干旱胁迫
水分胁迫
生物
词根(语言学)
压力(语言学)
植物
植物发育
生物化学
基因
语言学
哲学
作者
Yutian Zhang,Jieqiang He,Gege Qin,Kecheng Yang,Pengxiang Chen,Chundong Niu,Xuewei Li,Chuang Mei,Jiangbo Wang,Qingmei Guan,Chana Bao
标识
DOI:10.1016/j.plaphy.2024.108833
摘要
Root plays an important role in plant drought tolerance, especially in horticultural crops like apples. However, the crucial regulator and molecular mechanism in root development of apple trees under drought are not well unknown. Cys2/His2-type Zinc-finger proteins are essential for plant response to drought, while the members of C2H2 Zinc-finger proteins in apple are largely unknown. In this study, we identified the members of the C1-2i subclass family of C2H2 Zinc-finger proteins in apple (Malus × domestica). Among them, MdZAT5 is significantly induced in apple roots under drought conditions and positively regulates apple root development under drought. Further investigation revealed that MdZAT5 positively regulates root development and root hydraulic conductivity by mediating the transcription level of MdMYB88 under drought stress. Taken together, our results demonstrate the importance of MdZAT5 in root development under drought in apple trees. This finding provides a new candidate direction for apple breeding for drought resistance.
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