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海马育儿袋转录组揭示了与脊椎动物妊娠相关的常见基因。

Seahorse Brood Pouch Transcriptome Reveals Common Genes Associated with Vertebrate Pregnancy.

机构信息

Institute of Evolutionary Biology and Environmental Studies, University of Zurich, Zurich, Switzerland School of Biological Sciences, The University of Sydney, Sydney, NSW, Australia

Institute of Evolutionary Biology and Environmental Studies, University of Zurich, Zurich, Switzerland.

出版信息

Mol Biol Evol. 2015 Dec;32(12):3114-31. doi: 10.1093/molbev/msv177. Epub 2015 Sep 1.

Abstract

Viviparity (live birth) has evolved more than 150 times in vertebrates, and represents an excellent model system for studying the evolution of complex traits. There are at least 23 independent origins of viviparity in fishes, with syngnathid fishes (seahorses and pipefish) unique in exhibiting male pregnancy. Male seahorses and pipefish have evolved specialized brooding pouches that provide protection, gas exchange, osmoregulation, and limited nutrient provisioning to developing embryos. Pouch structures differ widely across the Syngnathidae, offering an ideal opportunity to study the evolution of reproductive complexity. However, the physiological and genetic changes facilitating male pregnancy are largely unknown. We used transcriptome profiling to examine pouch gene expression at successive gestational stages in a syngnathid with the most complex brood pouch morphology, the seahorse Hippocampus abdominalis. Using a unique time-calibrated RNA-seq data set including brood pouch at key stages of embryonic development, we identified transcriptional changes associated with brood pouch remodeling, nutrient and waste transport, gas exchange, osmoregulation, and immunological protection of developing embryos at conception, development and parturition. Key seahorse transcripts share homology with genes of reproductive function in pregnant mammals, reptiles, and other live-bearing fish, suggesting a common toolkit of genes regulating pregnancy in divergent evolutionary lineages.

摘要

胎生(活体分娩)在脊椎动物中已经进化了超过 150 次,是研究复杂特征进化的绝佳模型系统。鱼类中有至少 23 个独立的胎生起源,而海龙目鱼类(海马和海龙)则以雄性妊娠为独特特征。雄性海马和海龙已经进化出了专门的育儿袋,为发育中的胚胎提供保护、气体交换、渗透压调节和有限的营养供应。育儿袋结构在海龙目中差异很大,为研究生殖复杂性的进化提供了理想的机会。然而,促进雄性妊娠的生理和遗传变化在很大程度上尚不清楚。我们使用转录组谱分析来研究具有最复杂育儿袋形态的海龙目鱼类——海马 Hippocampus abdominalis 在连续妊娠阶段的育儿袋基因表达。利用独特的时间校准 RNA-seq 数据集,包括胚胎发育关键阶段的育儿袋,我们鉴定了与育儿袋重塑、营养和废物运输、气体交换、渗透压调节以及发育中胚胎免疫保护相关的转录变化,这些变化发生在受孕、发育和分娩时。关键的海马转录本与妊娠哺乳动物、爬行动物和其他胎生鱼类的生殖功能基因具有同源性,这表明在不同的进化谱系中,调节妊娠的基因具有共同的工具包。

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