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解析红粉甲虫 T. castaneum 中的系统性 RNA 干扰:影响 RNAi 效率的参数。

Dissecting systemic RNA interference in the red flour beetle Tribolium castaneum: parameters affecting the efficiency of RNAi.

机构信息

Division of Biology, Kansas State University, Manhattan, Kansas, United States of America.

出版信息

PLoS One. 2012;7(10):e47431. doi: 10.1371/journal.pone.0047431. Epub 2012 Oct 25.

Abstract

The phenomenon of RNAi, in which the introduction of dsRNA into a cell triggers the destruction of the corresponding mRNA resulting in a gene silencing effect, is conserved across a wide array of plant and animal phyla. However, the mechanism by which the dsRNA enters a cell, allowing the RNAi effect to occur throughout a multicellular organism (systemic RNAi), has only been studied extensively in certain plants and the nematode Caenorhabditis elegans. In recent years, RNAi has become a popular reverse genetic technique for gene silencing in many organisms. Although many RNAi techniques in non-traditional model organisms rely on the systemic nature of RNAi, little has been done to analyze the parameters required to obtain a robust systemic RNAi response. The data provided here show that the concentration and length of dsRNA have profound effects on the efficacy of the RNAi response both in regard to initial efficiency and duration of the effect in Tribolium castaneum. In addition, our analyses using a series of short dsRNAs and chimeric dsRNA provide evidence that dsRNA cellular uptake (and not the RNAi response itself) is the major step affected by dsRNA size in Tribolium. We also demonstrate that competitive inhibition of dsRNA can occur when multiple dsRNAs are injected together, influencing the effectiveness of RNAi. These data provide specific information essential to the design and implementation of RNAi based studies, and may provide insight into the molecular basis of the systemic RNAi response in insects.

摘要

RNAi 现象,即在细胞中引入双链 RNA(dsRNA)会触发相应 mRNA 的降解,从而导致基因沉默效应,这种现象在广泛的植物和动物门中都有保守。然而,dsRNA 进入细胞的机制,使得 RNAi 效应能够在多细胞生物中发生(系统性 RNAi),仅在某些植物和线虫秀丽隐杆线虫中得到了广泛研究。近年来,RNAi 已成为许多生物中基因沉默的一种流行的反向遗传学技术。尽管许多非传统模式生物中的 RNAi 技术依赖于 RNAi 的系统性,但很少有研究分析获得稳健的系统性 RNAi 反应所需的参数。这里提供的数据表明,dsRNA 的浓度和长度对 RNAi 反应的效果有深远的影响,无论是在初始效率还是在赤拟谷盗中的效应持续时间方面。此外,我们使用一系列短 dsRNA 和嵌合 dsRNA 的分析提供了证据,表明 dsRNA 细胞摄取(而不是 RNAi 反应本身)是 dsRNA 大小在赤拟谷盗中影响最大的步骤。我们还证明,当一起注射多个 dsRNA 时,dsRNA 会发生竞争性抑制,从而影响 RNAi 的有效性。这些数据提供了基于 RNAi 的研究设计和实施所必需的具体信息,并可能为昆虫中系统性 RNAi 反应的分子基础提供了一些见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2439/3484993/a73706ce2d2a/pone.0047431.g001.jpg

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