热应力
变化(天文学)
生物
压力(语言学)
遗传学
物理
天文
动物科学
语言学
哲学
作者
Jie Cao,Zhen Qin,G.J. Cui,Zhaoyan Chen,Xuejiao Cheng,Huiru Peng,Yingyin Yao,Zhaorong Hu,Weilong Guo,Zhongfu Ni,Qixin Sun,Mingming Xin
标识
DOI:10.1038/s41467-024-46419-0
摘要
Abstract Heat stress threatens global wheat ( Triticum aestivum ) production, causing dramatic yield losses worldwide. Identifying heat tolerance genes and comprehending molecular mechanisms are essential. Here, we identify a heat tolerance gene, TaSG-D1 E286K , in Indian dwarf wheat ( Triticum sphaerococcum ), which encodes an STKc_GSK3 kinase. TaSG-D1 E286K improves heat tolerance compared to TaSG-D1 by enhancing phosphorylation and stability of downstream target TaPIF4 under heat stress condition. Additionally, we reveal evolutionary footprints of TaPIF4 during wheat selective breeding in China, that is, InDels predominantly occur in the TaPIF4 promoter of Chinese modern wheat cultivars and result in decreased expression level of TaPIF4 in response to heat stress. These sequence variations with negative effect on heat tolerance are mainly introduced from European germplasm. Our study provides insight into heat stress response mechanisms and proposes a potential strategy to improve wheat heat tolerance in future.
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