转录因子
拟南芥
生物
细胞生物学
信号转导
基因
耐旱性
串扰
下胚轴
背景(考古学)
植物
遗传学
光学
物理
突变体
古生物学
作者
Surina Surina,Ayumi Yamagami,Tomoko Miyaji,Zhana Chagan,KwiMi Chung,Nobutaka Mitsuda,Kaisei Nishida,Ryo Tachibana,Zhangliang Zhu,Takuya Miyakawa,Kazuo Shinozaki,Masaaki Sakuta,Tadao Asami,Takeshi Nakano
出处
期刊:Plant and Cell Physiology
[Oxford University Press]
日期:2024-01-18
被引量:6
摘要
Abstract Drought stress is a major threat leading to global plant and crop losses in the context of the climate change crisis. Brassinosteroids (BRs) are plant steroid hormones, and the BR signaling mechanism in plant development has been well elucidated. Nevertheless, the specific mechanisms of BR signaling in drought stress are still unclear. Here, we identify a novel Arabidopsis gene, BRZ INSENSITIVE LONG HYPOCOTYL 9 (BIL9), which promotes plant growth via BR signaling. Overexpression of BIL9 enhances drought and mannitol stress resistance and increases the expression of drought-responsive genes. BIL9 protein is induced by dehydration and interacts with the HD-Zip IV transcription factor HOMEODOMAIN GLABROUS 11 (HDG11), which is known to promote plant resistance to drought stress, in vitro and in vivo. BIL9 enhanced the transcriptional activity of HDG11 for drought-stress-resistant genes. BIL9 is a novel BR signaling factor that enhances both plant growth and plant drought resistance.
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