AP2/ERF, an important cold stress-related transcription factor family in plants: A review

WRKY蛋白质结构域 MYB公司 转录因子 生物 细胞生物学 拟南芥 耐寒性 非生物胁迫 冷应激 植物 基因 遗传学 突变体
作者
Faujiah Nurhasanah Ritonga,Jacob Njaramba Ngatia,Yiran Wang,Muneer Ahmed Khoso,Umar Farooq,Su Chen
出处
期刊:Physiology and Molecular Biology of Plants [Springer Science+Business Media]
卷期号:27 (9): 1953-1968 被引量:91
标识
DOI:10.1007/s12298-021-01061-8
摘要

Increasing the vulnerability of plants especially crops to a wide range of cold stress reduces plant growth, development, yield production, and plant distribution. Cold stress induces physiological, morphological, biochemical, phenotypic, and molecular changes in plants. Transcription factor (TF) is one of the most important regulators that mediate gene expression. TF is activated by the signal transduction pathway, together with cis-acting element modulate the transcription of cold-responsive genes which contribute to increasing cold tolerance in plants. Here, AP2/ERF TF family is one of the most important cold stress-related TF families that along with other TF families, such as WRKY, bHLH, bZIP, MYB, NAC, and C2H2 interrelate to enhance cold stress tolerance. Over the past decade, significant progress has been found to solve the role of transcription factors (TFs) in improving cold tolerance in plants, such as omics analysis. Furthermore, numerous studies have identified and characterized the complexity of cold stress mechanisms among TFs or between TFs and other factors (endogenous and exogenous) including phytohormones, eugenol, and light. The role, function, and relationship among these TFs or between TFs and other factors to enhance cold tolerance still need to be clarified. Here, the current study analysed the role of AP2/ERF TF and the linkages among AP2/ERF with MYB, WRKY, bZIP, bHLH, C2H2, or NAC against cold stress tolerance.
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