VaWRKY65 contributes to cold tolerance through dual regulation of soluble sugar accumulation and reactive oxygen species scavenging in Vitis amurensis

IF 8.5 1区 农林科学 Q1 Agricultural and Biological Sciences Horticulture Research Pub Date : 2025-01-03 DOI:10.1093/hr/uhae367
Lin Meng, Huimin Zhou, Lisha Tan, Qingyun Li, Yujun Hou, Wenjuan Li, Subash Kafle, Ju Liang, Rishi Aryal, Zhenchang Liang, Haiping Xin
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Abstract

Although the significance of some plant WRKYs in response to cold stress have been identified, the molecular mechanisms of most WRKYs remain unclear in grapevine. In this study, we demonstrate that cold-induced expression of VaBAM3 in Vitis amurensis executes a beneficial role in enhancing resistance by the regulating starch decomposition. VaWRKY65 was identified as an upstream transcriptional activator of VaBAM3 through yeast one-hybrid library screening and validated to directly interacts with the W-box region inside the VaBAM3 promoter. Transgenic Arabidopsis thaliana plants and grapevine roots overexpression VaWRKY65 exhibited improved cold tolerance along with higher BAM activity and soluble sugar levels, whereas opposite changes were observed in VaWRKY65 knockdown lines created by virus-induced gene silencing (VIGS) in grapevine plants and in the knockout wrky65 mutants generated by CRISPR/Cas9 technology in grapevine roots. The transcriptome data show that overexpression of VaWRKY65 led to significant alteration of a diverse set of stress-related genes at the transcriptional level. One of the genes, Peroxidase 36 (VaPOD36) was further verified as a direct target of VaWRKY65. Consistently, VaWRKY65-overexpressing plants had higher VaPOD36 transcript levels and POD activity but a reduced ROS level, while silencing VaWRKY65 results in contrary changes. Collectively, these results reveal that VaWRKY65 enhanced cold tolerance through modulating soluble sugars produced from starch breakdown and ROS scavenging.
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vwrky65基因通过双重调控葡萄可溶性糖积累和活性氧清除来促进葡萄的耐寒性
虽然已经确定了一些植物WRKYs在应对冷胁迫中的重要意义,但大多数WRKYs的分子机制仍不清楚。在这项研究中,我们证明了冷诱导的VaBAM3在葡萄中通过调节淀粉分解在增强抗性方面发挥了有益的作用。通过酵母单杂交文库筛选,vwrky65被鉴定为VaBAM3的上游转录激活子,并被证实可直接与VaBAM3启动子内的W-box区域相互作用。过表达vwrky65的转基因拟南芥植株和葡萄根表现出更强的耐寒性以及更高的BAM活性和可溶性糖水平,而在葡萄植株中通过病毒诱导的基因沉默(VIGS)构建的vwrky65敲除系和通过CRISPR/Cas9技术在葡萄根中产生的敲除wrky65突变体中则观察到相反的变化。转录组数据显示,vwrky65的过表达导致多种应激相关基因在转录水平上发生显著改变。其中一个基因过氧化物酶36 (VaPOD36)被进一步证实是vwrky65的直接靶点。与此一致的是,过表达VaWRKY65的植物具有更高的VaPOD36转录物水平和POD活性,但ROS水平降低,而沉默VaWRKY65则导致相反的变化。总之,这些结果表明,vwrky65通过调节淀粉分解产生的可溶性糖和清除活性氧来增强耐寒性。
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来源期刊
Horticulture Research
Horticulture Research Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
11.20
自引率
6.90%
发文量
367
审稿时长
20 weeks
期刊介绍: Horticulture Research, an open access journal affiliated with Nanjing Agricultural University, has achieved the prestigious ranking of number one in the Horticulture category of the Journal Citation Reports ™ from Clarivate, 2022. As a leading publication in the field, the journal is dedicated to disseminating original research articles, comprehensive reviews, insightful perspectives, thought-provoking comments, and valuable correspondence articles and letters to the editor. Its scope encompasses all vital aspects of horticultural plants and disciplines, such as biotechnology, breeding, cellular and molecular biology, evolution, genetics, inter-species interactions, physiology, and the origination and domestication of crops.
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