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Gene expression profiling of gilthead sea bream during early development and detection of stress-related genes by the application of cDNA microarray technology

机译:利用cDNA微阵列技术在银头鲷早期发育过程中的基因表达谱及与压力相关的基因检测

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摘要

Gene expression profiling of gilthead sea bream during early development and detection of stress-related genes by the application of cDNA microarray technology. Physiol Genomics 23: 182–191, 2005. First published July 26, 2005; doi:10.1152/physiolgenomics.00139.2005.—Large-scale gene expression studies were performed for one of the main European aquaculture species, the gilthead sea bream Sparus auratus L. For this purpose, a cDNA microarray containing 10,176 clones from a cDNA library of mixed embryonic and larval stages was constructed. In addition to its importance for aquaculture, the taxonomic position and the relatively small genome size of sea bream makes it a prospective model for evolutionary biology and comparative genomics. However, so far, no large-scale analysis of gene expression exists for this species. In the present study, gene expression was analyzed in gilthead sea bream during early development, a significant period in the determination of quantitative traits and therefore of considerable interest for aquaculture. Synexpression groups expressed primarily early and late in development were determined and were composed of both known and novel genes. Furthermore, it was possible to identify stress response genes induced by cortisol injections using the cDNA microarray generated. The creation of gene expression profiles for sea bream by microarray hybridization will accelerate identification of candidate genes involved in multifactorial traits and certain regulatory pathways and will also contribute to a better understanding of the genetic background of fish physiology, which may help to improve aquaculture practices.
机译:金头鲷在早期发育过程中的基因表达谱以及通过使用cDNA微阵列技术检测应激相关基因。 Physiol Genomics 23:182–191,2005年。2005年7月26日首次出版; doi:10.1152 / physiolgenomics.00139.2005。—对欧洲主要的水产养殖物种之一,金头鲷鲷Sparus auratus L进行了大规模基因表达研究。为此,一个cDNA微阵列包含来自混合cDNA库的10,176个克隆胚胎期和幼虫期被构建。除了对水产养殖的重要性外,鲷鱼的生物分类位置和相对较小的基因组大小使其成为进化生物学和比较基因组学的前瞻性模型。但是,到目前为止,还没有针对该物种的大规模基因表达分析。在本研究中,分析了金头鲷在早期发育过程中的基因表达,这是确定数量性状的重要时期,因此对水产养殖非常感兴趣。确定了主要在发育早期和晚期表达的同型表达组,它们由已知和新颖基因组成。此外,有可能使用产生的cDNA微阵列鉴定皮质醇注射引起的应激反应基因。通过微阵列杂交创建鲷鱼的基因表达谱将加速鉴定涉及多因素性状和某些调控途径的候选基因,还将有助于更好地了解鱼类生理学的遗传背景,这可能有助于改善水产养殖方法。

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