Optimization of microesclerotia production by Trichoderma asperellum.

dc.contributorGABRIEL O. LOCATELLI, RENORBIO, Recife-PE; CHRISTINE L. L. FINKLER, UNIVERSIDADE FEDERAL DE PERNAMBUCO, Vitória de Santo Antão-PE; GABRIEL MOURA MASCARIN, CNPAF; MURILLO LOBO JUNIOR, CNPAF; LUCIANO A. BUENO, UNIVERSIDADE FEDERAL DO ABC, SP.
dc.creatorLOCATELLI, G. O.
dc.creatorFINKLER, C. L. L.
dc.creatorMASCARIN, G. M.
dc.creatorLOBO JUNIOR, M.
dc.creatorBUENO, L. A.
dc.date2017-09-22T00:18:12Z
dc.date2017-09-22T00:18:12Z
dc.date2017-09-20
dc.date2017
dc.date2017-09-22T00:18:12Z
dc.date.accessioned2026-07-01T00:03:21Z
dc.descriptionThe Trichoderma genus, despite its widespread use for decades as a biological control in agriculture, has only recently been gaining a share in the biopesticide market, thanks to its versatility in controlling diseases and acting as a plant growth enhancer. Most Trichoderma's commercial products have aerial conidia as active ingredient, but recent studies report the production of another propagule, more robust for formulation and application under field conditions - the microsclerotia (MS). Thus, our objective was to evaluate the nutritional conditions that favor the greater production of MS, using two cultures of T. asperellum with known antagonistic activity. For this, we used the fractional factorial design approach in which we evaluated 5 variables: Carbon source, Carbon concentration, C:N ratio, Strain, Nitrogen source, all influencing the production of MS. The results indicated that all variables were statistically significant to MS production. In the best condition tested, we obtained values higher than 104 MS mL-1. In conclusion that the conditions found for the production of MS, using sucrose and lyscell, with carbon concentration 20 g L-1 and C:N ratio (10:1) and isolate TR 356, are inexpensive carbon and nitrogen sources may allow us to scale-up this biofungicide.
dc.identifierIn: SIMPÓSIO NACIONAL DE BIOPROCESSOS, 21.; SIMPÓSIO DE HIDRÓLISE ENZIMÁTICA DE BIOMASSA, 12., 2017, Aracajú, SE. [Anais ...]. São Paulo: Associação Brasileira de Engenharia Química, 2017.
dc.identifierhttp://www.alice.cnptia.embrapa.br/alice/handle/doc/1075966
dc.identifier.urihttp://hdl.handle.net/123456789/396394
dc.languageeng
dc.rightsopenAccess
dc.subjectTrichoderma
dc.subjectFungo
dc.subjectControle biológico
dc.subjectTrichoderma asperellum
dc.subjectBiological control
dc.subjectBiopesticides
dc.titleOptimization of microesclerotia production by Trichoderma asperellum.
dc.typeArtigo em anais e proceedings

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