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通过靶向 siRNAs 进行真菌基因研究:一种快速解析 Aspergillus nidulans 基因功能的工具。

Targeting fungal genes by diced siRNAs: a rapid tool to decipher gene function in Aspergillus nidulans.

机构信息

Department of Genetics, University of Delhi South Campus, New Delhi, India.

出版信息

PLoS One. 2013 Oct 10;8(10):e75443. doi: 10.1371/journal.pone.0075443. eCollection 2013.

Abstract

BACKGROUND

Gene silencing triggered by chemically synthesized small interfering RNAs (siRNAs) has become a powerful tool for deciphering gene function in many eukaryotes. However, prediction and validation of a single siRNA duplex specific to a target gene is often ineffective. RNA interference (RNAi) with synthetic siRNA suffers from lower silencing efficacy, off-target effects and is cost-intensive, especially for functional genomic studies. With the explosion of fungal genomic information, there is an increasing need to analyze gene function in a rapid manner. Therefore, studies were performed in order to investigate the efficacy of gene silencing induced by RNase III-diced-siRNAs (d-siRNA) in model filamentous fungus, Aspergillus nidulans.

METHODOLOGY/PRINCIPAL FINDINGS: Stable expression of heterologous reporter gene in A. nidulans eases the examination of a new RNAi-induction route. Hence, we have optimized Agrobacterium tumefaciens-mediated transformation (AMT) of A. nidulans for stable expression of sGFP gene. This study demonstrates that the reporter GFP gene stably introduced into A. nidulans can be effectively silenced by treatment of GFP-d-siRNAs. We have shown the down-regulation of two endogenous genes, AnrasA and AnrasB of A. nidulans by d-siRNAs. We have also elucidated the function of an uncharacterized Ras homolog, rasB gene, which was found to be involved in hyphal growth and development. Further, silencing potency of d-siRNA was higher as compared to synthetic siRNA duplex, targeting AnrasA. Silencing was shown to be sequence-specific, since expression profiles of other closely related Ras family genes in d-siRNA treated AnrasA and AnrasB silenced lines exhibited no change in gene expression.

CONCLUSIONS/SIGNIFICANCE: We have developed and applied a fast, specific and efficient gene silencing approach for elucidating gene function in A. nidulans using d-siRNAs. We have also optimized an efficient AMT in A. nidulans, which is useful for stable integration of transgenes.

摘要

背景

通过化学合成的小干扰 RNA(siRNA)触发的基因沉默已成为许多真核生物中破译基因功能的强大工具。然而,对特定于靶基因的单个 siRNA 双链体的预测和验证通常无效。用合成 siRNA 进行 RNA 干扰(RNAi)的效果较差,存在脱靶效应且成本高,尤其是对于功能基因组研究。随着真菌基因组信息的爆炸式增长,人们越来越需要快速分析基因功能。因此,进行了研究以调查模型丝状真菌 Aspergillus nidulans 中由 RNase III 切割的 siRNA(d-siRNA)诱导基因沉默的效果。

方法/主要发现:在 A. nidulans 中稳定表达异源报告基因可简化新 RNAi 诱导途径的检查。因此,我们优化了农杆菌介导的转化(AMT)来稳定表达 sGFP 基因。这项研究表明,稳定引入 A. nidulans 的报告 GFP 基因可通过 GFP-d-siRNA 处理有效地被沉默。我们已经证明了两个内源性基因 AnrasA 和 AnrasB 的下调。我们还阐明了一个未被表征的 Ras 同源物 rasB 基因的功能,该基因参与菌丝生长和发育。此外,与靶向 AnrasA 的合成 siRNA 双链体相比,d-siRNA 的沉默效力更高。沉默是序列特异性的,因为在 d-siRNA 处理的 AnrasA 和 AnrasB 沉默系中,其他密切相关的 Ras 家族基因的表达谱没有显示基因表达的变化。

结论/意义:我们已经开发并应用了一种快速,特异和有效的基因沉默方法,用于使用 d-siRNA 阐明 A. nidulans 中的基因功能。我们还优化了 A. nidulans 中的高效 AMT,这对于转基因的稳定整合很有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29da/3794931/28b38a92e017/pone.0075443.g001.jpg

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