首页> 外文期刊>BioEssays : >Gene silencing in non-model insects: Overcoming hurdles using symbiotic bacteria for trauma-free sustainable delivery of RNA interference Sustained RNA interference in insects mediated by symbiotic bacteria: Applications as a genetic tool and as a biocide
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Gene silencing in non-model insects: Overcoming hurdles using symbiotic bacteria for trauma-free sustainable delivery of RNA interference Sustained RNA interference in insects mediated by symbiotic bacteria: Applications as a genetic tool and as a biocide

机译:非模型昆虫中的基因沉默:克服障碍使用共生可持续递送的共生昆虫免疫递送的昆虫治疗昆虫治疗的昆虫(Symbiotic Bacteria)中的昆虫:作为遗传工具和杀生物剂的应用

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摘要

Insight into animal biology and development provided by classical genetic analysis of themodel organism Drosophila melanogaster was an incentive to develop advanced genetic tools for this insect. But genetic systems for the over one million other known insect species are largely undeveloped. With increasing information about insect genomes resulting from next generation sequencing, RNA interference is now the method of choice for reverse genetics, although it is constrained by the means of delivery of interfering RNA. A recent advance to ensure sustained delivery with minimal experimental intervention or trauma to the insect is to exploit commensal bacteria for symbiont-mediated RNA interference. This technology not only offers an efficient means for RNA interference in insects in laboratory conditions, but also has potential for use in the control of human disease vectors, agricultural pests and pathogens of beneficial insects.
机译:通过古典遗传分析对实际遗传分析进行了探讨了对实际遗传分析的动物生物学和发展是一种为这种昆虫开发先进的遗传工具的动机。 但是,超过100万众多已知的昆虫物种的遗传系统主要是未开发的。 随着下一代测序导致的昆虫基因组的信息,RNA干扰现在是反向遗传学的选择方法,尽管它受到干扰RNA的递送手段的限制。 最近的提前以确保持续递送对昆虫的最小实验干预或创伤是用于共生细菌的共生介导的RNA干扰。 该技术不仅为昆虫中的RNA干扰提供了实验室条件的有效手段,而且还具有用于控制人类疾病载体,农业害虫和有益昆虫病原体的可能性。

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