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2025. Т. 130. Вып. 2.
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2025. Т. 130. Вып. 2.

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10.55959/MSU0027-1403-BB-2025-130-2-29-40

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Ярмеева М.М., Белосохов А.Ф., Еланский А.С., Чудинова Е.М., Кокаева Л.Ю., Балабко П.Н., Еланский С.Н.

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болезни картофеля, болезни томата, фитопатогены, базидиомицеты

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Ярмеева М.М., Белосохов А.Ф., Еланский А.С., Чудинова Е.М., Кокаева Л.Ю., Балабко П.Н., Еланский С.Н. , Базидиомицеты, изолируемые с растений картофеля и томата // Бюл. МОИП. Отд. биол. 2025. Т. 130. Вып. 2. С. 29-40

Базидиомицеты, изолируемые с растений картофеля и томата

Среди патогенов картофеля и томата встречаются грибы из различных таксономических групп, но в Европе и Азии базидиомицеты представлены только Rhizoctonia spp. и Agroathelia rolfsii (=Sclerotium rolfsii). Проведен анализ видовой принадлежности и патогенности штаммов базидиомицетов, выделенных из растений картофеля и томата. Выделены штаммы 10 видов: Fomitopsis subpinicola, Bjerkandera adusta и Phlebia tremellosa из пробирочных растений картофеля; Flammulina rossica, Athelia epiphylla и Sistotrema brinkmannii из клубней картофеля; Irpex lacteus, Irpex latemarginatus и Phanerochaete chrysosporium из пораженных плодов томата, Pseudozyma flocculosa из пораженных листьев томата, B. adusta из филлопланы здорового листа томата. Патогенность в отношении томата проявили только штаммы, выделенные из плодов томата (I. lacteus, I. latemarginatus, P. chrysosporium). Штаммы B. adusta и P. flocculosa не проявили патогенности против целых или поврежденных плодов томата и клубней картофеля.

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Список литературы

  • Abdulsalam R.A., Ijabadeniyi O.A.Cason E.D., Sabiu S. Characterization of microbial diversity of two tomato cultivars through targeted next-generation sequencing 16S rRNA and ITS Techniques // Microorganisms. 2023. Vol. 11. 2337 (https://doi.org/10.3390/microorganisms11092337)
  • Adair S., Kim S. H., Breuil C. A molecular approach for early monitoring of decay basidiomycetes in wood chips // FEMS Microbiology Letters. 2002. Vol. 211 (1). P. 117–122 (https://doi. org/10.1111/j.1574-6968.2002.tb11212.x)
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  • Feng X., Li S.P., Lu Y.F., Zhang J.J., Zhu Y.Y., Li Y., Yang H.J., He X.H. Bjerkandera adusta M1 inhibits the growth of Fusarium oxysporum f. sp. conglutinans and fusarium wilt incidence in Brassica napus L. // J Plant Pathol. 2021. Vol. 103 (https://doi.org/10.21203/ rs.2.18233/v1).
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  • Hammami W., Quiroga Castro C., Remus-Borel W., Labbe C., Belanger R. R. Ecological Basis of the Interaction between Pseudozyma flocculosa and Powdery Mildew Fungi. Applied and environmental microbiology. 2011. Vol. 77. P. 926–933 (https://doi.org/10.1128/ AEM.01255-10).
  • Howard C. M., Conway K.E., Albregts E.E. A stem rot of bean seedlings caused by a sterile fungus in Florida // Phytopathology.1977. Vol. 67. Р. 430 (https://doi.org/10.1094/ Phyto-67-430).
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  • Kochkina G.A., Ivanushkina N.E., Lupachev A.V., Starodumova I.P., Vasilenko O.V., Ozerskaya S.M. Diversity of mycelial fungi in natural and human-affected Antarctic soils // Polar Biology. 2019. Vol. 42 P. 47–64 (https://doi.org/10.1007/s00300-018-2398-y).
  • Kokaeva L.Yu., Berezov Yu.I., Chudinova E.M., Elansky S.N. Analysis of fungal diversity on Solanum dulcamara and S. tuberosum leaves by sequencing of cloned PCR-amplified its rDNA / PPO-Special Report, Wageningen Netherlands. 2018. Vol. 18. P. 217–222.
  • Kokaev a L., Chudinova E., Berezov A., Yarmeeva M., Balabko P., Belosokhov A., Elansky S. Fungal diversity in tomato (Solanum lycopersicum) leaves and fruits in Russia // J. of Central European Agriculture. 2020. Vol. 21 (4). P. 809–816 (https://doi.org/10.5513/JCEA01/21.4.2869).
  • Kumar S., Stecher G., Li M., Knyaz C., Tamura K. MEGA X: Molecular evolutionary genetics analysis across computing platforms // Mol. Biol. Evol. 2018. Vol. 35. P. 1547–1549 (https://doi.org/10.1093/molbev/msy096).
  • Larsen M. J., Jurgensen M. F., Harvey A. E. Athelia epiphylla associated with colonization of subalpine fir foliage under psychrophilic conditions // Mycologia. 1981. Vol. 73 (6). P. 1195–1202 (https://doi.org/10.1080/00275514.198 1.12021456).
  • Lee S.O., Kim H.Y., Choi G.J., Lee H.B., Jang K.S., Choi Y.H., Kim J.-C. Mycofumigation with Oxyporus latemarginatus EF069 for control of postharvest apple decay and Rhizoctonia root rot on moth orchid // J. Applied Microbiology. 2009. Vol. 106. P. 1213–1219 (https://doi. org/10.1111/j.1365-2672.2008.04087.x).
  • Liu S., Han M.L., Xu T.M., Wang Y., Wu D.M., &Cui B.K. Taxonomy and phylogeny of the Fomitopsis pinicola complex with descriptions of six new species from east Asia. Frontiers in Microbiology. 2021. Vol. 12 (https://doi. org/10.3389/fmicb.2021.644979).
  • Liu S.L., Wang X.W., Li G.J., et al. Fungal diversity notes 1717–1817: Taxonomic and phylogenetic contributions on genera and species of fungal taxa // Fungal Diversity, 2024. Vol. 124 (1). P. 1–216 (https://doi.org/10.1007/ s13225-023-00529-0)
  • Liu S., Chen Y. Y., Sun Y. F., He X. L., Song C. G., Si J., Liu D.-M., Gates G., Cui B.K. Systematic classification and phylogenetic relationships of the brown-rot fungi within the Polyporales // Fungal diversity, 2023. Vol. 118 (1). P. 1–94 (https://doi.org/10.1007/s13225022-00511-2).
  • Liu S., Han M.L., Xu T.M., Wang Y., Wu D.M., Cui B.K. Taxonomy and phylogeny of the Fomitopsis pinicola complex with descriptions of six new species from east Asia // Frontiers in Microbiology. 2021. Vol. 12. 644979 (https://doi.org/10.3389/fmicb.2021.644979).
  • Nakashima K.I, Tomida J., Hirai T., Kawamura Y., Inoue M. Sesquiterpenes with new carbon skeletons from the basidiomycete Phlebia tremellosa. Journal of Natural Medicines. 2019. Vol. 73 (3). P. 480–486 (https://doi. org/10.1007/s11418-019-01286-8).
  • Nakasone K.K. Cultural studies and identification of wood-inhabiting Corticiaceae and selected Hymenomycetes from North America. Mycologia memoir, 1990. 15 pp.
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