The TaTCP4/10–B1 cascade regulates awn elongation in wheat (Triticum aestivum L.)

Wensheng Ke(China Agricultural University), Jiewen Xing(China Agricultural University), Zhaoyan Chen(China Agricultural University), Yidi Zhao(China Agricultural University), Weiya Xu(China Agricultural University), Lulu Tian(China Agricultural University), Jinquan Guo(China Agricultural University), Xiaoming Xie(China Agricultural University), Dejie Du(China Agricultural University), Zihao Wang(China Agricultural University), Yufeng Li(China Agricultural University), Jin Xu(China Agricultural University), Mingming Xin(China Agricultural University), Weilong Guo(China Agricultural University), Zhaorong Hu(China Agricultural University), Zhenqi Su(China Agricultural University), Jie Liu(China Agricultural University), Huiru Peng(China Agricultural University), Yingyin Yao(China Agricultural University), Qixin Sun(China Agricultural University), Zhongfu Ni(China Agricultural University)
Plant Communications
March 14, 2023
Cited by 37Open Access
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Abstract

Awns are important morphological markers for wheat and exert a strong physiological effect on wheat yield. The awn elongation suppressor B1 has recently been cloned through association and linkage analysis in wheat. However, the mechanism of awn inhibition centered around B1 remains to be clarified. Here, we identified an allelic variant in the coding region of B1 through analysis of re-sequencing data; this variant causes an amino acid substitution and premature termination, resulting in a long-awn phenotype. Transcriptome analysis indicated that B1 inhibited awn elongation by impeding cytokinin- and auxin-promoted cell division. Moreover, B1 directly repressed the expression of TaRAE2 and TaLks2, whose orthologs have been reported to promote awn development in rice or barley. More importantly, we found that TaTCP4 and TaTCP10 synergistically inhibited the expression of B1, and a G-to-A mutation in the B1 promoter attenuated its inhibition by TaTCP4/10. Taken together, our results reveal novel mechanisms of awn development and provide genetic resources for trait improvement in wheat.


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