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首页> 外文期刊>Marine biotechnology >Inhibition of pds gene expression via the RNA interference approach in Dunaliella salina (Chlorophyta)
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Inhibition of pds gene expression via the RNA interference approach in Dunaliella salina (Chlorophyta)

机译:通过RNA干扰方法抑制杜氏盐藻(Chlorophyta)中的pds基因表达

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摘要

To investigate the potential of double-stranded RNA interferencing with gene expression in Dunaliella salina, a plasmid pBIRNAI-Dsa was constructed to express hairpin RNA (hpRNA) containing sequences homologous to phytoene desaturase gene (pds), a key gene in carotenoid biosynthesis, and transformed into D. salina by electroporation. The relative transcription level of pds in pBIRNAI-Dsa-treated cells to nontreated cells was quantitated and the gene silencing efficiency by RNAi was evaluated via real-time polymerase chain reaction (PCR). The transcriptions of pds of the pBIRNAI-Dsa-treated group changed compared to those of the control group, and the 2(-Delta Delta CT) was lowest on the 7th day, corresponding to 0.281265-fold of the relative pds control transcript; a relatively strong gene inhibition effect was therefore deduced. The transcript of pds may be modulated in a wide range, and a reduced transcription even to 28% of the normal level may be tolerated for its survival. This study shows that dsRNA-mediated genetic interference can induce sequence-specific inhibition of gene expression and pBIRNAI-Dsa can be used for transient suppression of gene expression in D. salina. The aim of this study was to exploit dsRNA-mediated gene silencing and to provide a foundation for gene function research in D. salina.
机译:为了研究双链RNA干扰杜氏盐藻中基因表达的潜力,构建了质粒pBIRNAI-Dsa以表达发夹RNA(hpRNA),该发夹RNA包含与类胡萝卜素去饱和酶基因(pds)(类胡萝卜素生物合成的关键基因)同源的序列,并通过电穿孔转化为盐藻。定量pBIRNAI-Dsa处理的细胞与未处理的细胞中pds的相对转录水平,并通过实时聚合酶链反应(PCR)评估RNAi对基因的沉默效率。与对照组相比,pBIRNAI-Dsa处理组的pds转录发生了变化,第7天的2(-Delta Delta CT)最低,对应于相对pds对照转录本的0.281265倍;因此推断出相对强的基因抑制作用。 pds的转录本可以在很宽的范围内调节,其存活率甚至可以忍受转录降低至正常水平的28%。这项研究表明,dsRNA介导的遗传干扰可以诱导基因表达的序列特异性抑制,而pBIRNAI-Dsa可以用于盐藻中基因表达的瞬时抑制。这项研究的目的是开发dsRNA介导的基因沉默,并为盐藻中的基因功能研究提供基础。

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