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Functional characterization of an arrestin gene on insecticide resistance of Culex pipiens pallens

BACKGROUND: Continuous and excessive application of insecticides has resulted in the rapid development of insecticide resistance in several mosquito species, including Culex pipiens pallens. Previous studies in our laboratory found that arrestin gene expression was higher in the deltamethrin-resista...

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Autores principales: Sun, Yan, Zou, Ping, Yu, Xin-You, Chen, Chen, Yu, Jing, Shi, Lin-Na, Hong, Shan-Chao, Zhou, Dan, Chang, Xue-Lian, Wang, Wei-Jie, Shen, Bo, Zhang, Dong-Hui, Ma, Lei, Zhu, Chang-Liang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3425237/
https://www.ncbi.nlm.nih.gov/pubmed/22768923
http://dx.doi.org/10.1186/1756-3305-5-134
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author Sun, Yan
Zou, Ping
Yu, Xin-You
Chen, Chen
Yu, Jing
Shi, Lin-Na
Hong, Shan-Chao
Zhou, Dan
Chang, Xue-Lian
Wang, Wei-Jie
Shen, Bo
Zhang, Dong-Hui
Ma, Lei
Zhu, Chang-Liang
author_facet Sun, Yan
Zou, Ping
Yu, Xin-You
Chen, Chen
Yu, Jing
Shi, Lin-Na
Hong, Shan-Chao
Zhou, Dan
Chang, Xue-Lian
Wang, Wei-Jie
Shen, Bo
Zhang, Dong-Hui
Ma, Lei
Zhu, Chang-Liang
author_sort Sun, Yan
collection PubMed
description BACKGROUND: Continuous and excessive application of insecticides has resulted in the rapid development of insecticide resistance in several mosquito species, including Culex pipiens pallens. Previous studies in our laboratory found that arrestin gene expression was higher in the deltamethrin-resistant (DR) strain than in the deltamethrin-susceptible (DS) strain of Cx. pipiens pallens. Similarly, other studies reported that arrestin was highly expressed in permethrin-resistant Cx. quinquefasciatus and in dichlorodiphenyltrichloroethane (DDT)-resistant Drosophila melanogaster. METHODS: Full-length cDNAs of an arrestin gene were cloned from Cx. pipiens pallens via polymerase chain reaction (PCR) and rapid amplification of cDNA end (RACE). The mRNA levels of the arrestin gene in the whole life cycle of DR and DS strains of Cx. pipiens pallens were investigated via quantitative real-time PCR. In addition, the relationship between arrestin and deltamethrin (DM) resistance were identified using genetic overexpression strategies and arrestin RNAi in mosquito cells. Cell viability was analyzed with cholecystokinin octapeptide after DM treatment. Moreover, the mRNA levels of cytochrome P450 6A1 (CYP6A1) and opsin in the transfected cells and controls were analyzed. RESULTS: Complete arrestin gene sequence was cloned and expressed throughout the life cycle of Cx. pipiens pallens. Moreover, arrestin was significantly upregulated in the DR strain, compared with that in the DS strain at the egg, pupae, and adult stages. Arrestin overexpression comparably increased the mosquito cell viability, whereas arrestin knockdown by siRNA decreased mosquito cell viability with deltamethrin (DM) treatment. Meanwhile, the mRNA levels of CYP6A1 and opsin were upregulated in mosquito cells transfected with arrestin and downregulated in mosquito cells with arrestin knockdown. CONCLUSION: This study presented the first evidence that arrestin might be associated with insecticide resistance in Cx. pipiens pallens.
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spelling pubmed-34252372012-08-23 Functional characterization of an arrestin gene on insecticide resistance of Culex pipiens pallens Sun, Yan Zou, Ping Yu, Xin-You Chen, Chen Yu, Jing Shi, Lin-Na Hong, Shan-Chao Zhou, Dan Chang, Xue-Lian Wang, Wei-Jie Shen, Bo Zhang, Dong-Hui Ma, Lei Zhu, Chang-Liang Parasit Vectors Research BACKGROUND: Continuous and excessive application of insecticides has resulted in the rapid development of insecticide resistance in several mosquito species, including Culex pipiens pallens. Previous studies in our laboratory found that arrestin gene expression was higher in the deltamethrin-resistant (DR) strain than in the deltamethrin-susceptible (DS) strain of Cx. pipiens pallens. Similarly, other studies reported that arrestin was highly expressed in permethrin-resistant Cx. quinquefasciatus and in dichlorodiphenyltrichloroethane (DDT)-resistant Drosophila melanogaster. METHODS: Full-length cDNAs of an arrestin gene were cloned from Cx. pipiens pallens via polymerase chain reaction (PCR) and rapid amplification of cDNA end (RACE). The mRNA levels of the arrestin gene in the whole life cycle of DR and DS strains of Cx. pipiens pallens were investigated via quantitative real-time PCR. In addition, the relationship between arrestin and deltamethrin (DM) resistance were identified using genetic overexpression strategies and arrestin RNAi in mosquito cells. Cell viability was analyzed with cholecystokinin octapeptide after DM treatment. Moreover, the mRNA levels of cytochrome P450 6A1 (CYP6A1) and opsin in the transfected cells and controls were analyzed. RESULTS: Complete arrestin gene sequence was cloned and expressed throughout the life cycle of Cx. pipiens pallens. Moreover, arrestin was significantly upregulated in the DR strain, compared with that in the DS strain at the egg, pupae, and adult stages. Arrestin overexpression comparably increased the mosquito cell viability, whereas arrestin knockdown by siRNA decreased mosquito cell viability with deltamethrin (DM) treatment. Meanwhile, the mRNA levels of CYP6A1 and opsin were upregulated in mosquito cells transfected with arrestin and downregulated in mosquito cells with arrestin knockdown. CONCLUSION: This study presented the first evidence that arrestin might be associated with insecticide resistance in Cx. pipiens pallens. BioMed Central 2012-07-06 /pmc/articles/PMC3425237/ /pubmed/22768923 http://dx.doi.org/10.1186/1756-3305-5-134 Text en Copyright ©2012 Sun et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Sun, Yan
Zou, Ping
Yu, Xin-You
Chen, Chen
Yu, Jing
Shi, Lin-Na
Hong, Shan-Chao
Zhou, Dan
Chang, Xue-Lian
Wang, Wei-Jie
Shen, Bo
Zhang, Dong-Hui
Ma, Lei
Zhu, Chang-Liang
Functional characterization of an arrestin gene on insecticide resistance of Culex pipiens pallens
title Functional characterization of an arrestin gene on insecticide resistance of Culex pipiens pallens
title_full Functional characterization of an arrestin gene on insecticide resistance of Culex pipiens pallens
title_fullStr Functional characterization of an arrestin gene on insecticide resistance of Culex pipiens pallens
title_full_unstemmed Functional characterization of an arrestin gene on insecticide resistance of Culex pipiens pallens
title_short Functional characterization of an arrestin gene on insecticide resistance of Culex pipiens pallens
title_sort functional characterization of an arrestin gene on insecticide resistance of culex pipiens pallens
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3425237/
https://www.ncbi.nlm.nih.gov/pubmed/22768923
http://dx.doi.org/10.1186/1756-3305-5-134
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