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利用微阵列和 qRT-PCR 方法鉴定和描述参与慈鲷鱼颜色形成的基因表达。

Identification and characterization of gene expression involved in the coloration of cichlid fish using microarray and qRT-PCR approaches.

机构信息

Lehrstuhl für Zoologie und Evolutionsbiologie, Department of Biology, University of Konstanz, Universitätsstr 10, 78457 Constance, Germany.

出版信息

J Mol Evol. 2011 Feb;72(2):127-37. doi: 10.1007/s00239-011-9431-x. Epub 2011 Jan 26.

Abstract

It has been suggested that speciation on the basis of sexual selection is an important mechanism for the generation of new species for East African cichlids, where male body coloration is one of the major discriminatory factors used by females in mate choice. To gain insight into the molecular basis of cichlid coloration, we studied the Lake Malawi cichlid Pseudotropheus saulosi, comparing transcription in the bright blue skin of males to the yellow skin of females. Our cDNA microarray experiments identified 46 clones that exhibited expression differences between the two sexes, of which five were confirmed to be differentially expressed by relative quantitative real-time PCR (qRT-PCR). This gene list includes a representative from the endosomal-to-Golgi vesicle trafficking pathway, Coatomer protein complex, subunit zeta-1 (Copz-1), which is known to be a critical determinant of pigmentation in humans and zebrafish. With the support of microscopic images of the skin of these specimens, we interpret the transcriptional differences between the blue males and yellow females. Here, we provide insight into the putative functional diversification of genes involved in the coloration of cichlids and by extension, on the evolution of coloration in teleost fish.

摘要

有人认为,基于性选择的物种形成是东非慈鲷产生新物种的重要机制,在东非慈鲷中,雄性的体色是雌性在选择配偶时使用的主要鉴别因素之一。为了深入了解慈鲷颜色的分子基础,我们研究了马拉维湖慈鲷 Pseudotropheus saulosi,比较了雄性明亮蓝色皮肤和雌性黄色皮肤的转录情况。我们的 cDNA 微阵列实验鉴定了 46 个在两性之间表现出表达差异的克隆,其中 5 个通过相对定量实时 PCR(qRT-PCR)被证实存在差异表达。这个基因列表包括网格蛋白复合物亚基 ζ-1(Copz-1),它是内体到高尔基体囊泡运输途径的一个代表,已知在人类和斑马鱼的色素沉着中是一个关键决定因素。在这些标本皮肤的显微图像的支持下,我们解释了蓝色雄性和黄色雌性之间的转录差异。在这里,我们深入了解了参与慈鲷颜色形成的基因的可能功能多样化,并由此推断出硬骨鱼颜色进化的情况。

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