Academic literature on the topic 'Basidiomycet'

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Journal articles on the topic "Basidiomycet"

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Schulze, M., and M. Rühl. "Rekombinante Enzymproduktion im Basidiomycet Coprinopsis cinerea." Chemie Ingenieur Technik 90, no. 9 (2018): 1262. http://dx.doi.org/10.1002/cite.201855286.

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Auxier, Ben, Karin Scholtmeijer, Arend F. van Peer, Johan J. P. Baars, Alfons J. M. Debets, and Duur K. Aanen. "Cytoplasmic Mixing, Not Nuclear Coexistence, Can Explain Somatic Incompatibility in Basidiomycetes." Microorganisms 9, no. 6 (2021): 1248. http://dx.doi.org/10.3390/microorganisms9061248.

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Nonself recognition leading to somatic incompatibility (SI) is commonly used by mycologists to distinguish fungal individuals. Despite this, the process remains poorly understood in basidiomycetes as all current models of SI are based on genetic and molecular research in ascomycete fungi. Ascomycete fungi are mainly found in a monokaryotic stage, with a single type of haploid nuclei, and only briefly during mating do two genomes coexist in heterokaryotic cells. The sister phylum, Basidiomycota, differs in several relevant aspects. Basidiomycete fungi have an extended heterokaryotic stage, and
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Swann, Eric C., and John W. Taylor. "Phylogenetic perspectives on basidiomycete systematics: evidence from the 18S rRNA gene." Canadian Journal of Botany 73, S1 (1995): 862–68. http://dx.doi.org/10.1139/b95-332.

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Basidiomycete systematics has a history of dramatic change with the introduction of new forms of information. We present a new class level taxonomy for basidiomycetes consisting of the Urediniomycetes emend., Ustilaginomycetes, and Hymenomycetes. The primary source of characters for this analysis is the 18S rRNA gene. Other characters such as cellular carbohydrate composition, major ubiquinone system, 5S rRNA sequence, basidium morphology, and septum and spindle pole body ultrastructure are considered. Comparison of the new class system to other basidiomycete taxonomies is made. Use of 18S seq
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Nishida, Hiromi, Katsuhiko Ando, Yasuo Ando, Aiko Hirata, and Junta Sugiyama. "Mixia osmundae: transfer from the Ascomycota to the Basidiomycota based on evidence from molecules and morphology." Canadian Journal of Botany 73, S1 (1995): 660–66. http://dx.doi.org/10.1139/b95-308.

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To determine phylogenetic placement of Mixia osmundae (T. Nishida) Kramer (Mixiaceae, Protomycetales), we sequenced the nuclear small subunit ribosomal RNA (18S rRNA) gene from M. osmundae IFO-32408 and compared it with that from 4 archiascomycetes (Ascomycota) and 24 basidiomycetes. Our molecular phylogeny indicates that M. osmundae and the basidiomycetes Rhodosporidium toruloides, Leucosporidium scottii, Sporobolomyces roseus, Sporidiobolus johnsonii, Cronartium ribicola, Peridermium harknessii, and Erythrobasidium hasegawianum group together in 100% of bootstrap replicates. The M. osmundae
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Lynch, Michael D. J., and R. Greg Thorn. "Diversity of Basidiomycetes in Michigan Agricultural Soils." Applied and Environmental Microbiology 72, no. 11 (2006): 7050–56. http://dx.doi.org/10.1128/aem.00826-06.

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ABSTRACT We analyzed the communities of soil basidiomycetes in agroecosystems that differ in tillage history at the Kellogg Biological Station Long-Term Ecological Research site near Battle Creek, Michigan. The approach combined soil DNA extraction through a bead-beating method modified to increase recovery of fungal DNA, PCR amplification with basidiomycete-specific primers, cloning and restriction fragment length polymorphism screening of mixed PCR products, and sequencing of unique clones. Much greater diversity was detected than was anticipated in this habitat on the basis of culture-based
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Nakagiri, Akira, and Tadayoshi Ito. "Basidiocarp development of the cyphelloid gasteroid aquatic basidiomycetes Halocyphina villosa and Limnoperdon incarnatum." Canadian Journal of Botany 69, no. 10 (1991): 2320–27. http://dx.doi.org/10.1139/b91-292.

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Basidiocarp structure and development in the aquatic basidiomycetes Halocyphina villosa and Limnoperdon incarnatum were observed under a scanning electron microscope. Halocyphina villosa produces completely closed gasteroid basidiocarps at the early developmental stage while it shows cyphelloid hymenium distribution and ballistosporic basidiospore formation. Alternatively, the basidiocarp of L. incarnatum is cyphelloid at the initial stage but becomes closed at maturity. Basidia and basidiospores are gasteroid and nonballistosporic and are distributed on a loosely formed hymenium. These observ
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Jasalavich, Claudia A., Andrea Ostrofsky, and Jody Jellison. "Detection and Identification of Decay Fungi in Spruce Wood by Restriction Fragment Length Polymorphism Analysis of Amplified Genes Encoding rRNA." Applied and Environmental Microbiology 66, no. 11 (2000): 4725–34. http://dx.doi.org/10.1128/aem.66.11.4725-4734.2000.

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ABSTRACT We have developed a DNA-based assay to reliably detect brown rot and white rot fungi in wood at different stages of decay. DNA, isolated by a series of CTAB (cetyltrimethylammonium bromide) and organic extractions, was amplified by the PCR using published universal primers and basidiomycete-specific primers derived from ribosomal DNA sequences. We surveyed 14 species of wood-decaying basidiomycetes (brown-rot and white-rot fungi), as well as 25 species of wood-inhabiting ascomycetes (pathogens, endophytes, and saprophytes). DNA was isolated from pure cultures of these fungi and also f
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Nieuwenhuis, Bart P. S., Alfons J. M. Debets, and Duur K. Aanen. "Sexual selection in mushroom-forming basidiomycetes." Proceedings of the Royal Society B: Biological Sciences 278, no. 1702 (2010): 152–57. http://dx.doi.org/10.1098/rspb.2010.1110.

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We expect that sexual selection may play an important role in the evolution of mushroom-forming basidiomycete fungi. Although these fungi do not have separate sexes , they do play female and male roles : the acceptance and the donation of a nucleus, respectively. The primary mycelium (monokaryon) of basidiomycete fungi, growing from a germinating sexual spore, is hermaphroditic, but it loses female function upon the acceptance of a second nucleus. The resulting dikaryon with two different nuclei in each cell retains a male potential as both nuclei can fertilize receptive mycelia. We tested the
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Sudarson, Jenefar, Shenbhagaraman Ramalingam, Premalatha Kishorekumar, and Kaviyarasan Venkatesan. "Expeditious Quantification of Lignocellulolytic Enzymes from Indigenous Wood Rot and Litter Degrading Fungi from Tropical Dry Evergreen Forests of Tamil Nadu." Biotechnology Research International 2014 (February 26, 2014): 1–6. http://dx.doi.org/10.1155/2014/127848.

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In this study thirty wood rotting and litter degrading basidiomycetes were screened for the production of lignocellulolytic enzymes such as, laccase, peroxidase, and cellulase using rapid micro quantification assay. Out of the 30 indigenous isolates Trametes gibbosa was identified to be a potential lignocellulolytic enzyme producer, producing a maximum amount of cellulase (299.66±1.59 IU/L) and laccase (257.94±1.79 U/L). Moreover, it is the second leading producer of peroxidase enzyme (170.19±1.98 U/L). Tricholomopsis sp. a wood rot basidiomycete was found to be the leading lignin decomposer w
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Isikov, V. P. "Xylotrophic Basidiomycetes of protected species of woody plants of the Crimea." Plant Biology and Horticulture: theory, innovation, no. 151 (December 30, 2019): 120–31. http://dx.doi.org/10.36305/2019-2-151-120-131.

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The species composition of xylotrophic basidiomycetes on woody plants listed in Red Book of the Crimea was studied. Xylotrophic basidiomycetes were detected on 10 species of protected woody plants of the Crimea: Arbutus andrachne - 3 species, Crataegus pojarkovae - 13, Juniperus deltoides - 2, Juniperus excelsa - 7, Malus sylvestris - 9, Pinus brutia - 3, Pistacia mutica - 15, Taxus baccata - 5, Tilia dasystyla - 2, Vitex agnus-castus - 1 species. A total of 46 species were identified. All discovered species of fungi belong to 8 orders, 20 families and 39 genera of Basidiomycota division. The
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Dissertations / Theses on the topic "Basidiomycet"

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Magnago, Altielys Casale. "Estudos taxonômicos e filogenéticos de fungos boletoides (BOLETALES) no Brasil." reponame:Biblioteca Digital de Teses e Dissertações da UFRGS, 2018. http://hdl.handle.net/10183/187210.

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As regiões tropicais são consideradas importantes hotspots da biodiversidade do planeta. No entanto, o conhecimento da diversidade de fungos, incluindo os fungos boletoides nessas regiões ainda é muito limitado, e muitos estudos ainda devem ser realizados. Fungos boletoides são considerados um agrupamento morfológico não suportado filogeneticamente como monofilético. São representados por macrofungos com basidiomas epígeos, “carnudos” putrescentes, pileado-estipitados, com himenóforo tubular. Para este estudo foram utilizados materiais de herbário assim como novas coletas realizadas em várias
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Montagner, Daiane Fiuza. "CARACTERIZAÇÃO DO GÊNERO SCLERODERMA (BASIDIOMYCOTINA) ASSOCIADO A POVOAMENTOS FLORESTAIS EXÓTICOS NO BIOMA PAMPA, BRASIL." Universidade Federal de Santa Maria, 2014. http://repositorio.ufsm.br/handle/1/4874.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior<br>The genus Scleroderma Pers.: Fr. belongs to Order Boletales, Phylum Basidiomycota, and involves a group of fungi whose spore production occurs in an enclosed hymenium with passive basidiospores release. The main morphological characteristic of this genus are the size and ornamentation of the spores and mycorrhizal association with various tree species. The aim of this study is to identify Scleroderma species of Pampa biome region by using techniques of morphological analysis and molecular biology following specific methodologies. F
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Hurčíková, Andrea. "Využití odpadů z potravinářských výrob." Master's thesis, Vysoké učení technické v Brně. Fakulta chemická, 2008. http://www.nusl.cz/ntk/nusl-216361.

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The waste from agricultural and food industry are accessible in large quantity anywhere in the whole world nowadays. Most of these wastes include cellulose (30 - 40 %), hemicellulose (20 - 40 %) and lignine (10 - 20 %). Therefore these waste materials have wide use as the substrates for the microbial growth and the production of the enzymes. The microorganisms are able to use organic compounds from the wastes as the source of energy for the growth and carbon for synthesis of cellular biomass [24]. Wheat and rice straw are possible to use as the substrates for cultivation of the microorganisms
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Dutton, Martin Victor. "Oxalate metabolism in basidiomycete cultures." Thesis, University of Westminster, 1993. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.357227.

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Peters, Thilo. "Extrazelluläre Enzyme aus Basidiomyceten." [S.l. : s.n.], 2004. http://deposit.ddb.de/cgi-bin/dokserv?idn=97236191X.

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JACQMART, FLAMENT SYLVIE. "Potentiel therapeutique des basidiomycetes." Lille 2, 1997. http://www.theses.fr/1997LIL2P036.

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Polak, Eline. "Asexual sporulation in the basidiomycete Coprinus cinereus /." [S.l.] : [s.n.], 1999. http://e-collection.ethbib.ethz.ch/show?type=diss&nr=13125.

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Ramsdale, Mark. "Genomic conflict and disparity within Basidiomycete mycelia." Thesis, University of Bath, 1996. https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.362153.

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Krčmář, Martin. "Chitosan-glukanový komplex izolovaný ze Schizophyllum commune." Master's thesis, Vysoké učení technické v Brně. Fakulta chemická, 2011. http://www.nusl.cz/ntk/nusl-216803.

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Chitosan-glucan complex is fungal origin copolymer that finds application in medicine and cosmetics. Traditionally mycelium of Aspergillus and Penicillium is considered as industrial chitosan-glucan complex source, though utilization of Micromycetes in biotechnological productions is sometimes undesirable. The aim of the work was to study the possibility of Basidiomycete Schizophyllum commune submerged cultivation for industrial scale chitosan-glucan complex production use. Within the work there was studied effect of cultivation conditions (type and concentration of carbon sources in nutrient
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Wu, Shimin. "Volatile compounds generated by basidiomycetes." [S.l.] : [s.n.], 2005. http://deposit.ddb.de/cgi-bin/dokserv?idn=979488346.

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Books on the topic "Basidiomycet"

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Moser, Meinhard. Farbatlas der Basidiomyceten =: Colour atlas of basidiomycetes. G. Fischer, 1985.

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Dickhardt, Rainer. Homokaryotisierung von Basidiomyceten. A.R. Gantner, 1985.

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Vasser, Solomon Pavlovich. Catalogue of cultures: (higher Basidiomycota). International Centre for Cryptogamic Plants & Fungi, Institute of Evolution, University of Haifa, 1997.

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Die Gattung Botryobasidium DONK (Corticiaceae, Basidiomycetes). J. Cramer, 1994.

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Malysheva, V. F. Vysshie bazidiomit︠s︡ety lesnykh i lugovykh ėkosistem Zhiguleĭ. Tov-vo nauch. izd. KMK, 2008.

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Larsen, Michael J. Lindtneria thujatsugina sp. nov. (Stephanosporales, Stephanosporaceae) and notes on other resupinate basidiomycetes with ornamented basidiospores. Forest Products Laboratory, 1987.

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Ginns, J. H. The Gloeocystidiellaceae (Basidiomycota, Hericiales) of North America. J. Cramer, 1994.

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Kõljalg, Urmas. Tomentella (Basidiomycota) and related genera in temperate Eurasia. Fungiflora, 1996.

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Los políporos (Basidiomycetes) de los bosques Andino Patagónicos de Argentina =: Polypores (Basidiomycetes) from the Patagonian Andes forests of Argentina. J. Cramer, 2006.

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Álvarez, Marcos Lago. Micoflora (Basidiomycota) de los eucaliptales del NO de la Península Ibérica. Universidad del País Vasco, 2008.

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Book chapters on the topic "Basidiomycet"

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Gries, Oliver, and Thomas Ly. "Basidiomycota." In Infektologie - Kompendium humanpathogener Infektionskrankheiten und Erreger. Springer Berlin Heidelberg, 2019. http://dx.doi.org/10.1007/978-3-662-58219-0_70.

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Gooch, Jan W. "Basidiomycota." In Encyclopedic Dictionary of Polymers. Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_13238.

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Hanelt, Peter. "Basidiomycetes." In Mansfeld’s Encyclopedia of Agricultural and Horticultural Crops. Springer Berlin Heidelberg, 2001. http://dx.doi.org/10.1007/978-3-540-30442-5_6.

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Hibbett, D. S., and R. G. Thorn. "Basidiomycota: Homobasidiomycetes." In Systematics and Evolution. Springer Berlin Heidelberg, 2001. http://dx.doi.org/10.1007/978-3-662-10189-6_5.

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Bauer, Robert, and Franz Oberwinkler. "Cellular Basidiomycete–Fungus Interactions." In Plant Surface Microbiology. Springer Berlin Heidelberg, 2008. http://dx.doi.org/10.1007/978-3-540-74051-3_16.

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Erkel, Gerhard, and Timm Anke. "Products from Basidiomycetes." In Biotechnology. Wiley-VCH Verlag GmbH, 2008. http://dx.doi.org/10.1002/9783527620890.ch11.

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Helbling, A., K. A. Brander, W. E. Horner, and S. B. Lehrer. "Allergy to Basidiomycetes." In Fungal Allergy and Pathogenicity. KARGER, 2002. http://dx.doi.org/10.1159/000058861.

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Hansen, Everett M., and Richard C. Hamelin. "Population Structure of Basidiomycetes." In Structure and Dynamics of Fungal Populations. Springer Netherlands, 1999. http://dx.doi.org/10.1007/978-94-011-4423-0_11.

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Coelho, Marco A., Guus Bakkeren, Sheng Sun, Michael E. Hood, and Tatiana Giraud. "Fungal Sex: The Basidiomycota." In The Fungal Kingdom. ASM Press, 2017. http://dx.doi.org/10.1128/9781555819583.ch7.

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Schüffler, Anja. "Secondary Metabolites of Basidiomycetes." In Physiology and Genetics. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-71740-1_8.

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Conference papers on the topic "Basidiomycet"

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"Screening of Basidiomycete Yeast with Oil Production." In International Conference on Agricultural, Ecological and Medical Sciences. International Institute of Chemical, Biological & Environmental Engineering, 2014. http://dx.doi.org/10.15242/iicbe.c0214055.

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Tsivileva, О. М., А. I. Perfileva, and А. G. Pavlova. "Biopreparations for plants produced with basidiomycetes." In 2nd International Scientific Conference "Plants and Microbes: the Future of Biotechnology". PLAMIC2020 Organizing committee, 2020. http://dx.doi.org/10.28983/plamic2020.255.

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Potentialities of the mushroom-originating preparations for potato recovery are shown. The metal(II) containing composites based on the metabolites of basidiomycetes exhibits the effect of enhancing the potato resistivity to phytopathogen.
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Vetchinkina, E. P., V. Yu Gorshkov, N. E. Gogoleva, Yu V. Gogolev, and V. E. Nikitina. "Comparative analysis of transcriptomes of different morphological structures of the basidiomycete Lentinus edodes." In 2nd International Scientific Conference "Plants and Microbes: the Future of Biotechnology". PLAMIC2020 Organizing committee, 2020. http://dx.doi.org/10.28983/plamic2020.270.

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A comparative analysis of transcriptomes at the vegetative and generative stages of the development of Lentinus edodes basidiomycetes was carried out. The nature of differential gene expression was described, and the activated/repressed metabolic pathways were visualized.
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Assodiky, Hilmy, Achmad Basuki, and Fadilah Fahrul Hardiansyah. "Macro-sized basidiomycota species recognition using shape and color features." In 2016 International Electronics Symposium (IES). IEEE, 2016. http://dx.doi.org/10.1109/elecsym.2016.7861023.

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Tsivileva, О. М., T. А. Puchkova, О. V. Koftin, А. А. Aniskov, and D. N. Ibragimova. "PHYSIOLOGICAL AND BIOCHEMICAL RESPONSE OF BASIDIOMYCETES TO SEVERAL NATURAL HETEROCYCLES EXPOSURE." In The All-Russian Scientific Conference with International Participation and Schools of Young Scientists "Mechanisms of resistance of plants and microorganisms to unfavorable environmental". SIPPB SB RAS, 2018. http://dx.doi.org/10.31255/978-5-94797-319-8-799-803.

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Lung, Ming-Yeou. "In Vitro Antioxidant Properties of the Edible Basidiomycete Phellinus Igniarius by Solid-state Fermentation." In 14th Asia Pacific Confederation of Chemical Engineering Congress. Research Publishing Services, 2012. http://dx.doi.org/10.3850/978-981-07-1445-1_633.

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Kokanina, Anastasia Vladimirovna, V. Vinokurov, A. V. Barkov, and L. M. Krasnopolskaya. "Possibility Of Using Basidiomycetes For Enhancing Efficiency Of Oil-Contaminated Land Recultivation." In SPE Russian Oil and Gas Conference and Exhibition. Society of Petroleum Engineers, 2010. http://dx.doi.org/10.2118/138082-ms.

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MUNIZ, Evanir Costa, and William Rangel VASCONCELOS. "DIVERSIDADE EM FAMÍLIAS DE BASIDIOMYCOTA E ASCOMYCOTA EM ITAITUBA- PARÁ E REGIÃO." In I Semana de Iniciação Científica da FAI. Even3, 2019. http://dx.doi.org/10.29327/sicfai.145704.

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Wulandari, Meilani, Entin Martiana Kusumaningtyas, and Ali Ridho Barakbah Politeknik. "Identification of Poisonous Fungi Basidiomycota Macro Based on Mobile Device Using Neural Network." In 2018 International Electronics Symposium on Knowledge Creation and Intelligent Computing (IES-KCIC). IEEE, 2018. http://dx.doi.org/10.1109/kcic.2018.8628597.

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Topakas, Evangelos, Anastasia Zerva, and Nikolaos Tsafantakis. "Production of biocatalysts and bioactive compounds from Greek basidiomycete wild strains grown in different induction media." In 1st International Electronic Conference on Microbiology. MDPI, 2020. http://dx.doi.org/10.3390/ecm2020-07099.

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Reports on the topic "Basidiomycet"

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C.A.Reddy, PI. Structure and Biochemestry of Laccases from the Lignin-Degrading Basidiomycete, Ganoderma lucidum. Office of Scientific and Technical Information (OSTI), 2005. http://dx.doi.org/10.2172/883001.

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Parshikov, I. A., C. E. Hernandes-Luna, and E. I. Zaraisky. Microbial transformation of the antimalarial and anticancer drug artemisinin by white-rot basidiomycetes. Global Science Publications, 2018. http://dx.doi.org/10.18411/0972-3005_n4.

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Parshikov, I. A. Synthesis of Biosafe Hydroxy Derivatives of the Potentially Antitumor Drug Artemisinin by Basidiomycetes. Russian Scientific Journal, 2018. http://dx.doi.org/10.18411/1995-4417n3_2018.

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Author, Not Given. (Cloning, characterization, and expression of genes/cDNA encoding lignin peroxidases in Phanerochaete chrysosporium, a white-rot basidiomycete): Progress report, 1988--1989. Office of Scientific and Technical Information (OSTI), 1989. http://dx.doi.org/10.2172/6119239.

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