Wheat stripe rust, caused by the fungal pathogen Puccinia striiformis f. sp. tritici (Pst), threatens global wheat production, and therefore discovering genes involved in stripe rust susceptibility is essential for balancing yield with disease resistance in sustainable breeding strategies. Although TaGW2 is well known to negatively regulate wheat kernel size and weight, its role in stress response remains unclear. Here, we found that TaGW2 transcription levels increased following inoculation with Pst or treatment with flg22 or chitin. TaGW2 knockdown lines showed enhanced resistance to multiple Pst races, while TaGW2 overexpression reduced host defence response, promoted Pst growth and development and increased wheat susceptibility to Pst. Additionally, TaGW2 could mediate the ubiquitination and degradation of both TaSnRK1γ and TaVPS24 via the 26S proteasome pathway. Silencing TaSnRK1γ or TaVPS24 in wheat increased sensitivity to Pst, whereas overexpressing either gene enhanced wheat defence response, indicating that TaSnRK1γ and TaVPS24 act as positive regulators of Pst resistance. This study reveals a previously unrecognized mechanism inhibiting plant immunity to Pst through TaGW2-mediated ubiquitination and degradation of TaSnRK1γ and TaVPS24. This work also provides crucial genetic resources for breeding high-yield, stripe rust-resistant wheat varieties.
The E3 ubiquitin ligase TaGW2 facilitates TaSnRK1γ and TaVPS24 degradation to enhance stripe rust susceptibility in wheat.
E3 泛素连接酶 TaGW2 促进 TaSnRK1γ 和 TaVPS24 的降解,从而增强小麦对条锈病的易感性
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作者:Li Shumin, Li Tian, Zhang Peiyin, Wang Xuemin, Feng Wenxuan, Zhang Yifang, Chen Bin, Liu Yuling, Zhan Gangming, Hao Chenyang, Zhang Xueyong, Kang Zhensheng, Mao Hude
| 期刊: | Plant Biotechnology Journal | 影响因子: | 10.500 |
| 时间: | 2025 | 起止号: | 2025 Mar;23(3):750-765 |
| doi: | 10.1111/pbi.14536 | 研究方向: | 表观遗传 |
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