Dimaria Giulio, Sicilia Angelo, Modica Francesco, Russo Marcella, Bazzano Marina Claudia, Massimino Maria Elena, Piero Angela Roberta Lo, Bella Patrizia, Catara Vittoria
Department of Agriculture, Food, and Environment, University of Catania, Via Santa Sofia 100, Catania 95123, Italy.
Agrobiotech Soc. Coop, Catania 95121, Italy.
Microbiol Res. 2024 Oct;287:127833. doi: 10.1016/j.micres.2024.127833. Epub 2024 Jul 16.
In this study, we investigated the biocontrol activity of the P. mediterranea strain PVCT 3C against Mal secco, a severe disease of citrus caused by the vascular fungus Plenodomus tracheiphilus. In vitro, bacterial diffusible compounds, volatile organic compounds and culture filtrates produced by PVCT 3C reduced the mycelial growth and conidial germination of P. tracheiphilus, also affecting the mycelial pigmentation. The application of bacterial suspensions by leaf-spraying before the inoculation with the pathogen on plants of the highly susceptible species sour orange and lemon led to an overall reduction in incidence and disease index, above all during the early disease stage. PVCT 3C genome was subjected to whole-genome shotgun sequencing to study the molecular mechanisms of action of this strain. In silico annotation of biosynthetic gene clusters for secondary metabolites revealed the presence of numerous clusters encoding antimicrobial compounds (e.g. cyclic lipopeptides, hydrogen cyanide, siderophores) and candidate novel products. During the asymptomatic disease phase (seven days post-inoculation), bacterial treatments interfered with the expression of different fungal genes, as assessed with an NGS and de novo assembly RNA-seq approach. These results suggest that P. mediterranea PVCT 3C or its secondary metabolites may offer a potential effective and sustainable alternative to contain P. tracheiphilus infections via integrated management.
在本研究中,我们调查了地中海芽孢杆菌菌株PVCT 3C对柑橘黑腐病的生防活性,柑橘黑腐病是由维管束真菌 tracheiphilus引起的一种严重的柑橘病害。在体外,PVCT 3C产生的细菌可扩散化合物、挥发性有机化合物和培养滤液降低了tracheiphilus的菌丝生长和分生孢子萌发,还影响了菌丝色素沉着。在对高度易感品种酸橙和柠檬植株接种病原菌之前,通过叶喷施用细菌悬浮液,导致发病率和病情指数总体降低,尤其是在病害早期阶段。对PVCT 3C基因组进行了全基因组鸟枪法测序,以研究该菌株的分子作用机制。对次生代谢物生物合成基因簇的电子注释揭示了存在许多编码抗菌化合物(如环脂肽、氰化氢、铁载体)和候选新产物的基因簇。在无症状病害阶段(接种后七天),通过NGS和从头组装RNA-seq方法评估,细菌处理干扰了不同真菌基因的表达。这些结果表明,地中海芽孢杆菌PVCT 3C或其次生代谢物可能通过综合管理提供一种潜在的有效且可持续的替代方法来控制tracheiphilus感染。