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Developmental transcriptomic analyses for mechanistic insights into critical pathways involved in embryogenesis of pelagic mahi-mahi (Coryphaena hippurus)

机译:发育转录组学分析,用于深入了解中上层海洋(Coryphaena hippurus)胚胎发生所涉及的关键途径的机制

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摘要

Mahi-mahi (Coryphaena hippurus) is a commercially and ecologically important species of fish occurring in tropical and temperate waters worldwide. Understanding early life events is crucial for predicting effects of environmental stress, which is largely restricted by a lack of genetic resources regarding expression of early developmental genes and regulation of pathways. The need for anchoring developmental stages to transcriptional activities is highlighted by increasing evidence on the impacts of recurrent worldwide oil spills in this sensitive species during early development. By means of high throughput sequencing, we characterized the developmental transcriptome of mahi-mahi at three critical developmental stages, from pharyngula embryonic stage (24 hpf) to 48 hpf yolk-sac larva (transition 1), and to 96 hpf free-swimming larva (transition 2). With comparative analysis by multiple bioinformatic tools, a larger number of significantly altered genes and more diverse gene ontology terms were observed during transition 2 than transition 1. Cellular and tissue development terms were more significantly enriched in transition 1, while metabolism related terms were more enriched in transition 2, indicating a switch progressing from general embryonic development to metabolism during the two transitions. Special focus was given on the most significant common canonical pathways (e.g. calcium signaling, glutamate receptor signaling, cAMP response element-binding protein signaling, cardiac β-adrenergic signaling, etc.) and expression of developmental genes (e.g. collagens, myosin, notch, glutamate metabotropic receptor etc.), which were associated with morphological changes of nervous, muscular, and cardiovascular system. These data will provide an important basis for understanding embryonic development and identifying molecular mechanisms of abnormal development in fish species.
机译:Mahi-mahi(Coryphaena hippurus)是世界上热带和温带水域中商业上和生态上重要的鱼类。了解早期生活事件对于预测环境压力的影响至关重要,而环境压力在很大程度上受到缺乏有关早期发育基因表达和途径调控的遗传资源的限制。越来越多的证据表明,在早期发育过程中,全球反复发生的石油泄漏对该敏感物种造成的影响,突显了将发育阶段锚定在转录活动上的必要性。通过高通量测序,我们表征了mahi-mahi在三个关键发育阶段的发育转录组,从咽胚期(24 hpf)到48 hpf卵黄囊幼虫(过渡1),以及96 hpf自由游动幼虫。 (转换2)。通过多种生物信息学工具的比较分析,与过渡1相比,在过渡2中观察到了大量显着改变的基因和更多样化的基因本体术语。在过渡1中,细胞和组织发育术语的含量更高,而与代谢相关的术语的含量更高在过渡期2中,表明在这两个过渡期中从一般胚胎发育向新陈代谢的转变。特别关注最重要的常见规范途径(例如钙信号传导,谷氨酸受体信号传导,cAMP反应元件结合蛋白信号传导,心脏β-肾上腺素信号传导等)和发育基因(例如胶原蛋白,肌球蛋白,缺口,谷氨酸代谢型受体等),与神经,肌肉和心血管系统的形态变化有关。这些数据将为理解鱼类发育和鉴定鱼类异常发育的分子机制提供重要的基础。

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