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海洋黄杆菌实时定量 PCR 中参考基因的评估。

Evaluation of reference genes for real-time quantitative PCR in the marine flavobacterium Zobellia galactanivorans.

机构信息

UPMC University Paris 6, UMR 7139 Marine Plants and Biomolecules, Station Biologique de Roscoff, F-29682 Roscoff, Bretagne, France.

出版信息

J Microbiol Methods. 2011 Jan;84(1):61-6. doi: 10.1016/j.mimet.2010.10.016. Epub 2010 Oct 31.

Abstract

The marine bacteria Zobellia galactanivorans is an emerging model microorganism for the bioconversion of algal polysaccharides. The sequence analysis of its genome opens the way to in-depth gene expression analysis, such as reverse transcription quantitative PCR (RT-qPCR) studies. The selection and validation of reference genes are a mandatory first step for the accurate quantification of transcripts. We selected fourteen candidate reference genes belonging to distinct pathways, namely replication, transcription, translation, citric acid cycle, amino acid, nucleotide and dihydrofolate metabolisms, and peptidoglycan, FMN and aromatic compounds synthesis. We quantified their expression by RT-qPCR in various culture conditions corresponding to different temperatures, carbon sources or stresses. The applications geNorm and Normfinder allowed ranking the genes according to their stability and gave concordant results. We found that the geometric average of the expression of glyA, icdA and gmkA can be confidently used to normalize the transcript abundance of genes of interest. In conclusion, this work provides a reliable procedure for gene expression analysis in the flavobacterium Z. galactanivorans and a validated set of reference genes to be used in future transcriptomics approaches. The strategy developed could also be the starting point for similar studies in other members of the Flavobacteria class.

摘要

海洋细菌 Zobellia galactanivorans 是一种新兴的模式微生物,可用于藻多糖的生物转化。其基因组的序列分析为深入的基因表达分析(如逆转录定量 PCR [RT-qPCR] 研究)开辟了道路。选择和验证参考基因是准确量化转录本的强制性第一步。我们选择了属于不同途径的 14 个候选参考基因,即复制、转录、翻译、柠檬酸循环、氨基酸、核苷酸和二氢叶酸代谢以及肽聚糖、FMN 和芳香化合物合成。我们通过 RT-qPCR 在对应于不同温度、碳源或胁迫的各种培养条件下定量了它们的表达。geNorm 和 Normfinder 的应用允许根据其稳定性对基因进行排序,并给出了一致的结果。我们发现,glyA、icdA 和 gmkA 的表达几何平均值可以可靠地用于归一化感兴趣基因的转录物丰度。总之,这项工作为黄杆菌属 Z. galactanivorans 的基因表达分析提供了可靠的程序,并提供了一套经过验证的参考基因,可用于未来的转录组学方法。所开发的策略也可以作为其他黄杆菌属成员中类似研究的起点。

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