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首页> 外文期刊>Marine biotechnology >Gene expression patterns during the larval development of European sea bass (dicentrarchus labrax) by microarray analysis.
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Gene expression patterns during the larval development of European sea bass (dicentrarchus labrax) by microarray analysis.

机译:基因芯片在欧洲鲈鱼(dicentrarchus labrax)幼体发育过程中的基因表达模式。

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摘要

During the larval period, marine teleosts undergo very fast growth and dramatic changes in morphology, metabolism, and behavior to accomplish their metamorphosis into juvenile fish. Regulation of gene expression is widely thought to be a key mechanism underlying the management of the biological processes required for harmonious development over this phase of life. To provide an overall analysis of gene expression in the whole body during sea bass larval development, we monitored the expression of 6,626 distinct genes at 10 different points in time between 7 and 43 days post-hatching (dph) by using heterologous hybridization of a rainbow trout cDNA microarray. The differentially expressed genes (n = 485) could be grouped into two categories: genes that were generally up-expressed early, between 7 and 23 dph, and genes up-expressed between 25 and 43 dph. Interestingly, among the genes regulated during the larval period, those related to organogenesis, energy pathways, biosynthesis, and digestion were over-represented compared with total set of analyzed genes. We discuss the quantitative regulation of whole-body contents of these specific transcripts with regard to the ontogenesis and maturation of essential functions that take place over larval development. Our study is the first utilization of a transcriptomic approach in sea bass and reveals dynamic changes in gene expression patterns in relation to marine finfish larval development.
机译:在幼体时期,海洋硬骨鱼的生长非常快,并且在形态,新陈代谢和行为方面发生了巨大变化,从而完成了向幼鱼的蜕变。人们普遍认为,基因表达的调控是生命这一阶段和谐发展所需的生物过程管理的关键机制。为了提供整个鲈鱼幼体发育过程中整个基因表达的整体分析,我们通过使用彩虹的异源杂交监测了孵化后(dph)7至43天之间10个不同时间点的6,626个不同基因的表达鳟鱼cDNA微阵列。差异表达的基因(n = 485)可分为两类:通常在7到23 dph之间提早表达的基因,以及在25到43 dph之间提早表达的基因。有趣的是,在幼虫期调节的基因中,与器官发生,能量途径,生物合成和消化有关的基因与被分析基因的总集合相比被过度代表。我们讨论在幼虫发育过程中发生的基本功能的本体发生和成熟方面,这些特定转录本的全身含量的定量调节。我们的研究是转录组学方法在鲈鱼中的首次应用,它揭示了与海洋有鳍鱼幼体发育有关的基因表达模式的动态变化。

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