Instituto de Biología Molecular y Celular de Plantas (Consejo Superior de Investigaciones Científicas-Universidad Politécnica de Valencia), Valencia, Spain.
Plant Cell Environ. 2023 Nov;46(11):3445-3463. doi: 10.1111/pce.14685. Epub 2023 Aug 10.
Nitric oxide (NO) and reactive oxygen are common factors in multiple plant responses to stress, and their involvement in hypoxia-triggered responses is key to ensure growth under adverse environmental conditions. Here, we analyse the regulatory functions exerted by hypoxia-, NO- and oxidative stress-inducible Arabidopsis gene coding for the VQ motif-containing protein 10 (VQ10). A hypermorphic vq10-H mutant allowed identifying VQ10-exerted regulation on root and shoot development as well as its role in regulating responses to NO and oxidative stress. Enhanced VQ10 expression in vq10-H plants led to enhanced elongation of the primary root, and increased root cell division and meristem size during early postgermination development. In shoots, VQ10 activation of cell division was counteracted by WRKY33-exerted repression, thus leading to a dwarf bushy phenotype in plants with enhanced VQ10 expression in a wrky33 knock-out background. Low number of differentially expressed genes were identified when vq10-H versus Col-0 plants were compared either under normoxia or hypoxia. vq10-H and VQ10ox plants displayed less tolerance to submergence but, in turn, were more tolerant to oxidative stress and less sensitive to NO than wild-type plants. VQ10 could be a node integrating redox-related regulation on development and stress responses.
一氧化氮(NO)和活性氧是植物应对多种胁迫的共同因素,它们在缺氧触发的反应中的参与对于在不利环境条件下生长至关重要。在这里,我们分析了缺氧、NO 和氧化应激诱导的拟南芥 VQ 基序富含蛋白 10(VQ10)编码基因的调节功能。超突变体 vq10-H 允许鉴定 VQ10 对根和芽发育的调节作用及其在调节对 NO 和氧化应激的反应中的作用。在 vq10-H 植物中增强 VQ10 的表达导致主根伸长增强,并且在早期萌发发育过程中增加了根细胞分裂和分生组织大小。在芽中,VQ10 对细胞分裂的激活被 WRKY33 发挥的抑制作用所抵消,因此导致在增强 VQ10 表达的 wrky33 敲除背景下植物呈现矮小丛生表型。当将 vq10-H 与 Col-0 植物在常氧或缺氧下进行比较时,仅鉴定到少数差异表达基因。vq10-H 和 VQ10ox 植物对淹没的耐受性较低,但与野生型植物相比,它们对氧化应激的耐受性较高,对 NO 的敏感性较低。VQ10 可能是整合发育和应激反应中与氧化还原相关的调节的节点。