Malygina E V, Imidoeva N A, Belyshenko A Yu, Dmitrieva M E, Shelkovnikova V N, Vlasova A A, Telnova T Yu, Morgunova M M, Konovalov A S, Axenov-Gribanov D V
Laboratory of Experimental Neurophysiology, Department of Research and Development, Biological Faculty, Irkutsk State University, Irkutsk, Russia.
Mycobiology. 2024 Sep 19;52(5):278-286. doi: 10.1080/12298093.2024.2391627. eCollection 2024.
It is well known that the number of true truffles in the wild is decreasing. The aim of the study was to develop an effective, simple and affordable method of asci disruption to release black truffle spores. It was shown that the spore release can be achieved by different ways, such as mechanical or biological destruction. Mechanical homogenization of fruiting bodies using an immersion blender in tandem with a ball mill was shown to be effective and led to destruction of at least 85% of asci and release of spores. Also, the first approach we applied was the biological method of spore activation performed by African and grape snails. As a result of digestion of truffle fruiting bodies, the spores not only lost their protective shells, but also changed their morphology, which promoted their germination . The spores obtained using these two methods are capable of forming mycelial hyphae on nutrient media. The results of our study can be used to prepare inoculum of spp. and to obtain their pure cultures in agriculture.
众所周知,野生松露的数量正在减少。本研究的目的是开发一种有效、简单且经济实惠的方法来破坏子囊以释放黑松露孢子。结果表明,可以通过不同方式实现孢子释放,例如机械或生物破坏。使用 immersion blender 与球磨机串联对子实体进行机械匀浆被证明是有效的,可导致至少 85% 的子囊被破坏并释放孢子。此外,我们应用的第一种方法是由非洲蜗牛和葡萄蜗牛进行的孢子激活生物学方法。由于松露子实体被消化,孢子不仅失去了它们的保护壳,而且还改变了形态,这促进了它们的萌发。使用这两种方法获得的孢子能够在营养培养基上形成菌丝体。我们的研究结果可用于制备 spp. 的接种物并在农业中获得它们的纯培养物。