长双链RNA的母系传播是甲虫持续亲本RNAi的重要途径

Thorsten Horn, Kalin D. Narov, Kristen A. Panfilio
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引用次数: 5

摘要

亲本RNA干扰(pRNAi)是一种功能强大且应用广泛的基因特异性敲除方法。然而,在昆虫中,它的功效因物种而异,并且系统反应如何从母亲传递给后代仍然难以捉摸。利用甲虫Tribolium castaneum,采用RT-qPCR策略区分了双链RNA (dsRNA)与内源性mRNA的存在。研究发现,注射的dsRNA直接传播到卵子中,并在整个胚胎发生过程中持续存在。尽管来自母体的dsRNA耗竭,但研究表明,在以菌株特异性速率减弱之前,强pRNAi可以持续数月。在寻找长dsRNA进入卵子的细胞摄取受体蛋白时,还提出了候选蛋白的系统基因组学分析方法。展示了一种基于分类层次评估的形态学聚类数据的可视化策略,该策略可以快速评估基因年龄和拷贝数变化,并通过基于序列的证据进行改进。节肢动物中sid -1样通道蛋白的反复丢失,包括对pRNAi高度敏感的异翅目昆虫(真正的昆虫)的大量丢失,因此被记录下来。总的来说,在dsRNA传播的长期系统性敲低的分子机制的突出问题的背景下,阐明了昆虫pRNAi的实际考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Persistent Parental RNAi in the Beetle Tribolium castaneum Involves Maternal Transmission of Long Double-Stranded RNA

Parental RNA interference (pRNAi) is a powerful and widely used method for gene-specific knockdown. Yet in insects its efficacy varies between species, and how the systemic response is transmitted from mother to offspring remains elusive. Using the beetle Tribolium castaneum, an RT-qPCR strategy to distinguish the presence of double-stranded RNA (dsRNA) from endogenous mRNA is reported. It is found that injected dsRNA is directly transmitted into the egg and persists throughout embryogenesis. Despite this depletion of dsRNA from the mother, it is shown that strong pRNAi can persist for months before waning at strain-specific rates. In seeking the receptor proteins for cellular uptake of long dsRNA into the egg, a phylogenomics profiling approach of candidate proteins is also presented. A visualization strategy based on taxonomically hierarchical assessment of orthology clustering data to rapidly assess gene age and copy number changes, refined by sequence-based evidence, is demonstrated. Repeated losses of SID-1-like channel proteins in the arthropods, including wholesale loss in the Heteroptera (true bugs), which are nonetheless highly sensitive to pRNAi, are thereby documented. Overall, practical considerations for insect pRNAi against a backdrop of outstanding questions on the molecular mechanism of dsRNA transmission for long-term, systemic knockdown are elucidated.

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