The overexpression of a maize mitogen‐activated protein kinase gene (ZmMPK5) confers salt stress tolerance and induces defence responses in tobacco

生物 蛋白激酶A 基因 细胞生物学 激酶 分子生物学 遗传学
作者
Di Zhang,Shenghui Jiang,Junxiao Pan,Xiangpei Kong,Yan Zhou,Y. Liu,Dandan Li
出处
期刊:Plant Biology [Wiley]
卷期号:16 (3): 558-570 被引量:67
标识
DOI:10.1111/plb.12084
摘要

Abstract As sessile organisms, plants are exposed to potential dangers, including multiple biotic and abiotic stresses. The mitogen‐activated protein kinase ( MAPK ) is a universal signalling pathways involved in these processes. A previous study showed that maize Zm MPK 5 is induced by various stimuli at transcriptional and post‐translational levels. In this study, Z m MPK 5 was overexpressed in tobacco to further analyse its biological functions. Under salt and oxidative stresses, Z m MPK 5 ‐overexpressing lines displayed less severe damage and stronger growth phenotypes corresponding to a series of physiological changes. In addition, the transgenic lines accumulated less reactive oxygen species ( ROS ) and had higher levels of antioxidant enzyme activity and metabolites than wild‐type ( WT ) plants following N a C l treatment. Quantitative RT ‐ PCR revealed that the expression of ROS ‐related and stress‐responsive genes was higher in transgenic plants than in WT plants. Furthermore, transgenic lines exhibited enhanced resistance to viral pathogens, and expressed constitutively higher transcript levels of pathogenesis‐related genes, such as PR 1a , PR 4 , PR 5 and EREBP . Taken together, these results demonstrated that Z m MPK 5 is involved in salt stress, oxidative stress and pathogen defence signalling pathways, and its function may be at least partly devoted to efficiently eliminating ROS accumulation under salt stress.
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