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Exo-metabolome of some fungal isolates growing on cork-based medium

机译:在基于软木塞的培养基上生长的某些真菌分离株的外代谢

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Fungal species colonize the cork slabs during the manufacturing of cork stoppers process. The most important fungal species that colonizes cork slabs immediately after boiling is Chrysonilia sitophila. Other fungal species may germinate replacing the C. sitophila mycelium on the cork slabs when the slabs’ water activity decreases below 0.9. The possible production of exo-metabolites or volatile compounds by some fungal species during the post-boiling stage was verified in pure cultures using three different media compositions. The results suggest that no deleterious exo-metabolites or mycotoxins are produced by the studied fungal species, both in cork medium or in cork medium added with C. sitophila extracts. However, the addition of C. sitophila extract to the cork medium enhanced the growth of the other studied fungal isolates and altered the respective exo-metabolome profile, leading to the assumption that in their natural habitat, the late cork colonizers like Penicillium spp. and Aspergilus spp. could take advantage from an earlier C. sitophila development as a result of its metabolism and/or mycelium remains. Fungal successions may thus not only be a function of time and substrate, but also they can be dependent of the remains of former colonizers. In fact, the production of the exo-metabolites by the studied fungal isolates suggests that, under the used experimental conditions, they appear to play an important role in fungal interactions amongst the cork mycoflora.
机译:在制造软木塞过程中,真菌物种会在软木板上定居。煮沸后立即在软木板上定殖的最重要的真菌物种是小Ch。当软木板的水分活度降低到0.9以下时,其他真菌物种可能会发芽,从而取代软木板上的嗜果念珠菌菌丝体。使用三种不同的培养基成分,在纯培养物中验证了某些真菌在沸腾后阶段可能产生外代谢物或挥发性化合物。结果表明,所研究的真菌种类在软木培养基或添加了嗜果念珠菌提取物的软木培养基中均未产生有害的异代谢物或霉菌毒素。然而,向软木塞培养基中添加嗜果念珠菌提取物可促进其他研究真菌分离株的生长,并改变各自的外代谢组谱,从而导致人们认为,在其自然栖息地中,晚期的软木定居者如青霉属。和曲霉属。由于其新陈代谢和/或菌丝体残留,可利用较早的梭状芽胞杆菌发育的优势。因此,真菌演替不仅可能是时间和底物的函数,而且还可能取决于以前的殖民者的遗存。实际上,所研究的真菌分离物产生外代谢物表明,在使用的实验条件下,它们似乎在软木枝菌群之间的真菌相互作用中起重要作用。

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