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Construction of a robust microarray from a non-model species (largemouth bass) using pyrosequencing technology

机译:使用焦磷酸测序技术从非模型物种(大嘴鲈)构建鲁棒的微阵列

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摘要

A novel custom microarray for largemouth bass (Micropterus salmoides) was designed with sequences obtained from a normalized cDNA library using the 454 Life Sciences GS-20 pyrosequencer. This approach yielded in excess of 58 million bases of high-quality sequence. The sequence information was combined with 2,616 reads obtained by traditional suppressive subtractive hybridizations to derive a total of 31,391 unique sequences. Annotation and coding sequences were predicted for these transcripts where possible. 16,350 annotated transcripts were selected as target sequences for the design of the custom largemouth bass oligonucleotide microarray. The microarray was validated by examining the transcriptomic response in male largemouth bass exposed to 17β-œstradiol. Transcriptomic responses were assessed in liver and gonad, and indicated gene expression profiles typical of exposure to œstradiol. The results demonstrate the potential to rapidly create the tools necessary to assess large scale transcriptional responses in non-model species, paving the way for expanded impact of toxicogenomics in ecotoxicology.
机译:使用454 Life Sciences GS-20焦磷酸测序仪从标准化cDNA文库中获得序列,设计了一种针对大嘴鲈鱼的新型定制微阵列(Micropterus salmoides)。这种方法产生了超过5800万个高质量序列的碱基。将该序列信息与通过传统抑制性消减杂交获得的2,616个读段相结合,以得出总共31,391个独特序列。在可能的情况下,预测了这些转录本的注释和编码序列。选择了16,350个带注释的转录本作为目标序列,以设计定制的大口黑鲈寡核苷酸微阵列。通过检查暴露于17β-雌二醇的雄性大嘴鲈的转录组反应来验证微阵列。在肝脏和性腺中评估了转录组反应,并指出了暴露于雌二醇的典型基因表达谱。结果表明,可以快速创建评估非模型物种大规模转录反应所必需的工具,从而为毒理基因组学在生态毒理学领域扩大影响铺平了道路。

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