Wild rice GL12 synergistically improves grain length and salt tolerance in cultivated rice.

Wang, Yanyan; Chen, Wenxi; Xing, Meng; Sun, Jiaqiang; Wang, Shizhuang; Yang, Ziyi; Huang, Jingfen; Nie, Yamin et al. · Nat Commun · 2024

basic_science · Level V

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Abstract

The abounding variations in wild rice provided potential reservoirs of beneficial genes for rice breeding. Maintaining stable and high yields under environmental stresses is a long-standing goal of rice breeding but is challenging due to internal trade-off mechanisms. Here, we report wild rice GL12<sup>W</sup> improves grain length and salt tolerance in both indica and japonica genetic backgrounds. GL12<sup>W</sup> alters cell length by regulating grain size related genes including GS2, and positively regulates the salt tolerance related genes, such as NAC5, NCED3, under salt stresses. We find that a G/T variation in GL12 promoter determined its binding to coactivator GIF1 and transcription factor WRKY53. GIF1 promotes GL12<sup>W</sup> expression in young panicle and WRKY53 represses GL12<sup>W</sup> expression under salt stresses. The G/T variation also contributes to the divergence of indica and japonica subspecies. Our results provide useful resources for modern rice breeding and shed insights for understanding yield and salt tolerance trade-off mechanism.

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