Role of bZIP Transcription Factors in Plant Salt Stress

转录因子 茉莉酸 生物 激活转录因子 bZIP域 非生物胁迫 细胞生物学 亮氨酸拉链 信号转导 ATF3 遗传学 水杨酸 发起人 基因 基因表达
作者
Haotian Liu,Xun Tang,Ning Zhang,Shigui Li,Huaijun Si
出处
期刊:International Journal of Molecular Sciences [MDPI AG]
卷期号:24 (9): 7893-7893 被引量:129
标识
DOI:10.3390/ijms24097893
摘要

Soil salinity has become an increasingly serious problem worldwide, greatly limiting crop development and yield, and posing a major challenge to plant breeding. Basic leucine zipper (bZIP) transcription factors are the most widely distributed and conserved transcription factors and are the main regulators controlling various plant response processes against external stimuli. The bZIP protein contains two domains: a highly conserved, DNA-binding alkaline region, and a diverse leucine zipper, which is one of the largest transcription factor families in plants. Plant bZIP is involved in many biological processes, such as flower development, seed maturation, dormancy, and senescence, and plays an important role in abiotic stresses such as salt damage, drought, cold damage, osmotic stress, mechanical damage, and ABA signal response. In addition, bZIP is involved in the regulation of plant response to biological stresses such as insect pests and pathogen infection through salicylic acid, jasmonic acid, and ABA signal transduction pathways. This review summarizes and discusses the structural characteristics and functional characterization of the bZIP transcription factor group, the bZIP transcription factor complex and its molecular regulation mechanisms related to salt stress resistance, and the regulation of transcription factors in plant salt stress resistance. This review provides a theoretical basis and research ideas for further exploration of the salt stress-related functions of bZIP transcription factors. It also provides a theoretical basis for crop genetic improvement and green production in agriculture.
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