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Insertional mutagenesis in ChordinA induced by endogenous ΔTgf2 transposon leads to bifurcation of axial skeletal systems in grass goldfish

机译:内源性ΔTgf2转座子在ChordinA中引起的插入诱变导致草金鱼的轴向骨骼系统分叉

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摘要

The grass goldfish appeared early in the evolutionary history of goldfish, and shows heritable stability in the development of the caudal fin. The twin-tail phenotype is extremely rare, however, some twin-tail individuals were produced in the process of breeding for ornamental value. From mutations in the twin-tail goldfish genome, we identified two kinds of Tgf2 transposons. One type was completely sequenced Tgf2 and the other type was ΔTgf2, which had 858 bp missing. We speculate that the bifurcation of the axial skeletal system in goldfish may be caused by an endogenous ΔTgf2 insertion mutation in Chordin A, as ΔTgf2 has no transposition activity and blocks the expression of Chordin A. The twin-tail showed doubled caudal fin and accumulation of red blood cells in the tail. In addition, in situ hybridization revealed that ventral embryonic tissue markers (eve1, sizzled, and bmp4) were more widely and strongly expressed in the twin-tail than in the wild-type embryos during the gastrula stage, and bmp4 showed bifurcated expression patterns in the posterior region of the twin-tail embryos. These results provide new insights into the artificial breeding of genetically stable twin-tail grass goldfish families.
机译:草金鱼出现在金鱼的进化史的早期,并在尾鳍的发育中显示出可遗传的稳定性。双尾表型极为罕见,但是,在育种过程中产生了一些双尾个体以具有观赏价值。从双尾金鱼基因组中的突变,我们确定了两种Tgf2转座子。一种类型是完全测序的Tgf2,另一种类型是ΔTgf2,其缺失858 bp。我们推测金鱼的轴向骨骼系统分叉可能是由Chordin A中的内源性ΔTgf2插入突变引起的,因为ΔTgf2没有转座活性并阻止了Chordin A的表达。双尾显示出双尾鳍和and尾巴有红细胞。此外,原位杂交显示,腹胚期胚胎腹侧胚胎组织标志物(eve1,sizzled和bmp4)在野生型胚中比野生型胚更广泛和强烈地表达,而bmp4在小鼠胚芽中呈分叉表达模式。双尾胚胎的后部区域。这些结果为遗传稳定的双尾草金鱼科的人工繁殖提供了新的见识。

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