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多食性夜蛾害虫甜菜夜蛾抗蜕皮激素细胞系中的蜕皮激素信号传导

Ecdysteroid signaling in ecdysteroid-resistant cell lines from the polyphagous noctuid pest Spodoptera exigua.

作者信息

Swevers Luc, Soin Thomas, Mosallanejad Hadi, Iatrou Kostas, Smagghe Guy

机构信息

Insect Molecular Genetics and Biotechnology, Institute of Biology, National Centre for Scientific Research "Demokritos", Aghia Paraskevi Attikis, Athens, Greece.

出版信息

Insect Biochem Mol Biol. 2008 Sep;38(9):825-33. doi: 10.1016/j.ibmb.2008.06.001. Epub 2008 Jul 15.

Abstract

Although dibenzoylhydrazine-type non-steroidal ecdysone agonists such as methoxyfenozide (RH-2485) have an excellent performance record, the emergence of resistance could severely compromise the efficacy of these compounds in integrated pest management programs. To investigate possible mechanisms of resistance, cell lines derived from the polyphagous noctuid pest Spodoptera exigua (Se4 cells) were selected for continuous growth in the presence of high concentrations of 20-hydroxyecdysone (20E) or methoxyfenozide. Here we describe an analysis of ecdysteroid receptor signaling in the ecdysteroid-resistant Se4 cell lines. In contrast to other ecdysteroid-resistant cell lines described in literature, our data support the existence of a normal functioning ecdysteroid receptor complex in the resistant Se4 cell lines: (1) using a recombinant BmNPV baculovirus as a transduction tool, activation of an ecdysone-responsive luciferase cassette was demonstrated; (2) the early gene HR3 is constitutively expressed in the resistant cell lines that are grown in the presence of 20E or methoxyfenozide. Quantitative RT-PCR experiments indicated that expression levels of SeEcR mRNA were comparable among sensitive and resistant cell lines. Sequencing of PCR fragments also revealed the presence of SeEcR mRNA with a wild-type ligand-binding domain in resistant cells. Finally, a possible role for the gene FTZ-F1, whose expression correlates with the absence of circulating ecdysteroids during insect development, in the resistance mechanism was investigated. However, it was observed that FTZ-F1, in contrast to what is observed during insect development, is constitutively expressed in Se4 cells and that its expression is not regulated by the addition of ecdysteroid. It is proposed that the resistance mechanism in Se4 cells resides at the coupling between the conserved hierarchical cascade of early and early-late gene expression and the differentiation program in the Se4 cell line. The use of insect cell lines for the investigation of resistance against dibenzoylhydrazine ecdysone agonists and their relevance for uncovering resistance mechanisms in insects during pest control programs is discussed.

摘要

尽管二苯甲酰肼类非甾体蜕皮激素激动剂,如甲氧虫酰肼(RH - 2485),有着出色的应用记录,但抗性的出现可能会严重损害这些化合物在害虫综合治理计划中的功效。为了研究可能的抗性机制,选取了多食性夜蛾科害虫甜菜夜蛾的细胞系(Se4细胞),使其在高浓度的20 - 羟基蜕皮激素(20E)或甲氧虫酰肼存在的情况下持续生长。在此,我们描述了对蜕皮甾体抗性Se4细胞系中蜕皮甾体受体信号传导的分析。与文献中描述的其他蜕皮甾体抗性细胞系不同,我们的数据支持抗性Se4细胞系中存在正常功能的蜕皮甾体受体复合物:(1)使用重组BmNPV杆状病毒作为转导工具,证明了蜕皮激素反应性荧光素酶盒的激活;(2)早期基因HR3在20E或甲氧虫酰肼存在下生长的抗性细胞系中组成性表达。定量RT - PCR实验表明,敏感细胞系和抗性细胞系中SeEcR mRNA的表达水平相当。PCR片段测序还揭示了抗性细胞中存在具有野生型配体结合域的SeEcR mRNA。最后,研究了基因FTZ - F1在抗性机制中的可能作用,该基因的表达与昆虫发育过程中循环蜕皮甾体的缺失相关。然而,观察到与昆虫发育过程中不同的是,FTZ - F1在Se4细胞中组成性表达,并且其表达不受蜕皮甾体添加的调节。有人提出,Se4细胞中的抗性机制存在于早期和早晚期基因表达的保守层级级联与Se4细胞系中的分化程序之间的耦合。讨论了使用昆虫细胞系研究对二苯甲酰肼蜕皮激素激动剂的抗性及其在害虫防治计划中揭示昆虫抗性机制的相关性。

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