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三种环境条件对致倦库蚊中细胞色素P450单加氧酶介导的氯菊酯抗性适应性的影响。

The effect of three environmental conditions on the fitness of cytochrome P450 monooxygenase-mediated permethrin resistance in Culex pipiens quinquefasciatus.

作者信息

Hardstone Melissa C, Lazzaro Brian P, Scott Jeffrey G

机构信息

Department of Entomology, Comstock Hall, Cornell University, Ithaca, NY, USA.

出版信息

BMC Evol Biol. 2009 Feb 19;9:42. doi: 10.1186/1471-2148-9-42.

Abstract

BACKGROUND

The evolution of insecticide resistance and persistence of resistance phenotypes are influenced by the fitness of resistance alleles in the absence of insecticide pressure. Experimental determination of fitness is difficult, but fitness can be inferred by measuring changes in allele frequencies in appropriate environments. We conducted allele competition experiments by crossing two highly related strains of Culex pipiens quinquefasciatus mosquitoes. One strain (ISOP450) was permethrin resistant (due to P450-mediated detoxification) and one was a susceptible strain. Allele and genotype frequencies were examined for 12 generations under three environmental conditions: standard laboratory, temephos exposure (an insecticide to which the P450 detoxification mechanism in ISOP450 confers no resistance and which is commonly used in mosquito control programs) and cold temperature stress (mimics the colder temperatures within the habitat of this mosquito).

RESULTS

A fitness cost was inferred for the P450 mechanism in the standard laboratory environment. A greater cost was associated with the temephos exposed environment, suggesting the temephos placed an additional stress on the P450 resistant mosquitoes. No observed cost was associated with the P450 resistance locus in the cold temperature environment, but there was a significant heterozygote advantage. In all environments the fitness of the resistant homozygotes was the lowest.

CONCLUSION

The cytochrome P450-mediated permethrin detoxification resistance in Cx. p. quinquefasciatus can have an associated fitness cost in the absence of permethrin, relative to a susceptible allele. The strength of the cost varies depending on the environmental conditions. P450-mediated resistance is expected to decrease over time if the permethrin application is relaxed and to decrease at an even faster rate if permethrin is replaced with temephos. Additionally, these results indicate that a P450 resistance allele can persist (especially in heterozygotes) in colder temperatures and could potentially be carried into the Culex pipiens hybrid zone.

摘要

背景

在没有杀虫剂压力的情况下,抗药性等位基因的适合度会影响杀虫剂抗性的进化以及抗性表型的持久性。适合度的实验测定很困难,但可以通过测量合适环境中等位基因频率的变化来推断。我们通过让两种高度相关的致倦库蚊品系杂交进行了等位基因竞争实验。一个品系(ISOP450)对氯菊酯具有抗性(由于P450介导的解毒作用),另一个是敏感品系。在三种环境条件下对12代的等位基因和基因型频率进行了检测:标准实验室环境、暴露于双硫磷(一种ISOP450中的P450解毒机制对其无抗性且常用于蚊虫控制项目的杀虫剂)以及低温胁迫(模拟该蚊虫栖息地内较冷的温度)。

结果

在标准实验室环境中推断出P450机制存在适合度代价。与暴露于双硫磷的环境相关的代价更大,这表明双硫磷给P450抗性蚊子带来了额外的压力。在低温环境中未观察到与P450抗性位点相关的代价,但存在显著的杂合子优势。在所有环境中,抗性纯合子的适合度最低。

结论

相对于敏感等位基因,致倦库蚊中细胞色素P450介导的氯菊酯解毒抗性在没有氯菊酯的情况下可能会有相关的适合度代价。代价的强度因环境条件而异。如果放松氯菊酯的使用,预计P450介导的抗性会随时间下降;如果用双硫磷替代氯菊酯,抗性下降的速度会更快。此外,这些结果表明,P450抗性等位基因在较冷的温度下可以持续存在(尤其是在杂合子中),并且有可能被带入致倦库蚊杂交区。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83e0/2661048/0e032f2a27e7/1471-2148-9-42-1.jpg

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