CRY1-HY5-MYB信号级联微调保护细胞活性氧水平并触发气孔开放。

IF 10 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Plant Cell Pub Date : 2025-04-02 DOI:10.1093/plcell/koaf064
Yuankai Chang, Mianmian Shi, Xiao Wang, Hui Cheng, Junli Zhang, Hongrui Liu, Huiruo Wu, Xiaobin Ou, Ke Yu, Xuebin Zhang, Brad Day, Chen Miao, Yi Zhao, Kun Jiang
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引用次数: 0

摘要

气孔打开促进二氧化碳的吸收,并通过蒸腾导致水分流失。在了解促光素介导的保护细胞蓝光(BL)信号传导方面取得了长足的进展,而隐色素(CRYs)在气孔打开及其下游元件中的意义仍然很大程度上未知。在这里,我们发现三个同源的MYB转录因子基因,即MYB11、MYB12和MYB111,在拟南芥(Arabidopsis thaliana)从暗到光的转变过程中,在保护细胞中被快速反激活。myb突变体的遗传特征表明,这些蛋白通过促进局部黄酮醇积累来特异性地介导光诱导的气孔打开,从而控制保护细胞中的活性氧稳态。在光的作用下,myb11 myb12 myb111三突变体的质膜H+- atp酶的激活被抑制,损害突变体保护细胞的跨膜K+内流。此外,我们证明了MYB11/12/111在照明下在保护细胞中的表达是由cry1特异性信号级联诱导的,该信号级联涉及这些myb的直接转录激活因子细长下胚轴5 (HY5)。总之,我们的工作揭示了CRY1-HY5-MYB模块促进光诱导气孔打开的机制,为保护细胞中的类黄酮代谢对植物耐胁迫至关重要提供了证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A CRY1-HY5-MYB signaling cascade fine-tunes guard cell reactive oxygen species levels and triggers stomatal opening.

Stomatal opening facilitates CO2 uptake and causes water loss via transpiration. Compared with the considerable progress made toward understanding phototropin-mediated blue light (BL) signaling in guard cells, the significance of cryptochromes (CRYs) in stomatal opening and their downstream elements remain largely unknown. Here, we show that 3 homologous MYB transcription factor genes, namely MYB11, MYB12, and MYB111, are rapidly transactivated in guard cells during the dark-to-light transition in Arabidopsis (Arabidopsis thaliana). Genetic characterization of myb mutants demonstrates that these proteins specifically mediate light-induced stomatal opening by promoting local flavonol accumulation, thereby controlling reactive oxygen species homeostasis in guard cells. In response to light, activation of the plasma membrane H+-ATPase is inhibited in the myb11 myb12 myb111 triple mutant, compromising transmembrane K+ influx in the mutant guard cells. Furthermore, we demonstrate that MYB11/12/111 expression in guard cells upon illumination is induced by a CRY1-specific signaling cascade involving ELONGATED HYPOCOTYL 5 (HY5), a direct transcriptional activator of these MYBs. Overall, our work reveals a mechanism by which the CRY1-HY5-MYB module facilitates light-induced stomatal opening, providing evidence that flavonoid metabolism in guard cells is crucial for plant stress tolerance.

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来源期刊
Plant Cell
Plant Cell 生物-生化与分子生物学
CiteScore
16.90
自引率
5.20%
发文量
337
审稿时长
2.4 months
期刊介绍: Title: Plant Cell Publisher: Published monthly by the American Society of Plant Biologists (ASPB) Produced by Sheridan Journal Services, Waterbury, VT History and Impact: Established in 1989 Within three years of publication, ranked first in impact among journals in plant sciences Maintains high standard of excellence Scope: Publishes novel research of special significance in plant biology Focus areas include cellular biology, molecular biology, biochemistry, genetics, development, and evolution Primary criteria: articles provide new insight of broad interest to plant biologists and are suitable for a wide audience Tenets: Publish the most exciting, cutting-edge research in plant cellular and molecular biology Provide rapid turnaround time for reviewing and publishing research papers Ensure highest quality reproduction of data Feature interactive format for commentaries, opinion pieces, and exchange of information in review articles, meeting reports, and insightful overviews.
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