Janus Danielle, Hoff Birgit, Hofmann Eckhard, Kück Ulrich
Lehrstuhl für Allgemeine und Molekulare Botanik, Ruhr-Universität, Universitätsstr. 150, D-44780 Bochum, Germany.
Appl Environ Microbiol. 2007 Feb;73(3):962-70. doi: 10.1128/AEM.02127-06. Epub 2006 Dec 1.
In filamentous fungi, RNA silencing is an attractive alternative to disruption experiments for the functional analysis of genes. We adapted the gene encoding the autofluorescent DsRed protein as a reporter to monitor the silencing process in fungal transformants. Using the cephalosporin C producer Acremonium chrysogenum, strains showing a high level of expression of the DsRed gene were constructed, resulting in red fungal colonies. Transfer of a hairpin-expressing vector carrying fragments of the DsRed gene allowed efficient silencing of DsRed expression. Monitoring of this process by Northern hybridization, real-time PCR quantification, and spectrofluorometric measurement of the DsRed protein confirmed that downregulation of gene expression can be observed at different expression levels. The usefulness of the DsRed silencing system was demonstrated by investigating cosilencing of DsRed together with pcbC, encoding the isopenicillin N synthase, an enzyme involved in cephalosporin C biosynthesis. Downregulation of pcbC can be detected easily by a bioassay measuring the antibiotic activity of individual strains. In addition, the presence of the isopenicillin N synthase was investigated by Western blot hybridization. All transformants having a colorless phenotype showed simultaneous downregulation of the pcbC gene, albeit at different levels. The RNA-silencing system presented here should be a powerful genetic tool for strain improvement and genome-wide analysis of this biotechnologically important filamentous fungus.
在丝状真菌中,RNA沉默是用于基因功能分析的破坏实验的一种有吸引力的替代方法。我们采用编码自发荧光DsRed蛋白的基因作为报告基因,以监测真菌转化体中的沉默过程。利用头孢菌素C产生菌产黄青霉,构建了显示高水平DsRed基因表达的菌株,从而产生红色真菌菌落。携带DsRed基因片段的发夹表达载体的转移使得DsRed表达能够有效沉默。通过Northern杂交、实时PCR定量以及DsRed蛋白的荧光分光光度法测量对这一过程进行监测,证实了在不同表达水平下均可观察到基因表达的下调。通过研究DsRed与编码异青霉素N合成酶(一种参与头孢菌素C生物合成的酶)的pcbC基因的共沉默,证明了DsRed沉默系统的实用性。通过测量单个菌株的抗生素活性的生物测定法可以轻松检测到pcbC的下调。此外,通过蛋白质免疫印迹杂交研究了异青霉素N合成酶的存在情况。所有具有无色表型的转化体均显示出pcbC基因的同时下调,尽管下调程度不同。本文介绍的RNA沉默系统应该是用于该具有重要生物技术意义的丝状真菌的菌株改良和全基因组分析的强大遗传工具。