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Trojan Horse Strategy for Non-invasive Interference of Clock Gene in the Oyster Crassostrea gigas

机译:Trojan马策略在牡蛎鲫鱼中钟基因的非侵入性干扰

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摘要

RNA interference is a powerful method to inhibit specific gene expression. Recently, silencing target genes by feeding has been successfully carried out in nematodes, insects, and small aquatic organisms. A non-invasive feeding-based RNA interference is reported here for the first time in a mollusk bivalve, the pacific oyster Crassostrea gigas. In this Trojan horse strategy, the unicellular alga Heterocapsa triquetra is the food supply used as a vector to feed oysters with Escherichia coli strain HT115 engineered to express the double-stranded RNA targeting gene. To test the efficacy of the method, the Clock gene, a central gene of the circadian clock, was targeted for knockout. Results demonstrated specific and systemic efficiency of the Trojan horse strategy in reducing Clock mRNA abundance. Consequences of Clock disruption were observed in Clock-related genes (Bmal, Tim1, Per, Cry1, Cry2, Rev. - erb, and Ror) and triploid oysters were more sensitive than diploid to the interference. This non-invasive approach shows an involvement of the circadian clock in oyster bioaccumulation of toxins produced by the harmful alga Alexandrium minutum.
机译:RNA干扰是抑制特异性基因表达的强大方法。最近,通过饲养的沉默靶基因已成功地在线虫,昆虫和小水生生物中进行。这里首次在MOLLUSK Bivalve,Pacific Oyster Crassostrea Gigas中首次报道了基于非侵入性喂养的RNA干扰。在这种特洛伊木马策略中,单细胞藻类杂草族曲醌是用作饲喂牡蛎的载体的食物供应,用大肠杆菌菌株HT115设计以表达双链RNA靶向基因。为了测试该方法的疗效,昼夜钟表的中央基因的时钟基因是针对淘汰的。结果证明了减少时钟mRNA丰富的特洛伊木马策略的具体和系统效率。在与时钟相关基因中观察到时钟中断的后果(BMAL,TIM1,每,Cry1,Cry2,Rev. - Erb和ROR)和三倍体牡蛎比二倍体更敏感到干扰。这种非侵入性方法涉及昼夜节拍时钟在牡蛎生物积累中由有害藻类亚历山大芽孢杆菌产生的毒素。

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