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果蝇中两个气味结合蛋白基因Obp57d和Obp57e的保守顺式调控元件

Conserved cis-regulatory elements of two odorant-binding protein genes, Obp57d and Obp57e, in Drosophila.

作者信息

Tomioka Sachiko, Aigaki Toshiro, Matsuo Takashi

机构信息

Department of Biological Sciences, Tokyo Metropolitan University, 1-1 Minami Osawa,Hachioji, Tokyo 192-0364, Japan.

出版信息

Genes Genet Syst. 2012;87(5):323-9. doi: 10.1266/ggs.87.323.

Abstract

Insect odorant-binding proteins function in the sensing of odors, tastes, and pheromones. Genes encoding two odorant-binding proteins, Obp57d and Obp57e, were identified to be involved in the behavioral adaptation of Drosophila sechellia to its host plant. The two genes are expressed in cells associated with taste sensilla on the legs, and the expression pattern in the legs is conserved among closely related species. To identify the cis-regulatory elements necessary for the expression in the leg sensilla, the promoter sequences of Obp57d and Obp57e were compared among species. Two types of conserved sequence-motifs were found as candidate cis-regulatory elements. Functions of these conserved elements in the promoters of D. melanogaster Obp57d and Obp57e were examined by using a newly constructed vector that combines the advantages of φC31 integrase-based transformation and gypsy transposable-element-derived insulators. By GFP-reporter assay using the new vector, it was confirmed that these conserved elements are necessary for the expression in the legs, working synergistically with each other to affect the expression level. Single-nucleotide substitutions in these elements dramatically changed the promoter activity. These results provide insight into the molecular mechanism for evolution of adaptive behavior via modulation of OBP expression levels.

摘要

昆虫气味结合蛋白在气味、味觉和信息素的感知中发挥作用。编码两种气味结合蛋白Obp57d和Obp57e的基因被确定参与了塞舌尔果蝇对其寄主植物的行为适应。这两个基因在腿部与味觉感受器相关的细胞中表达,并且腿部的表达模式在近缘物种中是保守的。为了确定腿部感受器中表达所必需的顺式调控元件,对不同物种间Obp57d和Obp57e的启动子序列进行了比较。发现了两种类型的保守序列基序作为候选顺式调控元件。通过使用一种新构建的载体来研究这些保守元件在黑腹果蝇Obp57d和Obp57e启动子中的功能,该载体结合了基于φC31整合酶的转化和吉普赛转座子衍生绝缘子的优点。通过使用新载体进行绿色荧光蛋白报告基因检测,证实这些保守元件对于腿部表达是必需的,它们相互协同作用以影响表达水平。这些元件中的单核苷酸替换显著改变了启动子活性。这些结果为通过调节OBP表达水平实现适应性行为进化的分子机制提供了见解。

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