Graziosi Simone, Deloche Lara, Januario Mélanie, Selosse Marc-André, Deveau Aurélie, Bach Cyrille, Chen Zhixiao, Murat Claude, Iotti Mirco, Rech Philippe, Zambonelli Alessandra
Department of Agricultural and Food Sciences, University of Bologna, Viale G. Fanin 44, 40127, Bologna, Italy.
ISYEB, Muséum National d'Histoire Naturelle, CNRS, EPHE-PSL, Sorbonne Université, 57 Rue Cuvier, CP39, 75005, Paris, France.
Microb Ecol. 2025 May 8;88(1):42. doi: 10.1007/s00248-025-02542-z.
Tuber magnatum Picco (the Italian white truffle) is the most valuable and widely appreciated truffle. It is an ectomycorrhizal fungus known to associate with many broadleaf tree species. However, its mycorrhizae are rarely observed in the field, suggesting possible alternative symbiotic strategies, such as endophytism with non-ectomycorrhizal plants. In order to test potential endophytic interactions of T. magnatum with wild plants, a combination of polymerase chain reaction (PCR) and Fluorescence In Situ Hybridization (FISH) approaches were used. Specific FISH probes for T. magnatum were designed, tested in vitro on hyphae and/or ectomycorrhizae, and selected for their specificity. These probes were then used on a wide variety root samples of wild plants collected from three T. magnatum production areas in Italy and previously tested for the presence of T. magnatum mycelium using PCR-specific primers. Molecular analyses detected the presence of T. magnatum in 21 of 100 plant samples analyzed. FISH analysis confirmed the extracellular presence of active T. magnatum hyphae inside the root system of Carex pendula Huds plant. This study provides the first evidence of T. magnatum acting as an endophyte in an herbaceous plant. The newly designed, highly specific T. magnatum FISH probes can be used for further investigations to confirm the endophytic tendencies of T. magnatum and to understand their influence on the life cycle and biology of this fungus.
白松露(意大利白松露)是最珍贵且广受赞誉的松露。它是一种外生菌根真菌,已知能与多种阔叶树种共生。然而,在野外很少观察到它的菌根,这表明可能存在其他共生策略,比如与非外生菌根植物形成内生关系。为了测试白松露与野生植物之间潜在的内生相互作用,研究采用了聚合酶链反应(PCR)和荧光原位杂交(FISH)相结合的方法。设计了针对白松露的特异性FISH探针,在体外对菌丝和/或外生菌根进行测试,并根据其特异性进行筛选。然后将这些探针用于从意大利三个白松露产区采集的多种野生植物根系样本,这些样本之前已使用PCR特异性引物检测过是否存在白松露菌丝体。分子分析在100个被分析的植物样本中的21个中检测到了白松露的存在。FISH分析证实了在垂穗苔草植物根系内部存在活跃的白松露菌丝。这项研究首次提供了白松露在草本植物中作为内生菌的证据。新设计的、高度特异性的白松露FISH探针可用于进一步研究,以确认白松露的内生倾向,并了解它们对这种真菌生命周期和生物学特性的影响。