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与烟粉虱(半翅目:粉虱科)中与新烟碱类交叉抗性相关的生化标记物的鉴定。

Identification of biochemical markers linked to neonicotinoid cross resistance in Bemisia tabaci (Hemiptera: Aleyrodidae).

作者信息

Rauch Natascha, Nauen Ralf

机构信息

Bayer CropScience AG, Research, Global Biology Insecticides, Monheim, Germany.

出版信息

Arch Insect Biochem Physiol. 2003 Dec;54(4):165-76. doi: 10.1002/arch.10114.

Abstract

The whitefly, Bemisia tabaci (Hemiptera: Aleyrodidae), is a serious pest in many cropping systems world-wide and occurs in different biotypes. The most widespread one is the B-type, whereas the Q-biotype is nowadays still mostly restricted to Southern Spain. Neonicotinoid cross-resistance is known at a high level in Q-types from Spain and individual samples collected in Italy and Germany. Now we detected for the first time high neonicotinoid cross-resistance in a B-type from Israel. Target site resistance to imidacloprid using [(3)H]imidacloprid in nicotinic acetylcholine receptor (nAChR) binding assays could not be detected in any of these highly resistant strains. The impact of metabolizing enzymes such as esterases, glutathione S-transferases, and cytochrome P450-dependent monooxygenases in neonicotinoid resistance was studied biochemically with artificial substrates. Monooxygenase activity was increased 2-3-fold in moderately resistant strains (RF approximately 30) and even 5-6-fold in highly resistant strains (RF approximately 1,000). Only monooxygenase activity correlated with imidacloprid, thiamethoxam and acetamiprid resistance and, therefore, monooxygenases seem to be the only enzyme system responsible for neonicotinoid resistance in B. tabaci Q- and B-types. The oxidative degradation of imidacloprid in resistant Q-type strains could be confirmed by metabolism studies of [(14)C]imidacloprid in vivo. Five-hydroxy-imidacloprid could be detected as the only main metabolite. The insecticidal activity and binding affinity to nAChR of this compound was 10 times lower than imidacloprid itself in B. tabaci.

摘要

烟粉虱,即烟粉虱(半翅目:粉虱科),是全球许多种植系统中的一种严重害虫,存在不同的生物型。分布最广的是B型,而Q生物型目前仍主要局限于西班牙南部。在西班牙的Q型以及在意大利和德国采集的个体样本中,已知对新烟碱类存在高水平的交叉抗性。现在我们首次在来自以色列的B型烟粉虱中检测到了高新烟碱类交叉抗性。在任何这些高抗性品系中,使用[³H]吡虫啉在烟碱型乙酰胆碱受体(nAChR)结合试验中均未检测到对吡虫啉的靶标位点抗性。使用人工底物通过生化方法研究了酯酶、谷胱甘肽S - 转移酶和细胞色素P450依赖性单加氧酶等代谢酶在新烟碱类抗性中的作用。在中度抗性品系(抗性倍数约为30)中,单加氧酶活性增加了2 - 3倍,在高抗性品系(抗性倍数约为1000)中甚至增加了5 - 6倍。只有单加氧酶活性与吡虫啉、噻虫嗪和啶虫脒抗性相关,因此,单加氧酶似乎是烟粉虱Q型和B型中负责新烟碱类抗性的唯一酶系统。通过[¹⁴C]吡虫啉的体内代谢研究可以证实抗性Q型品系中吡虫啉的氧化降解。可以检测到5 - 羟基 - 吡虫啉是唯一的主要代谢产物。在烟粉虱中,该化合物对nAChR的杀虫活性和结合亲和力比吡虫啉本身低10倍。

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