSRC3 控制,其表达易受光介导的抑制。此外,qSRC3 解释了 68.78%的表型方差,并且被限定在一个 133.2kb 的区域内,该区域包含三个基因。随后的表达分析表明,Zm00001d039700 编码一个 R2R3-MYB 转录因子,是 qSRC3 中的关键候选基因。酵母单杂交和双荧光素酶报告基因检测提供了证据表明,ZmMYB20 通过直接结合到它们各自的启动子区域来抑制两个关键花青素生物合成基因 ZmF3H 和 ZmUFGT 的表达。我们的研究结果强调了受光抑制的 ZmMYB20 在协调花青素生物合成的时空调节中的重要性。这些结果为生产无色穗丝的鲜玉米提供了帮助,因为人们普遍认为带有枯萎色穗丝的鲜玉米不新鲜,并为甜玉米和蜡质玉米的改良提供了有价值的遗传资源。

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