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首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Construction and application of a gene silencing system using a dual promoter silencing vector in Hypsizygus marmoreus
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Construction and application of a gene silencing system using a dual promoter silencing vector in Hypsizygus marmoreus

机译:利用双启动子Marmoreus使用双启动子沉默载体的基因沉默系统的构建与应用

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摘要

As efficient reverse genetic tools are lacking, molecular genetics research has been limited in Hypsizygus marmoreus. In this study, we firstly constructed a gene-silencing method using a dual promoter vector (DPV) which was driven by gpd and 35S promoters. The DPV was introduced into H. marmoreus via a simple electroporation procedure and the highest silenced rate of ura3 gene was 76.6%, indicating that the DPV might be suitable for gene silencing in basidiomycete. In this silencing system, the endogenous orotidine 5-monophosphate decarboxylase gene (ura3) was used as a selectable marker. Besides, we also constructed another silencing system which could silence the ura3 and other genes (lcc1 encoded laccase1) together in H. marmoreus, and named it as co-silencing system. In the co-silenced transformants, we found that the mycelia were thinner and the growth was slower than in the wild-type and control2 strains, which was accordant with the previous study of lcc1 gene, indicating that the selective efficiency of the RNAi-mediated silencing of several genes might be increased by co-silencing ura3. The development of this molecular tool might improve functional studies of multiple genes in the basidiomycete H. marmoreus and also provide a reference for studies of other basidiomycetes.
机译:由于缺乏有效的逆向遗传工具,分子遗传学研究受到Hymsizygus Marmoreus的限制。在这项研究中,我们首先使用GPD和35S启动子驱动的双启动子载体(DPV)构建了一种基因沉默方法。通过简单的电穿孔程序将DPV引入H.Marmoreus中,URA3基因的最高沉默率为76.6%,表明DPV可能适用于基因霉素中的基因沉默。在该沉默系统中,使用内源性ortOTININ 5-单磷酸脱羧酶基因(URA3)作为选择标记。此外,我们还构建了另一个沉默系统,可以将URA3和其他基因(LCC1编码LACCASE1)沉默在H. Marmoreus中,并将其命名为共沉默系统。在共沉默的转化体中,我们发现菌丝体较薄,并且增长慢于野生型和对照2菌株,这与先前对LCC1基因的研究一致,表明RNAi介导的选择性效率通过共沉默的URA3可以增加几个基因的沉默。该分子工具的发展可以改善底霉素H. Marmoreus中多种基因的功能研究,并为其他底肌细胞的研究提供了参考。

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