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Mechanisms of pyrethroid resistance inHaematobia irritans (Muscidae) from Mato Grosso do Sul state, Brazil

机译:巴西南马托格罗索州血红素体蚊(拟蝇科)中拟除虫菊酯抗药性的机制

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Horn fly resistance to pyrethroid insecticides occurs throughout Brazil, but knowledge about the involved mechanisms is still in an incipient stage. This survey was aimed to identify the mechanisms of horn fly resistance to cypermethrin in Mato Grosso do Sul state, Brazil. Impregnated filter paper bioassays using cypermethrin, synergized or not with piperonyl butoxide (PBO) and triphenyl phosphate (TPP), were conducted from March 2004 to June 2005 in horn fly populations (n = 33) from all over the state. All populations were highly resistant to cypermethrin, with resistance factors (RF) ranging from 89.4 to 1,020.6. Polymerase chain reaction (PCR) assays to detect the knockdown resistance (kdr) mutation also were performed in 16 samples. The kdr mutation was found in 75% of the tested populations, mostly with relatively low frequencies (20%), and was absent in some highly resistant populations. Addition of TPP did not significantly reduce the LC50 in any population. However, PBO reduced LC50s above 40-fold in all tested populations, resulting in RFs ≤ 10 in most cases. Horn fly resistance to cypermethrin is widespread in the state, being primarily caused by an enhanced activity of P450 mono-oxygenases and secondarily by reduced target site sensitivity.
机译:角蝇对拟除虫菊酯类杀虫剂有抗药性,在整个巴西都有发生,但对所涉及机制的了解仍处于起步阶段。这项调查旨在确定巴西马托格罗索州南角苍蝇对氯氰菊酯的抗性机制。 2004年3月至2005年6月,在全州的角蝇种群(n = 33)中进行了使用氯氰菊酯的浸渍滤​​纸生物测定,无论是否与胡椒基丁醚(PBO)和磷酸三苯酯(TPP)协同使用。所有人群均对氯氰菊酯具有高度耐药性,耐药因子(RF)为89.4至1,020.6。还对16个样品进行了聚合酶链反应(PCR)检测以检测敲低抗性(kdr)突变。在75%的测试人群中发现了kdr突变,大多数是相对较低的频率(<20%),而在一些高度耐药的人群中却不存在。添加TPP并未显着降低任何人群的LC50。但是,PBO在所有测试人群中的LC50降低了40倍以上,导致大多数情况下RF≤10。该状态对角氯菊酯的角蝇抗性普遍存在,这主要是由于P450单加氧酶活性增强,其次是由于靶位敏感性降低。

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