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

Xueying Wang,Yang Zhou, Chong You, Jinchang Yang,Zhengjie Chen,Dengguo Tang,Jixing Ni,Peng Li,Le Wang, Kaili Zhu, Wujiao Deng, Haimei Wu, Ruifan Bao, Zhiqin Liu, Pengxu Meng, Sijia Yang,Tingzhao Rong,Jian Liu

Theoretical and Applied Genetics(2024)

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摘要
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 F2 population arising from the hybridization of the single-segment substitution line qSRC3MT1 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
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