Cytochrome P450 Genes of the CYP4 Clan and Pyrethroid Resistance in Chagas Disease Vectors
Triatomine insects are vectors of the protozoan Trypanosoma cruzi , the causative agent of Chagas disease. Although residual pyrethroid spraying has been a successful vector control strategy for many years, a growing number of pyrethroid-resistance foci is being documented, mainly in Triatoma infest...
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Published in: | Frontiers in tropical diseases Vol. 3 |
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Abstract | Triatomine insects are vectors of the protozoan
Trypanosoma cruzi
, the causative agent of Chagas disease. Although residual pyrethroid spraying has been a successful vector control strategy for many years, a growing number of pyrethroid-resistance foci is being documented, mainly in
Triatoma infestans
, that led to failures in vector elimination. Insecticide resistance is a multifactorial phenomenon that often implies a combination of three different mechanisms: increased insecticide detoxification, reduced affinity of the site of action, and reduced insecticide penetration through the cuticle. All three mechanisms were reported in pyrethroid-resistant
T. infestans
. Cytochrome P450s are enzymes involved in the metabolism of xenobiotics and endogenous chemicals. They are encoded by CYP genes and classified into different families and clans. In triatomines, the CYP4 clan is divided in two families, CYP3093 and CYP4, and both exhibit genome-wide, triatomine-specific gene expansions. Some members from each family have been reported to be involved in two of the mechanisms mentioned above, i.e., they participate in insecticide detoxification in different organs and tissues, and in the synthesis of cuticular hydrocarbons, which ultimately can contribute to a reduced insecticide penetration. The aim of this manuscript is to review the current state of knowledge of P450 genes belonging to the CYP4 clan in triatomines and to highlight their potential role in insecticide resistance. |
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AbstractList | Triatomine insects are vectors of the protozoan
Trypanosoma cruzi
, the causative agent of Chagas disease. Although residual pyrethroid spraying has been a successful vector control strategy for many years, a growing number of pyrethroid-resistance foci is being documented, mainly in
Triatoma infestans
, that led to failures in vector elimination. Insecticide resistance is a multifactorial phenomenon that often implies a combination of three different mechanisms: increased insecticide detoxification, reduced affinity of the site of action, and reduced insecticide penetration through the cuticle. All three mechanisms were reported in pyrethroid-resistant
T. infestans
. Cytochrome P450s are enzymes involved in the metabolism of xenobiotics and endogenous chemicals. They are encoded by CYP genes and classified into different families and clans. In triatomines, the CYP4 clan is divided in two families, CYP3093 and CYP4, and both exhibit genome-wide, triatomine-specific gene expansions. Some members from each family have been reported to be involved in two of the mechanisms mentioned above, i.e., they participate in insecticide detoxification in different organs and tissues, and in the synthesis of cuticular hydrocarbons, which ultimately can contribute to a reduced insecticide penetration. The aim of this manuscript is to review the current state of knowledge of P450 genes belonging to the CYP4 clan in triatomines and to highlight their potential role in insecticide resistance. |
Author | Dulbecco, Andrea B. Calderón-Fernández, Gustavo M. Pedrini, Nicolás |
Author_xml | – sequence: 1 givenname: Andrea B. surname: Dulbecco fullname: Dulbecco, Andrea B. – sequence: 2 givenname: Gustavo M. surname: Calderón-Fernández fullname: Calderón-Fernández, Gustavo M. – sequence: 3 givenname: Nicolás surname: Pedrini fullname: Pedrini, Nicolás |
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CitedBy_id | crossref_primary_10_3389_fphys_2022_1016582 crossref_primary_10_1186_s12864_022_08974_y crossref_primary_10_1016_j_actatropica_2024_107149 crossref_primary_10_1590_1806_9665_rbent_2023_0047 |
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