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1.
Pestic Biochem Physiol ; 173: 104781, 2021 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-33771260

RESUMEN

Metabolic resistance to chemical insecticides implies a greater capacity to detoxify insecticides due to an increase in the expression of genes and/or in the activity of enzymes related to detoxification metabolism. The insect integument is known to participate as the cuticular penetration factor of resistance, but recently this tissue was also linked with metabolic resistance due to P450-dependent detoxification in the Chagas disease vector Triatoma infestans. The objectives of this study were i) to name and classify all P450s known to date in T. infestans, ii) to characterise one of them, CYP4PR1, representing the first member of a new cytochrome P450 subfamily described in insects, and iii) to investigate the potential role of CYP4PR1 in metabolic resistance to deltamethrin in T. infestans. We found that CYP4PR1 is expressed almost exclusively in the integument tissue, and its expression was not induced by deltamethrin. Knockdown of CYP4PR1 by RNA interference in pyrethroid-resistant nymphs caused a significant increment in insect mortality after topical application of two different doses of deltamethrin. These results support the role of the integument on metabolic resistance and suggest that CYP4PR1 might contribute to resistance in integument tissue of T. infestans.


Asunto(s)
Insecticidas , Piretrinas , Triatoma , Animales , Sistema Enzimático del Citocromo P-450/genética , Resistencia a los Insecticidas/genética , Insecticidas/farmacología , Nitrilos/farmacología , Piretrinas/farmacología , Triatoma/genética
2.
Sci Rep ; 8(1): 10177, 2018 07 05.
Artículo en Inglés | MEDLINE | ID: mdl-29976934

RESUMEN

Insect resistance to chemical insecticides is attributed to a combination of different mechanisms, such as metabolic resistance, knockdown resistance, and the cuticular resistance or penetration factor. The insect integument offers an efficient barrier against contact insecticides and its role as penetration factor has been previously reported; however, there is no information about its potential function in the metabolic resistance. Cytochrome P450 genes (CYP) are highly expressed in the fat body of several insects and thus play a key role in their metabolic resistance. Here, we describe new members that belong to the highly genome-wide expanded CYP3093A and CYP4EM subfamilies in the Chagas disease vectors Rhodnius prolixus and Triatoma infestans. We modeled the docking of deltamethrin in their active site and detected differences in some amino acids between both species that are critical for a correct interaction with the substrate. We also knocked down the two constitutively most expressed genes in the integument of resistant T. infestans nymphs (CYP3093A11 and CYP4EM10) in order to find clues on their participation in deltamethrin resistance. This is the first report on the role of the insect integument in detoxification events; although these two CYP genes do not fully explain the resistance observed in T. infestans.


Asunto(s)
Sistema Enzimático del Citocromo P-450/genética , Proteínas de Insectos/genética , Insectos Vectores/genética , Insecticidas/farmacocinética , Integumento Común/fisiología , Nitrilos/farmacocinética , Piretrinas/farmacocinética , Triatoma/genética , Animales , Enfermedad de Chagas/patología , Enfermedad de Chagas/prevención & control , Enfermedad de Chagas/transmisión , Sistema Enzimático del Citocromo P-450/metabolismo , Genes de Insecto/genética , Inactivación Metabólica/genética , Proteínas de Insectos/metabolismo , Insectos Vectores/metabolismo , Insectos Vectores/parasitología , Resistencia a los Insecticidas/genética , Insecticidas/química , Simulación del Acoplamiento Molecular , Nitrilos/química , Ninfa , Filogenia , Piretrinas/química , Rhodnius/genética , Rhodnius/metabolismo , Rhodnius/parasitología , Triatoma/metabolismo , Triatoma/parasitología , Trypanosoma cruzi/patogenicidad
3.
J Med Entomol ; 54(6): 1531-1542, 2017 11 07.
Artículo en Inglés | MEDLINE | ID: mdl-29029205

RESUMEN

The insect integument, formed by the cuticle and the underlying epidermis, is essential for insect fitness, regulation of lipid biosynthesis and storage, insect growth and feeding, together with development progress. Its participation in insecticide resistance has also been outlined. Triatoma infestans Klug (Hemiptera: Reduviidae) is one of the major vectors of Chagas disease in South America; however, genomic data are scarce. In this study, we performed a transcriptome analysis of the nymph integument in order to identify which genes are expressed and their putative role. Using the 454 GS-FLX sequencing platform, we obtained approximately 144,620 reads from the integument tissue. These reads were assembled into 6,495 isotigs and 8,504 singletons. Based on BLAST similarity searches, about 8,000 transcripts were annotated with known genes, conserved domains, and/or Gene Ontology terms.The most abundant transcripts corresponded to transcription factors and nucleic acid metabolism, membrane receptors, cell signaling, and proteins related to cytoskeleton, transport, and cell energy processes, among others. More than 10% of the transcripts-encoded proteins putatively involved in the metabolism of fatty acids and related components (fatty acid synthases, elongases, desaturases, fatty alcohol reductases), structural integument proteins, and the insecticide detoxification system (among them, cytochrome P450s, esterases, and glutathione transferases). Real-time qPCR assays were used to investigate their putative participation in the resistance mechanism. This preliminary study is the first transcriptome analysis of a triatomine integument, and together with prior biochemical information, will help further understandthe role of the integument in a wide array of mechanisms.


Asunto(s)
Triatoma/metabolismo , Animales , Perfilación de la Expresión Génica , Resistencia a los Insecticidas/genética , Metabolismo de los Lípidos , Triatoma/genética
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