Standing genetic variation as a potential mechanism of novel cave phenotype evolution in the freshwater isopod, Asellus aquaticus

IF 2.6 3区 生物学 Q2 DEVELOPMENTAL BIOLOGY Evolution & Development Pub Date : 2023-02-08 DOI:10.1111/ede.12428
Lizet R. Rodas, Serban M. Sarbu, Raluca Bancila, Devon Price, Žiga Fišer, Meredith Protas
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引用次数: 1

Abstract

Novel phenotypes can come about through a variety of mechanisms including standing genetic variation from a founding population. Cave animals are an excellent system in which to study the evolution of novel phenotypes such as loss of pigmentation and eyes. Asellus aquaticus is a freshwater isopod crustacean found in Europe and has both a surface and a cave ecomorph which vary in multiple phenotypic traits. An orange eye phenotype was previously revealed by F2 crosses and backcrosses to the cave parent within two examined Slovenian cave populations. Complete loss of pigmentation, both in eye and body, is epistatic to the orange eye phenotype and therefore the orange eye phenotype is hidden within the cave populations. Our goal was to investigate the origin of the orange eye alleles within the Slovenian cave populations by examining A. aquaticus individuals from Slovenian and Romanian surface populations and Asellus aquaticus infernus individuals from a Romanian cave population. We found orange eye individuals present in lab raised surface populations of A. aquaticus from both Slovenia and Romania. Using a mapping approach with crosses between individuals of two surface populations, we found that the region known to be responsible for the orange eye phenotype within the two previously examined Slovenian cave populations was also responsible within both the Slovenian and the Romanian surface populations. Complementation crosses between orange eye Slovenian and orange eye Romanian surface individuals suggest that the same gene is responsible for the orange eye phenotype in both surface populations. Additionally, we observed a low frequency phenotype of eye loss in crosses generated between the two surface populations and also in the Romanian surface population. Finally, in a cave population from Romania, A. aquaticus infernus, we found that the same region is also responsible for the orange eye phenotype as the Slovenian cave populations and the Slovenian and Romanian surface populations. Therefore, we present evidence that variation present in the cave populations could originate from standing variation present in the surface populations and/or transgressive hybridization of different surface phylogenetic lineages rather than de novo mutations.

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常压遗传变异是淡水等足类水生无足动物洞穴表型进化的潜在机制
新的表型可以通过多种机制产生,包括来自创始群体的持续遗传变异。洞穴动物是研究色素沉着和眼睛丧失等新表型进化的优秀系统。Asellus aquaticus是一种在欧洲发现的淡水等足类甲壳类动物,具有多种表型特征的表面和洞穴生态形态。在两个已检查的斯洛文尼亚洞穴种群中,先前通过F2杂交和回交到洞穴亲本揭示了橙眼表型。眼睛和身体色素沉着的完全丧失是橙眼表型的上位性,因此橙眼表型隐藏在洞穴种群中。我们的目标是通过检测斯洛文尼亚和罗马尼亚地表种群的A.aquaticus个体和罗马尼亚洞穴种群的Asellus aquatics infernus个体,来研究斯洛文尼亚洞穴种群中橙眼等位基因的起源。我们在斯洛文尼亚和罗马尼亚实验室培育的水生A.aquaticus表面种群中发现了橙眼个体。使用两个地表种群个体之间的杂交作图方法,我们发现,在之前检查的两个斯洛文尼亚洞穴种群中,已知负责橙眼表型的区域也在斯洛文尼亚和罗马尼亚地表种群中负责。橙眼斯洛文尼亚人和橙眼罗马尼亚人表面个体之间的互补杂交表明,在两个表面群体中,相同的基因负责橙眼表型。此外,我们在两个表面种群之间产生的杂交中以及在罗马尼亚表面种群中观察到了低频率的失明表型。最后,在来自罗马尼亚的洞穴种群a.aquaticus infernus中,我们发现与斯洛文尼亚洞穴种群以及斯洛文尼亚和罗马尼亚地表种群相同的区域也对橙眼表型负责。因此,我们提供的证据表明,洞穴种群中存在的变异可能源于地表种群中存在存在的长期变异和/或不同地表系统发育谱系的海侵杂交,而不是从头突变。
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来源期刊
Evolution & Development
Evolution & Development 生物-发育生物学
CiteScore
6.30
自引率
3.40%
发文量
26
审稿时长
>12 weeks
期刊介绍: Evolution & Development serves as a voice for the rapidly growing research community at the interface of evolutionary and developmental biology. The exciting re-integration of these two fields, after almost a century''s separation, holds much promise as the focus of a broader synthesis of biological thought. Evolution & Development publishes works that address the evolution/development interface from a diversity of angles. The journal welcomes papers from paleontologists, population biologists, developmental biologists, and molecular biologists, but also encourages submissions from professionals in other fields where relevant research is being carried out, from mathematics to the history and philosophy of science.
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