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雀鳝的基因组组成结构与哺乳动物的相似性高于其他硬骨鱼。

Genome Compositional Organization in Gars Shows More Similarities to Mammals than to Other Ray-Finned Fish.

作者信息

Symonová Radka, Majtánová Zuzana, Arias-Rodriguez Lenin, Mořkovský Libor, Kořínková Tereza, Cavin Lionel, Pokorná Martina Johnson, Doležálková Marie, Flajšhans Martin, Normandeau Eric, Ráb Petr, Meyer Axel, Bernatchez Louis

机构信息

Laboratory of Fish Genetics, Institute of Animal Physiology and Genetics, The Czech Academy of Sciences, Liběchov, Czech Republic.

Department of Zoology, Faculty of Science, Charles University, Prague 2, Czech Republic.

出版信息

J Exp Zool B Mol Dev Evol. 2017 Nov;328(7):607-619. doi: 10.1002/jez.b.22719. Epub 2016 Dec 30.

Abstract

Genomic GC content can vary locally, and GC-rich regions are usually associated with increased DNA thermostability in thermophilic prokaryotes and warm-blooded eukaryotes. Among vertebrates, fish and amphibians appeared to possess a distinctly less heterogeneous AT/GC organization in their genomes, whereas cytogenetically detectable GC heterogeneity has so far only been documented in mammals and birds. The subject of our study is the gar, an ancient "living fossil" of a basal ray-finned fish lineage, known from the Cretaceous period. We carried out cytogenomic analysis in two gar genera (Atractosteus and Lepisosteus) uncovering a GC chromosomal pattern uncharacteristic for fish. Bioinformatic analysis of the spotted gar (Lepisosteus oculatus) confirmed a GC compartmentalization on GC profiles of linkage groups. This indicates a rather mammalian mode of compositional organization on gar chromosomes. Gars are thus the only analyzed extant ray-finned fishes with a GC compartmentalized genome. Since gars are cold-blooded anamniotes, our results contradict the generally accepted hypothesis that the phylogenomic onset of GC compartmentalization occurred near the origin of amniotes. Ecophysiological findings of other authors indicate a metabolic similarity of gars with mammals. We hypothesize that gars might have undergone convergent evolution with the tetrapod lineages leading to mammals on both metabolic and genomic levels. Their metabolic adaptations might have left footprints in their compositional genome evolution, as proposed by the metabolic rate hypothesis. The genome organization described here in gars sheds new light on the compositional genome evolution in vertebrates generally and contributes to better understanding of the complexities of the mechanisms involved in this process.

摘要

基因组的GC含量在局部可能会有所不同,在嗜热原核生物和温血真核生物中,富含GC的区域通常与DNA热稳定性的增加有关。在脊椎动物中,鱼类和两栖动物的基因组中AT/GC组织的异质性明显较低,而细胞遗传学上可检测到的GC异质性目前仅在哺乳动物和鸟类中得到记录。我们研究的对象是雀鳝,它是一种古老的“活化石”,属于基底辐鳍鱼谱系,可追溯到白垩纪时期。我们对两个雀鳝属(雀鳝属和长吻雀鳝属)进行了细胞基因组分析,发现了一种鱼类特有的GC染色体模式。对斑点雀鳝(眼斑雀鳝)的生物信息学分析证实了连锁群的GC谱上存在GC分区。这表明雀鳝染色体上的组成组织模式相当类似于哺乳动物。因此,雀鳝是唯一被分析过的现存辐鳍鱼,其基因组具有GC分区。由于雀鳝是冷血无羊膜动物,我们的结果与普遍接受的假说相矛盾,该假说认为GC分区的系统基因组起始发生在羊膜动物起源附近。其他作者的生态生理学研究结果表明雀鳝与哺乳动物在代谢上具有相似性。我们假设雀鳝可能在代谢和基因组水平上与导致哺乳动物的四足动物谱系发生了趋同进化。正如代谢率假说所提出的,它们的代谢适应可能在其组成基因组进化中留下了印记。这里描述的雀鳝基因组组织为脊椎动物的组成基因组进化提供了新的视角,有助于更好地理解这一过程中所涉及机制的复杂性。

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