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海洋硅藻三角褐指藻中的基因沉默

Gene silencing in the marine diatom Phaeodactylum tricornutum.

作者信息

De Riso Valentina, Raniello Raffaella, Maumus Florian, Rogato Alessandra, Bowler Chris, Falciatore Angela

机构信息

Laboratory of Ecology and Evolution of Plankton, Stazione Zoologica Anton Dohrn, Villa Comunale, 80121, Napoli, Italy.

出版信息

Nucleic Acids Res. 2009 Aug;37(14):e96. doi: 10.1093/nar/gkp448. Epub 2009 May 31.

Abstract

Diatoms are a major but poorly understood phytoplankton group. The recent completion of two whole genome sequences has revealed that they contain unique combinations of genes, likely recruited during their history as secondary endosymbionts, as well as by horizontal gene transfer from bacteria. A major limitation for the study of diatom biology and gene function is the lack of tools to generate targeted gene knockout or knockdown mutants. In this work, we have assessed the possibility of triggering gene silencing in Phaeodactylum tricornutum using constructs containing either anti-sense or inverted repeat sequences of selected target genes. We report the successful silencing of a GUS reporter gene expressed in transgenic lines, as well as the knockdown of endogenous phytochrome (DPH1) and cryptochrome (CPF1) genes. To highlight the utility of the approach we also report the first phenotypic characterization of a diatom mutant (cpf1). Our data open the way for reverse genetics in diatoms and represent a major advance for understanding their biology and ecology. Initial molecular analyses reveal that targeted downregulation likely occurs through transcriptional and post-transcriptional gene silencing mechanisms. Interestingly, molecular players involved in RNA silencing in other eukaryotes are only poorly conserved in diatoms.

摘要

硅藻是一个主要但却鲜为人知的浮游植物类群。最近完成的两个全基因组序列显示,它们含有独特的基因组合,这些基因可能是在其作为次生内共生体的历史过程中,以及通过从细菌的水平基因转移而获得的。研究硅藻生物学和基因功能的一个主要限制是缺乏生成靶向基因敲除或敲低突变体的工具。在这项工作中,我们评估了使用含有选定靶基因的反义或反向重复序列的构建体在三角褐指藻中引发基因沉默的可能性。我们报告了在转基因系中表达的GUS报告基因的成功沉默,以及内源光敏色素(DPH1)和隐花色素(CPF1)基因的敲低。为了突出该方法的实用性,我们还报告了硅藻突变体(cpf1)的首次表型特征分析。我们的数据为硅藻的反向遗传学开辟了道路,并代表了在理解其生物学和生态学方面的重大进展。初步的分子分析表明,靶向下调可能通过转录和转录后基因沉默机制发生。有趣的是,参与其他真核生物RNA沉默的分子元件在硅藻中仅具有很低的保守性。

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