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VqERF1B-VqERF062-VqNSTS2转录级联增强葡萄中芪类化合物的生物合成及对白粉病的抗性。

VqERF1B-VqERF062-VqNSTS2 transcriptional cascade enhances stilbene biosynthesis and resistance to powdery mildew in grapevine.

作者信息

Yan Chaohui, Liu Wandi, Li Ruimin, Liu Guotian, Wang Yuejin

机构信息

College of Horticulture, Northwest A & F University, Yangling, Shaanxi, China.

Key Laboratory of Horticultural Plant Biology and Germplasm Innovation in Northwest China, Ministry of Agriculture, Yangling, Shaanxi, China.

出版信息

Plant Biotechnol J. 2025 Jun;23(6):2065-2082. doi: 10.1111/pbi.70041. Epub 2025 Mar 10.

Abstract

Grapes, as one of the world's oldest economic crops, are severely affected by grape powdery mildew, causing significant economic losses. As a phytoalexin against powdery mildew, stilbenes and their key synthetic gene, stilbene synthase (STS), are highly sought after by researchers. In our previous research, a new gene, VqNSTS2, was identified from Vitis quinquangularis accession 'Danfeng-2' through transcriptomic analysis. However, the function and molecular mechanism of VqNSTS2 gene remain unknown. Here, by characterization and transient overexpression of VqNSTS2, we demonstrated that its expression product, stilbenes, can be detected in the model plant tobacco, which does not inherently contain STSs. After artificially inoculating transgenic Arabidopsis lines overexpressing VqNSTS2 with Golovinomyces cichoracearum, it was found that VqNSTS2 actively moved to the pathogen's haustorium after responding to the pathogen, recognized and enveloped the haustorium, blocking the pathogen's infection and invasion and exhibited disease resistance. Furthermore, Agrobacterium-mediated stable overexpression of VqNSTS2 promoted stilbene accumulation and enhanced resistance of the V. vinifera susceptible cultivar 'Thompson Seedless' to E. necator. Additionally, through screening and identification, a transcription factor, VqERF062, was found to directly bind to the DRE and RAA motifs on ProVqNSTS2, positively regulating VqNSTS2 expression. Moreover, VqERF062 directly interacted with VqERF1B to promote the transcription of VqNSTS2 in addition to forming a homodimer with itself. Taken together, our findings reveal that the VqERF1B-VqERF062- module is required for grape resistance to E. necator and providing insights into the regulatory mechanism of stilbenes biosynthesis. [Correction added on 22 March 2025, after first online publication: The 7th sentence in summary is updated in this version.].

摘要

葡萄作为世界上最古老的经济作物之一,受到葡萄白粉病的严重影响,造成重大经济损失。作为一种抗白粉病的植保素,芪类化合物及其关键合成基因芪合酶(STS)备受研究人员关注。在我们之前的研究中,通过转录组分析从毛葡萄品种‘丹凤 - 2’中鉴定出一个新基因VqNSTS2。然而,VqNSTS2基因的功能和分子机制仍不清楚。在此,通过对VqNSTS2的表征和瞬时过表达,我们证明其表达产物芪类化合物可以在本不含STS的模式植物烟草中检测到。用白粉菌人工接种过表达VqNSTS2的转基因拟南芥品系后,发现VqNSTS2在对病原体作出反应后主动移动到病原体的吸器,识别并包裹吸器,阻止病原体的感染和入侵,表现出抗病性。此外,农杆菌介导的VqNSTS2稳定过表达促进了芪类化合物的积累,并增强了酿酒葡萄易感品种‘汤普森无核’对葡萄白粉病菌的抗性。另外,通过筛选和鉴定,发现一个转录因子VqERF062直接结合ProVqNSTS2上的DRE和RAA基序,正向调控VqNSTS2的表达。此外,VqERF062除了自身形成同二聚体外,还直接与VqERF1B相互作用以促进VqNSTS2的转录。综上所述,我们的研究结果表明VqERF1B - VqERF062模块是葡萄对葡萄白粉病菌抗性所必需的,并为芪类化合物生物合成的调控机制提供了见解。[2025年3月22日首次在线发表后添加的更正:本版本更新了摘要中的第7句话。]

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b62/12120875/82e2563c9f5a/PBI-23-2065-g001.jpg

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