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抗吡丙醚的烟粉虱Q型生物型中的基因表达

Gene expression in pyriproxyfen-resistant Bemisia tabaci Q biotype.

作者信息

Ghanim Murad, Kontsedalov Svetlana

机构信息

Institute of Plant Protection, Department of Entomology, Volcani Centre, Bet Dagan 50250, Israel.

出版信息

Pest Manag Sci. 2007 Aug;63(8):776-83. doi: 10.1002/ps.1410.

Abstract

Pyriproxyfen is a biorational insecticide that acts as a juvenile hormone (JH) analogue and disrupts insect development with an unknown molecular mode of action. Pyriproxyfen is one of the major insecticides used to control the whitefly Bemisia tabaci (Gennadius) and comply with integrated pest management (IPM) programmes, resulting in minimal effects on the environment, humans and beneficial organisms. During the last few years, resistance to pyriproxyfen has been observed in several locations in Israel, sometimes reaching a thousandfold or more. No information exists about the molecular basis underlying this resistance that may lead to understanding the mode of action of pyriproxyfen and developing molecular markers for rapid monitoring of resistance outbreaks. In this communication, a cDNA microarray from B. tabaci was used to monitor changes in gene expression in a resistant B. tabaci population. Based on statistical analysis, 111 expressed sequence tags (ESTs) were identified that were differentially upregulated in the resistant strain after pyriproxyfen treatment. Many of the upregulated ESTs observed in the present study belong to families usually associated with resistance and xenobiotic detoxification such as mitochondrial genes, P450s and oxidative stress, genes associated with protein, lipid and carbohydrate metabolism and others related to JH-associated processes in insects such as oocyte and egg development.

摘要

吡丙醚是一种仿生杀虫剂,作为一种保幼激素(JH)类似物,以未知的分子作用模式干扰昆虫发育。吡丙醚是用于防治烟粉虱(Bemisia tabaci (Gennadius))的主要杀虫剂之一,并符合害虫综合治理(IPM)计划,对环境、人类和有益生物的影响最小。在过去几年中,以色列的几个地方都观察到了对吡丙醚的抗性,有时抗性达到千倍或更高。目前尚无关于这种抗性分子基础的信息,而这可能有助于理解吡丙醚的作用模式并开发用于快速监测抗性爆发的分子标记。在本通讯中,利用烟粉虱的cDNA微阵列监测抗性烟粉虱种群中的基因表达变化。基于统计分析,鉴定出111个表达序列标签(EST),这些标签在吡丙醚处理后的抗性品系中差异上调。在本研究中观察到的许多上调的EST属于通常与抗性和异生物质解毒相关的家族,如线粒体基因、细胞色素P450和氧化应激,与蛋白质、脂质和碳水化合物代谢相关的基因,以及与昆虫中与保幼激素相关过程(如卵母细胞和卵发育)相关的其他基因。

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