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游牧增强子:黄色在果蝇物种之间的组织特异性顺式调控元件具有不同的基因组位置。

Nomadic enhancers: tissue-specific cis-regulatory elements of yellow have divergent genomic positions among Drosophila species.

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Michigan, Ann Arbor, Michigan, United States of America.

出版信息

PLoS Genet. 2010 Nov 24;6(11):e1001222. doi: 10.1371/journal.pgen.1001222.

Abstract

cis-regulatory DNA sequences known as enhancers control gene expression in space and time. They are central to metazoan development and are often responsible for changes in gene regulation that contribute to phenotypic evolution. Here, we examine the sequence, function, and genomic location of enhancers controlling tissue- and cell-type specific expression of the yellow gene in six Drosophila species. yellow is required for the production of dark pigment, and its expression has evolved largely in concert with divergent pigment patterns. Using Drosophila melanogaster as a transgenic host, we examined the expression of reporter genes in which either 5' intergenic or intronic sequences of yellow from each species controlled the expression of Green Fluorescent Protein. Surprisingly, we found that sequences controlling expression in the wing veins, as well as sequences controlling expression in epidermal cells of the abdomen, thorax, and wing, were located in different genomic regions in different species. By contrast, sequences controlling expression in bristle-associated cells were located in the intron of all species. Differences in the precise pattern of spatial expression within the developing epidermis of D. melanogaster transformants usually correlated with adult pigmentation in the species from which the cis-regulatory sequences were derived, which is consistent with cis-regulatory evolution affecting yellow expression playing a central role in Drosophila pigmentation divergence. Sequence comparisons among species favored a model in which sequential nucleotide substitutions were responsible for the observed changes in cis-regulatory architecture. Taken together, these data demonstrate frequent changes in yellow cis-regulatory architecture among Drosophila species. Similar analyses of other genes, combining in vivo functional tests of enhancer activity with in silico comparative genomics, are needed to determine whether the pattern of regulatory evolution we observed for yellow is characteristic of genes with rapidly evolving expression patterns.

摘要

已知的顺式调控 DNA 序列,称为增强子,控制基因在时空上的表达。它们是后生动物发育的核心,通常负责导致基因调控变化的因素,这些变化有助于表型进化。在这里,我们研究了控制六个果蝇物种中黄色基因组织和细胞类型特异性表达的增强子的序列、功能和基因组位置。黄色基因对于深色色素的产生是必需的,其表达在很大程度上与不同的色素模式协同进化。我们使用黑腹果蝇作为转基因宿主,研究了报告基因的表达情况,其中每个物种的黄色基因 5' 内含子或内含子序列控制绿色荧光蛋白的表达。令人惊讶的是,我们发现控制翅膀脉中表达的序列以及控制腹部、胸部和翅膀表皮细胞中表达的序列,在不同物种的基因组中位于不同的区域。相比之下,控制触角细胞表达的序列位于所有物种的内含子中。在黑腹果蝇转化体中,发育表皮内空间表达的精确模式的差异通常与源自顺式调控序列的物种的成年色素相一致,这表明顺式调控进化影响黄色表达在果蝇色素分化中起着核心作用。物种间序列比较支持这样一种模型,即连续的核苷酸取代负责观察到的顺式调控结构的变化。总之,这些数据表明黄色基因的顺式调控结构在果蝇物种中经常发生变化。需要对其他基因进行类似的分析,将增强子活性的体内功能测试与计算机比较基因组学相结合,以确定我们观察到的黄色基因调控进化模式是否是表达模式快速进化的基因的特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/365b/2996884/1283a14dae91/pgen.1001222.g001.jpg

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