首页> 外文OA文献 >Larval Susceptibility of an Insecticide-Resistant Western Corn Rootworm (Coleoptera: Chrysomelidae) Population to Soil Insecticides: Laboratory Bioassays, Assays of Detoxification Enzymes, and Field Performance
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Larval Susceptibility of an Insecticide-Resistant Western Corn Rootworm (Coleoptera: Chrysomelidae) Population to Soil Insecticides: Laboratory Bioassays, Assays of Detoxification Enzymes, and Field Performance

机译:抗杀虫剂西部玉米根虫(鞘翅目:叶甲科)种群对土壤杀虫剂的幼虫易感性:实验室生物测定,解毒酶测定和田间表现

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摘要

Soil insecticides were evaluated in laboratory and field studies against larvae of an insecticide resistant population (Phelps County, NE) of western corn rootworm, Diabrotica virgifera virgifera LeConte. Insecticide toxicity was evaluated by topical application of technical insecticides to 3rd instars from Saunders County, NE (susceptible) and Phelps County populations. Resistance ratios (LD50 Phelps County/LD50 Saunders County) for the insecticides methyl parathion, tefluthrin, carbofuran, terbufos, and chlorpyrifos were 28.0, 9.3, 8.7, 2.6 and 1.3, respectively. Biochemical investigation of suspected enzymatic resistance mechanisms in 3rd instars identified significant elevation of esterase activity (alpha and beta naphthyl acetate hydrolysis [3.8- and 3.9-fold]). Examination of 3rd instar esterases by native PAGE identified increased intensity of several isoenzymes in the resistant population. Assays of cytochrome P450 activity (4-CNMA demethylation and aldrin epoxidation) did not identify elevated activity in resistant 3rd instars. Granular soil insecticides were applied at planting to corn, Zea mays L., in replicated field trials in 1997 and 1998 at the same Phelps County site as the source of resistant rootworms for the laboratory studies. In 1997, planting time applications of Counter 20CR, Counter 15 G (terbufos), and Lorsban 15 G (chlorpyrifos) resulted in the lowest root injury ratings (1Ð6 Iowa scale); 2.50, 2.55, 2.65, respectively (untreated check root rating of 4.55). In 1998, all insecticides performed similarly against a lower rootworm density (untreated check root rating of 3.72). These studies suggest that resistance previously documented in adults also is present in 3rd instars, esterases are possibly involved as resistance mechanisms, and resistance to methyl parathion in adults is also evident in larvae, but does not confer cross-resistance in larvae to all organophosphate insecticides.
机译:在实验室和田间研究中评估了土壤杀虫剂对西部玉米根虫Diabrotica virgifera virgifera LeConte的抗药性种群(北菲普斯县,NE)的幼虫的能力。通过向东北桑德斯县(易感者)和菲尔普斯县的三龄幼虫局部施用技术杀虫剂来评估杀虫剂的毒性。杀虫剂甲基对硫磷,特氟菊酯,呋喃丹,特步福斯和毒死rif的抗性比(LD50菲尔普斯县/ LD50桑德斯县)分别为28.0、9.3、8.7、2.6和1.3。对3龄幼虫的怀疑的酶抗性机制进行的生化研究表明,酯酶活性显着提高(α和β萘乙酸乙酸酯水解[3.8和3.9倍])。通过天然PAGE检查第3龄酯酶,发现抗性种群中几种同工酶的强度增加。细胞色素P450活性(4-CNMA脱甲基和艾氏剂环氧化)的测定未发现抗性第三龄幼虫的活性升高。在1997年和1998年的重复田间试验中,将粒状土壤杀虫剂用于玉米(Zea mays L.)玉米种植,并在菲尔普斯县的同一地点作为抗性根虫的来源进行了实验室研究。 1997年,Counter 20CR,Counter 15 G(terbufos)和Lorsban 15 G(毒死rif)的播种时间导致最低的根部伤害等级(1爱荷华州6级);分别为2.50、2.55、2.65(未经处理的检查根等级为4.55)。 1998年,所有杀虫剂在较低的根虫密度(未经处理的检查根等级为3.72)方面均表现相似。这些研究表明,以前在成虫中记录的抗药性也存在于三龄幼虫中,酯酶可能是其抗药性机制,并且在幼虫中对成虫对甲基对硫磷的抗药性也很明显,但并未赋予幼虫对所有有机磷杀虫剂的交叉抗药性。 。

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