Aspectos biológicos e potencial de Lasioseius barbensiensis Faraji & Kang (Acari: Blattisociidae) como agente de controle biológico e resistência de híbridos de coqueiro à Raoiella indica Hirst (Acari: Tenuipalpidae)

This dissertation investigates the potential of Lasioseius barbensiensis Faraji & Kang (Acari: Blattisociidae) as a biological control agent of phytophagous mites associated with coconut palms (Cocos nucifera L.), as well as the susceptibility of different coconut hybrids to the red palm mite, R...

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Detalles Bibliográficos
Autor: Vasconcelos, Jéssica Fontes
Tipo de recurso: tesis doctoral
Estado:Versión publicada
Fecha de publicación:2025
País:Brasil
Institución:Universidade Federal de Sergipe (UFS)
Repositorio:Repositório Institucional da UFS
Idioma:portugués
OAI Identifier:oai:oai:ri.ufs.br:repo_01:riufs/23394
Acceso en línea:https://ri.ufs.br/jspui/handle/riufs/23394
Access Level:acceso abierto
Palabra clave:Agrobiodiversidade
Ácaro no controle biológico de pragas
Coqueiro
Lasioseius barbensiensis Faraji & Kang
Antibiose
Ácaros predadores
Criação massal
Dinâmica populacional
Manejo integrado de artrópodes fitófagos
Parâmetros demográficos
Resistência genética
Variação sazonal
Antibiosis
Predatory mites
Mass rearing
Population dynamics
Integrated management of phytophagous arthropods
Demographic parameters
Genetic resistance
Seasonal variation
CIENCIAS AGRARIAS
Descripción
Sumario:This dissertation investigates the potential of Lasioseius barbensiensis Faraji & Kang (Acari: Blattisociidae) as a biological control agent of phytophagous mites associated with coconut palms (Cocos nucifera L.), as well as the susceptibility of different coconut hybrids to the red palm mite, Raoiella indica Hirst (Acari: Tenuipalpidae). Initially, studies were conducted to determine the feeding preference and biological parameters of L. barbensiensis when fed on different developmental stages of the mite Tyrophagus putrescentiae (Acari: Acaridae). The results indicated a clear preference for eggs and larvae, which led to higher oviposition rates and egg viability. Life table analysis revealed an average pre-adult development time of 8.5 days, a mean fecundity of 32.38 eggs per female, and an intrinsic rate of population increase (rₘ) of 0.1757, indicating the feasibility of mass rearing. Subsequently, the predatory capacity of L. barbensiensis was evaluated against two phytophagous mite species of coconut: Aceria guerreronis (Acari: Eriophyidae) and R. indica. Choice and no-choice tests showed that the predator consumed significantly more R. indica eggs and A. guerreronis adults than R. indica adults, demonstrating a preference for smaller prey and highlighting its potential as a biological control agent for both species. Finally, the susceptibility of 15 experimental coconut hybrids and one commercial hybrid (PB141) to R. indica was assessed under field and laboratory conditions. In the field, hybrids 1, 6, and 9 exhibited lower infestation levels across all mite stages, suggesting potential resistance. In laboratory conditions, hybrid 6 displayed the lowest instantaneous population growth rate (ri = 0.106), indicating an antibiosis effect. In contrast, hybrids 14 and 15 supported the highest mite population densities, classifying them as susceptible. In conclusion, L. barbensiensis exhibits favorable biological traits for the control of phytophagous mites in coconut cultivation, and the selection of resistant hybrids may constitute an effective strategy for the integrated management of R. indica. The integration of biological control agents with resistant genotypes represents a promising approach for the sustainable management of coconut crops.