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首页> 外文期刊>Pesticide Biochemistry and Physiology >Seasonal dynamics of insecticide resistance, multiple resistance, and morphometric variation in field populations of Culex pipiens
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Seasonal dynamics of insecticide resistance, multiple resistance, and morphometric variation in field populations of Culex pipiens

机译:淡色库蚊田间种群的杀虫剂抗性,多重抗性和形态变化的季节性动态

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Resistance to insecticides that impairs nervous transmission has been widely investigated in mosquito populations as insecticides are crucial to effective insect control. The development of insecticide resistance is also of special interest to evolutionary biologists since it represents the opportunity to observe the genetic consequences of a well-characterized alteration in the environment. Although the frequencies of resistance alleles in Culex pipiens populations against different groups of insecticides have been reported, no detailed information is available on the relative change in these allele frequencies over time. In this study, we collected mosquitoes of the Cx. pipiens complex from six locations in three seasons in the Aegean region of Turkey and examined the i) seasonal variations in resistance to four different chemical classes of insecticides, ii) seasonal fluctuations in frequencies of resistance-associated target-site mutations of the three genes (ace-1, kdr, and Rdl), and iii) potential seasonal variations in wing morphometric characters that may be modified in resistant mosquitoes. Our bioassay results indicated the presence of different levels of resistance to all tested insecticides for all three seasons in all locations. The results of the PCR-based molecular analysis revealed low frequencies of mutations in ace-1 and Rdl that are associated with resistance to malathion, bendiocarb, and dieldrin and no obvious seasonal changes. In contrast, we detected high frequencies and striking seasonal changes for two kdr mutations associated with resistance to DDT and pyrethroids. In addition, the evaluation of the field populations from all seasons in terms of the combinations of polymorphisms at four resistance-associated mutations did not reveal the presence of insects that are resistant to all pesticides. Results from the morphological analysis displayed a similar pattern for both wings and did not show a clear separation among the samples from the three different seasons. The results of this study have advanced our knowledge of the potential dynamics of insecticide resistance among populations of the Cx pipiens complex. The implications of these results to the understanding of the evolution of insecticide resistance and the management of resistance in mosquitoes are discussed. (C) 2015 Elsevier Inc. All rights reserved.
机译:在蚊子种群中,已经广泛研究了对破坏神经传播的杀虫剂的抵抗力,因为杀虫剂对于有效控制昆虫至关重要。进化生物学家也特别关注杀虫剂抗性的发展,因为它代表了观察环境中特征鲜明的遗传结果的机会。尽管已报告了淡色库蚊种群对不同杀虫剂的抗性等位基因频率,但尚无关于这些等位基因频率随时间的相对变化的详细信息。在这项研究中,我们收集了Cx的蚊子。来自土耳其爱琴海地区三个季节的六个地点的pipiens配合物,并检查了i)对四种不同化学杀虫剂的抗性的季节性变化,ii)三个基因的与抗性相关的靶点突变频率的季节性波动( ace-1,kdr和Rdl),以及iii)机翼形态特征的潜在季节性变化,可以在抗性蚊子中进行修改。我们的生物测定结果表明,在所有地点的所有三个季节中,对所有测试的杀虫剂均具有不同水平的抗药性。基于PCR的分子分析结果显示,ace-1和Rdl突变的频率较低,与马拉硫磷,苯达威威和狄氏剂的抗性相关,并且没有明显的季节性变化。相比之下,我们检测到与抗滴滴涕和拟除虫菊酯相关的两个kdr突变的频率较高且发生了明显的季节性变化。此外,根据四个抗性相关突变的多态性组合对所有季节的田间种群进行评估,并未发现存在对所有农药均具有抗性的昆虫。形态分析的结果显示两个翅膀的模式相似,并且三个季节不同的样品之间没有明显的分离。这项研究的结果已经使我们了解了Cx pipiens复合体种群之间潜在的杀虫剂抗性动态。讨论了这些结果对理解杀虫剂抗药性和蚊子抗药性的意义。 (C)2015 Elsevier Inc.保留所有权利。

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