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Zebrafish tbx5 paralogs demonstrate independent essential requirements in cardiac and pectoral fin development

机译:斑马鱼tbx5旁系同源物显示了心脏和胸鳍发育的独立基本要求

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Background: T-box genes constitute a large family of transcriptional regulators involved in developmental patterning. Homozygous mutation of tbx5 leads to embryonic lethal cardiac phenotypes and forelimb malformations in vertebrate models. Haploinsufficiency of tbx5 results in Holt-Oram syndrome, a human congenital disease characterized by cardiac and forelimb defects. Homozygous mutation of zebrafish tbx5a leads to lethal defects in cardiac looping morphogenesis, blocks pectoral fin initiation, and impairs outgrowth. Recently, a second zebrafish tbx5 gene was described, termed tbx5b. Results: Our phylogenetic analyses confirm tbx5b as a paralog that likely arose in the teleost-specific whole genome duplication ~270 MYA. Using morpholino depletion studies, we find that tbx5b is required in the heart for embryonic survival, and influences the timing and morphogenesis of pectoral fin development. Because tbx5a hypomorphic mutations are embryonic lethal, tbx5a and tbx5b functions in the heart must not be completely redundant. Consistent with this hypothesis, simultaneous depletion of both tbx5 paralogs did not lead to more severe phenotypes, and injection of wild-type mRNA from one tbx5 paralog was not sufficient to cross-rescue phenotypes of the paralogous gene. Conclusions: Collectively, these data indicate that, despite similar spatio-temporal expression patterns, tbx5a and tbx5b have independent functions in heart and fin development.
机译:背景:T-box基因构成了涉及发育模式的大量转录调节因子家族。 tbx5的纯合突变导致脊椎动物模型中的胚胎致死性心脏表型和前肢畸形。 tbx5的单倍剂量不足会导致Holt-Oram综合征,这是一种以心脏和前肢缺陷为特征的人类先天性疾病。斑马鱼tbx5a的纯合突变导致心脏循环形态发生中的致命缺陷,阻止胸鳍的启动,并损害其生长。最近,描述了第二个斑马鱼tbx5基因,称为tbx5b。结果:我们的系统发育分析证实tbx5b是可能发生在硬骨质特异性全基因组复制〜270 MYA中的旁系同源物。使用吗啉代耗竭研究,我们发现tbx5b在心脏中对于胚胎存活是必需的,并且会影响胸鳍发育的时间和形态发生。由于tbx5a的亚型突变是胚胎致死的,因此心脏中的tbx5a和tbx5b功能一定不能完全多余。与此假设相符,两个tbx5旁系同源物的同时消耗并没有导致更严重的表型,并且从一个tbx5旁系同源物注入野生型mRNA不足以交叉拯救旁系同源基因的表型。结论:总体而言,这些数据表明,尽管时空表达模式相似,但tbx5a和tbx5b在心脏和鳍的发育中具有独立的功能。

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