Saingamsook Jassada, Yanola Jintana, Lumjuan Nongkran, Walton Catherine, Somboon Pradya
Center of Insect Vector Study, Department of Parasitology, Faculty of Medicine, Chiang Mai University, Chiang Mai 50200, Thailand.
Graduate PhD's Degree Program in Parasitology, Faculty of Medicine, Chiang Mai University, Chiang Mai 50200, Thailand.
Insects. 2019 Aug 22;10(9):265. doi: 10.3390/insects10090265.
Knockdown resistance () and detoxification enzymes are major resistance mechanisms in insecticide-resistant throughout the world. Persistence of the resistance phenotype is associated with high fitness of resistance alleles in the absence of insecticide pressure. This study determined the relative fitness cost of three insecticide-resistant strains of -PMD, PMD-R, and UPK-R-and a hybrid under similar laboratory conditions in the absence of insecticide. The PMD strain is resistant to DDT with no alleles; the PMD-R is resistant to DDT and permethrin with 1534C homozygous alleles; and UPK-R is resistant to DDT, permethrin, and deltamethrin with 989P + 1016G homozygous alleles. The DDT-resistant PMD strain had the highest fitness compared with the two DDT/pyrethroid-resistant strains (PMD-R and UPK-R) and hybrid. Consistent fitness costs were observed in the DDT/pyrethroid-resistant strains and hybrid, including shorter wing length, reduced egg hatchability, shorter female lifespan, and shorter viability of eggs after storage, whereas no effect was observed on blood feeding rate. In addition, reduced egg production was observed in the PMD-R strain and prolonged developmental time was seen in the UPK-R strain. The corresponding hybrid that is heterozygous for alleles was fitter than either of the homozygous mutant genotypes. This is in accordance with the high frequency of heterozygous genotypes observed in natural populations of in Chiang Mai city.
击倒抗性()和解毒酶是全世界抗杀虫剂昆虫的主要抗性机制。在没有杀虫剂压力的情况下,抗性表型的持续存在与抗性等位基因的高适合度相关。本研究在无杀虫剂的相似实验室条件下,测定了三种抗杀虫剂品系——-PMD、PMD-R和UPK-R以及一个杂交品系的相对适合度代价。PMD品系对滴滴涕有抗性且无等位基因;PMD-R对滴滴涕和氯菊酯有抗性,具有1534C纯合等位基因;UPK-R对滴滴涕、氯菊酯和溴氰菊酯有抗性,具有989P + 1016G纯合等位基因。与两个对滴滴涕/拟除虫菊酯有抗性的品系(PMD-R和UPK-R)以及杂交品系相比,抗滴滴涕的PMD品系具有最高的适合度。在对滴滴涕/拟除虫菊酯有抗性的品系和杂交品系中观察到了一致的适合度代价,包括翅长较短、卵孵化率降低、雌虫寿命缩短以及储存后卵的活力缩短,而对吸血率没有影响。此外,在PMD-R品系中观察到产卵量减少,在UPK-R品系中观察到发育时间延长。对于等位基因杂合的相应杂交品系比任何一种纯合突变基因型都更具适合度。这与在清迈市自然种群中观察到的杂合基因型的高频率一致。