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通过szl基因突变的双尾金鱼的另一种进化途径。

An alternative evolutionary pathway for the twin-tail goldfish via szl gene mutation.

作者信息

Abe Gembu, Lee Shu-Hua, Li Ing-Jia, Ota Kinya G

机构信息

Laboratory of Aquatic Zoology, Marine Research Station, Institute of Cellular and Organismic Biology, Academia Sinica, Yilan, Taiwan.

Laboratory of Organ Morphogenesis, Department of Developmental Biology and Neurosciences, Graduate School of Life Sciences, Tohoku University, Sendai, Japan.

出版信息

J Exp Zool B Mol Dev Evol. 2018 Jun;330(4):234-241. doi: 10.1002/jez.b.22811.

Abstract

The twin-tail of ornamental goldfish provides unique evolutionary evidence that the highly conserved midline localization of axial skeleton components can be changed by artificial selection. This morphological change is known to be caused by a nonsense mutation in one of the recently duplicated chordin genes, which are key players in dorsal-ventral (DV) patterning. Since all of the multiple twin-tail ornamental goldfish strains share the same mutation, it is reasonable to presume that this mutation occurred only once in domesticated goldfish. However, zebrafish with mutated szl gene (another DV patterning-related gene) also exhibit twin-tail morphology and higher viability than dino/chordin-mutant zebrafish. This observation raises the question of whether the szl gene mutation could also reproduce the twin-tail morphology in goldfish. Here we show that goldfish have at least two subfunctionalized szl genes, designated szlA and szlB, and depletion of these genes in single-fin goldfish was able to reproduce the bifurcated caudal fin found in twin-tail ornamental goldfish. Interestingly, several phenotypes were observed in szlA-depleted fish, while low expressivity of the twin-tail phenotype was observed in szlB-depleted goldfish. Thus, even though szl gene mutations may produce twin-tail goldfish, these szl gene mutations might not be favorable for selection in domestic breeding. These results highlight the uniqueness and rarity of mutations that are able to cause large-scale morphological changes, such as a bifurcated axial skeleton, with high viability and expressivity in natural and domesticated populations.

摘要

观赏金鱼的双尾提供了独特的进化证据,表明轴向骨骼成分高度保守的中线定位可通过人工选择而改变。已知这种形态变化是由最近复制的脊索基因之一中的无义突变引起的,这些基因是背腹(DV)模式形成的关键因素。由于所有多个双尾观赏金鱼品系都具有相同的突变,因此可以合理推测这种突变在驯化金鱼中只发生过一次。然而,具有突变的szl基因(另一个与DV模式形成相关的基因)的斑马鱼也表现出双尾形态,并且比dino/脊索突变的斑马鱼具有更高的生存能力。这一观察结果提出了一个问题,即szl基因突变是否也能在金鱼中重现双尾形态。在这里,我们表明金鱼至少有两个亚功能化的szl基因,分别命名为szlA和szlB,单鳍金鱼中这些基因的缺失能够重现双尾观赏金鱼中发现的分叉尾鳍。有趣的是,在szlA缺失的鱼中观察到了几种表型,而在szlB缺失的金鱼中观察到双尾表型的表达率较低。因此,即使szl基因突变可能产生双尾金鱼,但这些szl基因突变可能不利于家养繁殖中的选择。这些结果突出了能够在自然和驯化种群中引起大规模形态变化(如分叉轴向骨骼)且具有高生存能力和表达率的突变的独特性和稀有性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b391/6033011/b400f3e99930/JEZ-330-234-g001.jpg

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