Convergent evolution of type I antifreeze proteins from four different progenitors in response to global cooling.

IF 2.4 3区 生物学 Q4 CELL BIOLOGY BMC Molecular and Cell Biology Pub Date : 2024-12-30 DOI:10.1186/s12860-024-00525-5
Laurie A Graham, Peter L Davies
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Abstract

Alanine-rich, alpha-helical type I antifreeze proteins (AFPs) in fishes are thought to have arisen independently in the last 30 Ma on at least four occasions. This hypothesis has recently been proven for flounder and sculpin AFPs, which both originated by gene duplication and divergence followed by substantial gene copy number expansion. Here, we examined the origins of the cunner (wrasse) and snailfish (liparid) AFPs. The cunner AFP has arisen by a similar route from the duplication and divergence of a GIMAP gene. The coding region for this AFP stems from an alanine-rich region flanking the GTPase domain of GIMAPa. The AFP gene has remained in the GIMAP gene locus and has undergone amplification there along with the GIMAPa gene. The AFP gene originated after the cunner diverged from its common ancestor with the closely related spotty and ballan wrasses, which exhibit similar gene synteny but lack AFP genes. Snailfish AFPs have also recently evolved because they are confined to a single genus of this family. In these AFP-producing species, the AFP locus does not share any similarity to functional genes. Instead, it is replete with repetitive DNAs and transposons, several stretches of which could encode alanine tracts with a dominant codon (GCC) that matches the bias observed in the AFP genes. All four known instances of type I AFPs occurring in fishes are independent evolutionary events that occurred soon after the onset of Northern Hemisphere Cenozoic glaciation events. Collectively, these results provide a remarkable example of convergent evolution to one AFP type.

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来自四种不同祖细胞的I型抗冻蛋白对全球降温的趋同进化。
鱼类中富含丙氨酸的α -螺旋型I型抗冻蛋白(AFPs)被认为在过去30万年中至少有四次独立出现。这一假设最近在比目鱼和雕刻鱼的AFPs中得到了证实,它们都起源于基因复制和分化,随后是基因拷贝数的大量扩增。在这里,我们研究了康纳鱼(濑鱼)和蜗牛鱼(脂类)afp的起源。甲胎蛋白也是通过类似的途径从GIMAP基因的复制和分化中产生的。这种AFP的编码区源于GIMAPa GTPase结构域两侧的一个富含丙氨酸的区域。AFP基因保留在GIMAP基因座上,与GIMAPa基因一起在GIMAP基因座上扩增。甲胎蛋白基因起源于康纳鱼与其近亲斑点濑鱼和巴兰濑鱼的共同祖先分离后,斑点濑鱼和巴兰濑鱼表现出相似的基因同质性,但缺乏甲胎蛋白基因。蜗牛鱼的afp最近也在进化,因为它们只局限于这个科的一个属。在这些产生AFP的物种中,AFP位点与功能基因没有任何相似之处。相反,它充满了重复的dna和转座子,其中一些片段可以编码带有显性密码子(GCC)的丙氨酸束,这与AFP基因中观察到的偏差相匹配。在鱼类中发生的所有四种已知的I型afp都是在北半球新生代冰川事件开始后不久发生的独立进化事件。总的来说,这些结果提供了向一种AFP类型趋同进化的显著例子。
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来源期刊
BMC Molecular and Cell Biology
BMC Molecular and Cell Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
5.50
自引率
0.00%
发文量
46
审稿时长
27 weeks
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