Romeo-Oliván Ana, Chervin Justine, Breton Coralie, Lagravère Thierry, Daydé Jean, Dumas Bernard, Jacques Alban
Unité de Recherche Physiologie, Pathologie, et Génétique Végétales (PPGV), INP PURPAN, Université de Toulouse, Toulouse, France.
Laboratoire de Recherche en Sciences Végétales, CNRS, UPS, Toulouse INP, Université de Toulouse, Toulouse, France.
Front Microbiol. 2022 May 17;13:898356. doi: 10.3389/fmicb.2022.898356. eCollection 2022.
Given their well-known antifungal abilities, species of the genus are of significant interest in modern agriculture. Recent studies have shown that species can induce plant resistance against different phytopathogens. To further extend this line of investigation, we investigate herein the transcriptomic response of grapevine trunk to Vintec, which is a SC1-based commercial formulation for biological control of grapevine trunk diseases and which reduces wood colonization. The aim of the study is to understand whether the biocontrol agent Vintec modifies the trunk response to and , which are two esca-associated fungal pathogens. An analysis of transcriptional regulation identifies clusters of co-regulated genes whose transcriptomic reprogramming in response to infection depends on the absence or presence of Vintec. On one hand, the results show that Vintec differentially modulates the expression of putative genes involved in hormonal signaling, especially those involved in auxin signaling. On the other hand, most significant gene expression modifications occur among secondary-metabolism-related genes, especially regarding phenylpropanoid metabolism and stilbene biosynthesis. Taken together, these results suggest that the biocontrol agent Vintec induces wood responses that counteract disease development.
鉴于其众所周知的抗真菌能力,该属的物种在现代农业中备受关注。最近的研究表明,该属物种可诱导植物对不同植物病原体产生抗性。为了进一步拓展这一研究方向,我们在此研究葡萄树干对Vintec的转录组反应,Vintec是一种基于SC1的用于生物防治葡萄树干病害的商业制剂,可减少木材定殖。本研究的目的是了解生物防治剂Vintec是否会改变树干对两种与葡萄枝干病害相关的真菌病原体——[此处原文缺失两种病原体名称]的反应。转录调控分析确定了共调控基因簇,其响应感染的转录组重编程取决于Vintec的存在与否。一方面,结果表明Vintec差异调节参与激素信号传导的假定基因的表达,尤其是那些参与生长素信号传导的基因。另一方面,最显著的基因表达修饰发生在与次生代谢相关的基因中,特别是在苯丙烷代谢和芪生物合成方面。综上所述,这些结果表明生物防治剂Vintec诱导木材产生抵抗疾病发展的反应。