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黑腹果蝇中的异生物质反应:细胞色素P450和谷胱甘肽S-转移酶基因诱导的性别依赖性

Xenobiotic response in Drosophila melanogaster: sex dependence of P450 and GST gene induction.

作者信息

Le Goff Gaëlle, Hilliou Frédérique, Siegfried Blair D, Boundy Sam, Wajnberg Eric, Sofer Luc, Audant Pascaline, ffrench-Constant Richard H, Feyereisen René

机构信息

Department of Biology and Biochemistry, University of Bath, Bath BA2 7AY, UK.

出版信息

Insect Biochem Mol Biol. 2006 Aug;36(8):674-82. doi: 10.1016/j.ibmb.2006.05.009. Epub 2006 May 25.

Abstract

The effect of xenobiotics (phenobarbital and atrazine) on the expression of Drosophila melanogaster CYP genes encoding cytochromes P450, a gene family generally associated with detoxification, was analyzed by DNA microarray hybridization and verified by real-time RT-PCR in adults of both sexes. Only a small subset of the 86 CYP genes was significantly induced by the xenobiotics. Eleven CYP genes and three glutathione S-transferases (GST) genes were significantly induced by phenobarbital, seven CYP and one GST gene were induced by atrazine. Cyp6d5, Cyp6w1, Cyp12d1 and the ecdysone-inducible Cyp6a2 were induced by both chemicals. The constitutive expression of several of the inducible genes (Cyp6a2, Cyp6a8, Cyp6d5, Cyp12d1) was higher in males than in females, and the induced level similar in both sexes. Thus, the level of induction was consistently higher in females than in males. The female-specific and hormonally regulated yolk protein genes were significantly induced by phenobarbital in males and repressed by atrazine in females. Our results suggest that the numerous CYP genes of Drosophila respond selectively to xenobiotics, providing the fly with an adaptive response to chemically adverse environments. The xenobiotic inducibility of some CYP genes previously associated with insecticide resistance in laboratory-selected strains (Cyp6a2, Cyp6a8, Cyp12d1) suggests that deregulation of P450 gene expression may be a facile way to achieve resistance. Our study also suggests that xenobiotic-induced changes in P450 levels can affect insect fitness by interfering with hormonally regulated networks.

摘要

通过DNA微阵列杂交分析了异生素(苯巴比妥和莠去津)对果蝇中编码细胞色素P450的CYP基因表达的影响,细胞色素P450是一个通常与解毒相关的基因家族,并通过实时RT-PCR在雌雄成虫中进行了验证。在86个CYP基因中,只有一小部分被异生素显著诱导。苯巴比妥显著诱导了11个CYP基因和3个谷胱甘肽S-转移酶(GST)基因,莠去津诱导了7个CYP基因和1个GST基因。两种化学物质均诱导了Cyp6d5、Cyp6w1、Cyp12d1和蜕皮激素诱导的Cyp6a2。几种可诱导基因(Cyp6a2、Cyp6a8、Cyp6d5、Cyp12d1)的组成型表达在雄性中高于雌性,诱导水平在两性中相似。然而,诱导水平在雌性中始终高于雄性。雌性特异性且受激素调节的卵黄蛋白基因在雄性中被苯巴比妥显著诱导,在雌性中被莠去津抑制。我们的结果表明,果蝇的众多CYP基因对异生素有选择性反应,为果蝇提供了对化学不利环境的适应性反应。一些先前与实验室选择菌株中的杀虫剂抗性相关的CYP基因(Cyp6a2、Cyp6a8、Cyp12d1)的异生素诱导性表明,P450基因表达的失调可能是实现抗性的一种简便方法。我们的研究还表明,异生素诱导的P450水平变化可通过干扰激素调节网络影响昆虫的适应性。

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