Tol2转座子介导的慈鲷(Amphilophus citrinellus)转基因——在快速表型多样化的生态模式系统中了解基因功能和调控进化

Q2 Biochemistry, Genetics and Molecular Biology BMC Developmental Biology Pub Date : 2017-11-23 DOI:10.1186/s12861-017-0157-x
Claudius F Kratochwil, Maggie M Sefton, Yipeng Liang, Axel Meyer
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引用次数: 12

摘要

背景:Midas cicichlid物种群(Amphilophus spp.)在进化生物学家中被广泛认为是同域物种形成和适应性表型分化在极短时间内(几百代)的模式系统。在这种辐射中,适应性表型的重复平行进化,加上它们的近遗传同一性,使它们成为研究表型多样化的一个很好的模型。虽然对Midas慈鲷进行了许多生态学和进化研究,但特定表型的分子基础,特别是适应性,及其潜在的编码和顺式调节变化尚未得到彻底研究。结果:我们首次利用Tol2转座子介导的转基因技术,对中国慈鱼(Amphilophus citrinellus)进行转基因。通过适应现有的显微注射方案,我们建立了一种有效的转基因方案。胚胎注射了在泛素启动子控制下驱动增强绿色荧光蛋白(eGFP)表达的Tol2质粒。该转基因基因成功地整合到种系中,在首个转基因慈鲷系中驱动了eGFP的普遍表达。此外,我们还展示了另外两个转基因构建物的瞬时表达,ubiquitin::tdTomato和mitfa::eGFP。迈达斯慈鲷的转基因将有助于进一步研究物种特异性特征的遗传基础,其中许多是适应性的。结论:转基因不仅是研究启动子和增强子等调控元件的一种多功能工具,而且可以通过等位基因变异的过表达来检测基因功能。因此,这是在生态和进化背景下,将Midas稚鱼建立为研究适应性编码和非编码变化的强大模型的重要的第一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Tol2 transposon-mediated transgenesis in the Midas cichlid (Amphilophus citrinellus) - towards understanding gene function and regulatory evolution in an ecological model system for rapid phenotypic diversification.

Background: The Midas cichlid species complex (Amphilophus spp.) is widely known among evolutionary biologists as a model system for sympatric speciation and adaptive phenotypic divergence within extremely short periods of time (a few hundred generations). The repeated parallel evolution of adaptive phenotypes in this radiation, combined with their near genetic identity, makes them an excellent model for studying phenotypic diversification. While many ecological and evolutionary studies have been performed on Midas cichlids, the molecular basis of specific phenotypes, particularly adaptations, and their underlying coding and cis-regulatory changes have not yet been studied thoroughly.

Results: For the first time in any New World cichlid, we use Tol2 transposon-mediated transgenesis in the Midas cichlid (Amphilophus citrinellus). By adapting existing microinjection protocols, we established an effective protocol for transgenesis in Midas cichlids. Embryos were injected with a Tol2 plasmid construct that drives enhanced green fluorescent protein (eGFP) expression under the control of the ubiquitin promoter. The transgene was successfully integrated into the germline, driving strong ubiquitous expression of eGFP in the first transgenic Midas cichlid line. Additionally, we show transient expression of two further transgenic constructs, ubiquitin::tdTomato and mitfa::eGFP. Transgenesis in Midas cichlids will facilitate further investigation of the genetic basis of species-specific traits, many of which are adaptations.

Conclusion: Transgenesis is a versatile tool not only for studying regulatory elements such as promoters and enhancers, but also for testing gene function through overexpression of allelic gene variants. As such, it is an important first step in establishing the Midas cichlid as a powerful model for studying adaptive coding and non-coding changes in an ecological and evolutionary context.

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BMC Developmental Biology
BMC Developmental Biology 生物-发育生物学
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>12 weeks
期刊介绍: BMC Developmental Biology is an open access, peer-reviewed journal that considers articles on the development, growth, differentiation and regeneration of multicellular organisms, including molecular, cellular, tissue, organ and whole organism research.
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