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单一基因座影响胚胎体节极性和成年进化新奇性的多个方面。

Single locus affects embryonic segment polarity and multiple aspects of an adult evolutionary novelty.

机构信息

Institute of Biology, Leiden University, Sylviusweg 72, 2333 BE Leiden, The Netherlands.

出版信息

BMC Biol. 2010 Aug 26;8:111. doi: 10.1186/1741-7007-8-111.

Abstract

BACKGROUND

The characterization of the molecular changes that underlie the origin and diversification of morphological novelties is a key challenge in evolutionary developmental biology. The evolution of such traits is thought to rely largely on co-option of a toolkit of conserved developmental genes that typically perform multiple functions. Mutations that affect both a universal developmental process and the formation of a novelty might shed light onto the genetics of traits not represented in model systems. Here we describe three pleiotropic mutations with large effects on a novel trait, butterfly eyespots, and on a conserved stage of embryogenesis, segment polarity.

RESULTS

We show that three mutations affecting eyespot size and/or colour composition in Bicyclus anynana butterflies occurred in the same locus, and that two of them are embryonic recessive lethal. Using surgical manipulations and analysis of gene expression patterns in developing wings, we demonstrate that the effects on eyespot morphology are due to changes in the epidermal response component of eyespot induction. Our analysis of morphology and of gene expression in mutant embryos shows that they have a typical segment polarity phenotype, consistent with the mutant locus encoding a negative regulator of Wingless signalling.

CONCLUSIONS

This study characterizes the segregation and developmental effects of alleles at a single locus that controls the morphology of a lineage-specific trait (butterfly eyespots) and a conserved process (embryonic segment polarity and, specifically, the regulation of Wingless signalling). Because no gene with such function was found in the orthologous, highly syntenic genomic regions of two other lepidopterans, we hypothesize that our locus is a yet undescribed, possibly lineage-specific, negative regulator of the conserved Wnt/Wg pathway. Moreover, the fact that this locus interferes with multiple aspects of eyespot morphology and maps to a genomic region containing key wing pattern loci in different other butterfly species suggests it might correspond to a 'hotspot' locus in the diversification of this novel trait.

摘要

背景

阐明形态新颖性起源和多样化所涉及的分子变化是进化发育生物学的关键挑战。这些特征的进化被认为主要依赖于保守发育基因工具包的重利用,这些基因通常具有多种功能。影响普遍发育过程和新颖性形成的突变可能揭示了在模型系统中没有表现出的特征的遗传学。在这里,我们描述了三个对蝴蝶眼斑这一新颖特征和胚胎发生的一个保守阶段体节极性有很大影响的多效性突变。

结果

我们表明,在 Bicyclus anynana 蝴蝶中,影响眼斑大小和/或颜色组成的三个突变发生在同一个基因座中,其中两个是胚胎隐性致死的。通过手术操作和分析发育翅膀中的基因表达模式,我们证明了对眼斑形态的影响是由于眼斑诱导的表皮反应成分的变化。我们对突变体胚胎的形态和基因表达分析表明,它们具有典型的体节极性表型,与突变基因座编码 Wingless 信号的负调控因子一致。

结论

本研究描述了一个单一基因座的等位基因的分离和发育效应,该基因座控制着谱系特异性特征(蝴蝶眼斑)和保守过程(胚胎体节极性,特别是 Wingless 信号的调节)的形态。由于在另外两个鳞翅目昆虫的同源、高度同线性基因组区域中没有发现具有这种功能的基因,我们假设我们的基因座是一个尚未描述的、可能是谱系特异性的保守 Wnt/Wg 途径的负调控因子。此外,这个基因座干扰了眼斑形态的多个方面,并且映射到一个包含不同其他蝴蝶物种关键翅膀图案基因座的基因组区域,这表明它可能对应于这个新颖特征多样化的“热点”基因座。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db67/2940778/09cfd25558fc/1741-7007-8-111-1.jpg

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