FIRST REPORT ON TRUFFLE-INHABITING FUNGI AND METAGENOMIC COMMUNITIES OF TUBER AESTIVUM COLLECTED IN RUSSIA
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Published:2024-03-15
Issue:1
Volume:12
Page:16-35
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ISSN:2320-8694
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Container-title:Journal of Experimental Biology and Agricultural Sciences
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language:
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Short-container-title:J Exp Bio & Ag Sci
Author:
Malygina Ekaterina V.ORCID, Imidoeva Natalia A.ORCID, Morgunova Maria M.ORCID, Dmitrieva Maria E.ORCID, Belyshenko Alexander Y.ORCID, Vlasova Anfisa A.ORCID, Shelkovnikova Victoria N.ORCID, Telnova Tamara Y.ORCID, Konovalov Alexander S.ORCID, Axenov-Gribanov Denis V.ORCID
Abstract
Truffles are one of the least studied groups of fungi in terms of their biological and biotechnological aspects. This study aimed to isolate truffle-inhabiting fungi and assess the metagenomic communities of the most common Russian summer truffle, Tuber aestivum. This study is the first to characterize the biodiversity of prokaryotic and eukaryotic organisms living in the truffle T. aestivum using molecular analysis and sequencing. Plant pathogens involved in a symbiotic relationship with truffles were identified by sequencing the hypervariable fragments of the 16S rRNA and 18S rRNA genes. In addition, some strains of fungal symbionts and likely pathogens were isolated and recognized for the first time from the truffles. This study also compared and characterized the general diversity and distribution of microbial taxa of T. aestivum collected in Russia and Europe. The results revealed that the Russian and European truffle study materials demonstrated high similarity. In addition to the truffles, representatives of bacteria, fungi, and protists were found in the fruiting bodies. Many of these prokaryotic and eukaryotic species inhabiting truffles might influence them, help them form mycorrhizae with trees, and regulate biological processes. Thus, truffles are interesting and promising sources for modern biotechnological and agricultural studies.
Publisher
Journal of Experimental Biology and Agricultural Sciences
Reference56 articles.
1. Allen, K., & Bennett, J.W. (2021). Tour of truffles: aromas, aphrodisiacs, adaptogens, and more. Mycobiology, 49 (3).https://doi.org/10.1080/12298093.2021.1936766 2. Araújo, R.C., Rodrigues, F.A., Nadal, M.C., Ribeiro, M.S., Antônio, C.A., et al. (2021). Acclimatization of Musa spp. seedlings using endophytic Bacillus spp. and Buttiauxellaagrestis strains. Microbiological Research, 248, 126750. https://doi.org/10.1016/j.micres.2021.126750 3. Barou, V., Rincón, A., Calvet, C., Camprubí, A., & Parladé, J. (2023). Aromatic plants and their associated arbuscular mycorrhizal fungi outcompete Tuber melanosporum in compatibility assays with truffle-oaks. Biology, 12 (4), 628. https://doi.org/10.3390/biology12040628 4. Bragato, G., Fornasier, F., Bagi, I., Egli, S., & Marjanović, Ž. (2021). Soil parameters explain short-distance variation in production of Tuber aestivum Vittad. in an oak plantation in the Central-Northern part of the great Hungarianplain (Jászság Region, Hungary). Forest Ecology of Management, 479, 118578. https://doi.org/10.1016/j.foreco.2020.118578 5. Dahal, R.H., Chaudhary, D.K., Kim, D.U., Pandey, R.P., & Kim, J. (2021). Chryseobacterium antibioticum sp. nov. with antimicrobial activity against Gram-negative bacteria, isolated from arctic soil. The Journal of Antibiotics, 74 (2), 115–123.https://doi.org/10.1038/s41429-020-00367-1
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