MAPK‐like protein 1 positively regulates maize seedling drought sensitivity by suppressing ABA biosynthesis

脱落酸 生物 激酶 苗木 分解代谢 基因 MAPK/ERK通路 细胞生物学 蛋白激酶A 耐旱性 拟南芥 转录因子 突变体 植物 生物化学
作者
Dan Zhu,Ying Chang,Ting Pei,Xiuyan Zhang,Lan Liu,Yuan Li,Junhong Zhuang,Hailian Yang,Feng Qin,Chun‐Peng Song,Dongtao Ren
出处
期刊:Plant Journal [Wiley]
卷期号:102 (4): 747-760 被引量:46
标识
DOI:10.1111/tpj.14660
摘要

Summary Mitogen‐activated protein kinase (MAPK) cascades play vital roles in regulating plant growth, development, and stress responses. MAPK‐like (MPKL) proteins are a group of kinases containing the MAPK signature TxY motif and showing sequence similarity to MAPKs. However, the functions of plant MPKL proteins are currently unknown. The maize ( Zea mays ) genome contains four genes encoding MPKL proteins, here named ZmMPKL1 to ZmMPKL4 . In this study, we show that ZmMPKL1 possesses kinase activity and that drought‐induced ZmMPKL1 expression, ZmMPKL1 overexpression and knockout maize seedlings exhibited no visible morphological difference from wild‐type B73 seedlings when grown under normal conditions. By contrast, under drought conditions, ZmMPKL1‐ overexpressing seedlings showed increased stomatal aperture, water loss, and leaf wilting and knockout seedlings showed the opposite phenotypes. Moreover, these drought‐sensitive phenotypes in ZmMPKL1‐ overexpressing seedlings were restored by exogenous abscisic acid (ABA). ZmMPKL1 overexpression reduced drought‐induced ABA production in seedlings and the knockout showed enhanced ABA production. Drought‐induced transcription of ABA biosynthetic genes were suppressed and ABA catabolic genes were enhanced in ZmMPKL1‐ overexpressing seedlings, while their transcription were reversely regulated in knockout seedlings. These results suggest that ZmMPKL1 positively regulates seedlings drought sensitivity by altering the transcription of ABA biosynthetic and catabolic genes, and ABA homeostasis.
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