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Expression Patterns of Atlantic Sturgeon (Acipenser oxyrinchus) During Embryonic Development

机译:大西洋St鱼胚胎发育过程中的表达模式。

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摘要

During teleost ontogeny the larval and embryonic stages are key stages, since failure during this period of tissue differentiation may cause malformations, developmental delays, poor growth, and massive mortalities. Despite the rapid advances in sequencing technologies, the molecular backgrounds of the development of economically important but endangered fish species like the Atlantic sturgeon (Acipenser oxyrinchus) have not yet been thoroughly investigated. The current study examines the differential expression of transcripts involved in embryonic development of the Atlantic sturgeon. Addressing this goal, a reference transcriptome comprising eight stages was generated using an Illumina HiSequation 2500 platform. The constructed de novo assembly counted to 441,092 unfiltered and 179,564 filtered transcripts. Subsequently, the expression profile of four developmental stages ranging from early (gastrula) to late stages of prelarval development [2 d posthatching (dph)] were investigated applying an Illumina MiSeq platform. Differential expression analysis revealed distinct expression patterns among stages, especially between the two early and the two later stages. Transcripts upregulated at the two early stages were mainly enriched in transcripts linked to developmental processes, while transcripts expressed at the last two stages were mainly enriched in transcripts important to muscle contraction. Furthermore, important stage-specific expression has been detected for the hatching stage with transcripts enriched in molecule transport, and for the 2 dph stage with transcripts enriched in visual perception and lipid digestion. Our investigation represents a significant contribution to the understanding of Atlantic sturgeon embryonic development, and transcript characterization along with the differential expression results will significantly contribute to sturgeon research and aquaculture.
机译:在硬骨发育阶段,幼虫和胚胎阶段是关键阶段,因为在此组织分化阶段的失败可能导致畸形,发育迟缓,生长不良和大量死亡。尽管测序技术取得了飞速发展,但对经济上重要但濒临灭绝的鱼类(如大西洋urge鱼(Acipenser oxyrinchus))发展的分子背景尚未进行彻底研究。当前的研究检查了与大西洋urge鱼胚胎发育有关的转录本的差异表达。为了实现这一目标,使用Illumina HiSequation 2500平台生成了包含八个阶段的参考转录组。所构建的从头汇编计算为441,092个未过滤的成绩单和179,564个过滤的成绩单。随后,使用Illumina MiSeq平台研究了从幼虫发育的早期(胃)到后期的成熟阶段[孵化后2天(dph)]的四个发育阶段的表达谱。差异表达分析揭示了阶段之间,尤其是两个早期阶段和两个后期阶段之间的不同表达模式。在两个早期阶段上调的转录本主要富集与发育过程相关的转录本,而在最后两个阶段表达的转录本主要富集对肌肉收缩重要的转录本。此外,已经在孵化阶段检测到重要的阶段特异性表达,其中转录产物富含分子转运,而在2 dph阶段检测到转录产物富含视觉感知和脂质消化。我们的研究代表了对大西洋st鱼胚胎发育的理解的重要贡献,转录物特征以及差异表达结果将极大地促进st鱼研究和水产养殖。

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