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Genome Sequencing of the Japanese Eel (Anguilla japonica) for Comparative Genomic Studies on tbx4 and a tbx4 Gene Cluster in Teleost Fishes

机译:日本鳗鱼的基因组测序用于比较硬骨鱼类tbx4和tbx4基因簇的基因组研究

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摘要

Limbs originated from paired fish fins are an important innovation in Gnathostomata. Many studies have focused on limb development-related genes, of which the T-box transcription factor 4 gene (tbx4) has been considered as one of the most essential factors in the regulation of the hindlimb development. We previously confirmed pelvic fin loss in tbx4-knockout zebrafish. Here, we report a high-quality genome assembly of the Japanese eel (Anguilla japonica), which is an economically important fish without pelvic fins. The assembled genome is 1.13 Gb in size, with a scaffold N50 of 1.03 Mb. In addition, we collected 24 tbx4 sequences from 22 teleost fishes to explore the correlation between tbx4 and pelvic fin evolution. However, we observed complete exon structures of tbx4 in several pelvic-fin-loss species such as Ocean sunfish (Mola mola) and ricefield eel (Monopterus albus). More interestingly, an inversion of a special tbx4 gene cluster (brip1-tbx4-tbx2b- bcas3) occurred twice independently, which coincides with the presence of fin spines. A nonsynonymous mutation (M82L) was identified in the nuclear localization sequence (NLS) of the Japanese eel tbx4. We also examined variation and loss of hindlimb enhancer B (HLEB), which may account for pelvic fin loss in Tetraodontidae and Diodontidae. In summary, we generated a genome assembly of the Japanese eel, which provides a valuable genomic resource to study the evolution of fish tbx4 and helps elucidate the mechanism of pelvic fin loss in teleost fishes. Our comparative genomic studies, revealed for the first time a potential correlation between the tbx4 gene cluster and the evolutionary development of toxic fin spines. Because fin spines in teleosts are usually venoms, this tbx4 gene cluster may facilitate the genetic engineering of toxin-related marine drugs.
机译:源于成对的鱼鳍的肢体是斜齿鱼的一项重要创新。许多研究集中在与肢体发育相关的基因上,其中T-box转录因子4基因(tbx4)被认为是调节后肢发育的最重要因素之一。我们先前确认了tbx4基因敲除斑马鱼的骨盆鳍损失。在这里,我们报告了日本鳗(Anguilla japonica)的高质量基因组装配,这是一种没有骨盆鳍的经济上重要的鱼类。组装的基因组大小为1.13 Gb,支架N50为1.03 Mb。此外,我们从22条硬骨鱼中收集了24个tbx4序列,以探索tbx4与骨盆鳍进化之间的相关性。但是,我们观察到了一些失落的骨盆鳍鳍物种中tbx4的完整外显子结构,例如海洋翻车鱼(Mola mola)和稻田鳗(Monopterus albus)。更有趣的是,一个特殊的tbx4基因簇(brip1-tbx4-tbx2b-bcas3)的倒置独立发生了两次,这与鳍棘的存在相吻合。在日本鳗tbx4的核定位序列(NLS)中鉴定出一个非同义突变(M82L)。我们还检查了后肢增强子B(HLEB)的变异和缺失,这可能是四齿科和双齿科骨盆鳍损失的原因。总而言之,我们生成了日本鳗鱼的基因组装配体,它为研究鱼类tbx4的进化提供了宝贵的基因组资源,并有助于阐明硬骨鱼中骨盆鳍损失的机制。我们的比较基因组研究首次揭示了tbx4基因簇与有毒鳍棘的进化之间的潜在相关性。由于硬骨鱼的鳍棘通常是毒液,因此该 tbx4 基因簇可能有助于毒素相关海洋药物的基因工程。

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