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15000 Unique Zebrafish EST Clusters and Their Future Use in Microarray for Profiling Gene Expression Patterns During Embryogenesis

机译:15000个独特的斑马鱼EST簇及其在微阵列中用于胚胎发生过程中基因表达模式分析的未来用途

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摘要

A total of 15,590 unique zebrafish EST clusters from two cDNA libraries have been identified. Most significantly, only 22% (3437) of the 15,590 unique clusters matched 2805 (of 15,200) clusters in the Danio rerio UniGene database, indicating that our EST set is complementary to the existing ESTs in the public database and will be invaluable in assisting the annotation of genes based on the upcoming zebrafish genome sequence. Blast search showed that 7824 of our unique clusters matched 6710 known or predicted proteins in the nonredundant database. A cDNA microarray representing ∼3100 unique zebrafish cDNA clusters has been generated and used to profile the gene expression patterns across six different embryonic stages (cleavage, blastula, gastrula, segmentation, pharyngula, and hatching). Analysis of expression data using K-means clustering revealed that genes coding for muscle-specific proteins displayed similar expression patterns, confirming that the coordinate gene expression is important for myogenesis. Our results demonstrate that the combination of microarray technology with the zebrafish model system can provide useful information on how genes are coordinated in a genetic network to control zebrafish embryogenesis and can help to identify novel genes that are important for organogenesis.[Supplemental material is available online at . The sequence data from this study have been submitted to EMBL under accession nos. AL901610–AL928536.]
机译:从两个cDNA文库中总共鉴定出15,590个独特的斑马鱼EST簇。最重要的是,在15590个唯一集群中,只有22%(3437)与Danio rerio UniGene数据库中的2805个集群(在15200个集群中)相匹配,这表明我们的EST集是对公共数据库中现有EST的补充,对于帮助实现基于即将来临的斑马鱼基因组序列的基因注释。爆炸搜索显示,我们的7824个独特簇与非冗余数据库中的6710个已知或预测的蛋白质匹配。已经生成了代表约3100个独特斑马鱼cDNA簇的cDNA微阵列,并用于在六个不同的胚胎阶段(卵裂,囊胚,胃,分割,咽和孵化)中分析基因表达模式。使用K-means聚类分析表达数据后发现,编码肌肉特异性蛋白的基因显示出相似的表达模式,从而证实了协调基因的表达对于肌发生很重要。我们的结果表明,微阵列技术与斑马鱼模型系统的结合可以提供有关基因如何在遗传网络中进行协调以控制斑马鱼胚胎发生的有用信息,并有助于鉴定对器官发生重要的新基因。[补充材料可在线获得在 。该研究的序列数据已以登录号提交给EMBL。 AL901610–AL928536。]

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