Regulation Mechanisms of Plant Basic Leucine Zippers to Various Abiotic Stresses

Regulation Mechanisms of Plant Basic Leucine Zippers to Various Abiotic Stresses
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DOI:
10.3389/fpls.2020.01258
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发表时间:
2020-08
影响因子:
5.6
通讯作者:
Yan Yu;Yuchen Qian;Mengyue Jiang;Jia Xu;Jingting Yang;Tongyao Zhang;Liangpeng Gou;E. Pi
Yan Yu;Yuchen Qian;Mengyue Jiang;Jia Xu;Jingting Yang;Tongyao Zhang;Liangpeng Gou;E. Pi
中科院分区:
生物学2区
文献类型:
--
作者:
Yan Yu;Yuchen Qian;Mengyue Jiang;Jia Xu;Jingting Yang;Tongyao Zhang;Liangpeng Gou;E. Pi

文献摘要

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bZIP家族是真核生物中分布最广泛和最保守的转录因子类别之一。它们广泛参与植物对非生物胁迫的响应过程,如提高植物对干旱、盐度和寒冷的适应能力。为了全面了解植物bzip调控这些耐受性的机制,本文将对其在不同物种中的分布、蛋白结构特点、靶基因转录表达的调控机制以及近年来的相关研究进展进行综述。特别地,我们将讨论黄酮在上述植物耐受反应中的可能作用,黄酮的合成可能受到bzip的调控。
The bZIP family is one of the most widely distributed and conserved transcription factor categories in eukaryotes. They are widely involved in processes of plant abiotic stress responses, such as improving the ability of plants to adapt to drought, salinity and cold. To comprehensively understand how plant bZIPs regulating these tolerances, this article will have an overview of their distributions on different species, characteristics of protein architecture, regulation mechanisms for target genes’ transcriptional expression, and relevant research progresses in recent years. Specially, we will discuss the possible roles of flavonoids, whose synthesis could be regulated by bZIPs, in abovementioned plant tolerant responses.