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杆状病毒-昆虫相互作用的基因组转录组学。

Genome scale transcriptomics of baculovirus-insect interactions.

机构信息

Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, St Lucia, QLD 4072, Australia.

出版信息

Viruses. 2013 Nov 12;5(11):2721-47. doi: 10.3390/v5112721.

Abstract

Baculovirus-insect cell technologies are applied in the production of complex proteins, veterinary and human vaccines, gene delivery vectors' and biopesticides. Better understanding of how baculoviruses and insect cells interact would facilitate baculovirus-based production. While complete genomic sequences are available for over 58 baculovirus species, little insect genomic information is known. The release of the Bombyx mori and Plutella xylostella genomes, the accumulation of EST sequences for several Lepidopteran species, and especially the availability of two genome-scale analysis tools, namely oligonucleotide microarrays and next generation sequencing (NGS), have facilitated expression studies to generate a rich picture of insect gene responses to baculovirus infections. This review presents current knowledge on the interaction dynamics of the baculovirus-insect system' which is relatively well studied in relation to nucleocapsid transportation, apoptosis, and heat shock responses, but is still poorly understood regarding responses involved in pro-survival pathways, DNA damage pathways, protein degradation, translation, signaling pathways, RNAi pathways, and importantly metabolic pathways for energy, nucleotide and amino acid production. We discuss how the two genome-scale transcriptomic tools can be applied for studying such pathways and suggest that proteomics and metabolomics can produce complementary findings to transcriptomic studies.

摘要

杆状病毒-昆虫细胞技术应用于复杂蛋白、兽用和人用疫苗、基因传递载体和生物农药的生产。更好地了解杆状病毒和昆虫细胞如何相互作用将有助于基于杆状病毒的生产。虽然已有超过 58 种杆状病毒物种的完整基因组序列,但对昆虫基因组的了解甚少。家蚕和小菜蛾基因组的发布,以及几种鳞翅目昆虫 EST 序列的积累,特别是两种基因组规模分析工具,即寡核苷酸微阵列和下一代测序(NGS)的可用性,促进了表达研究,为昆虫基因对杆状病毒感染的反应生成了丰富的图谱。这篇综述介绍了杆状病毒-昆虫系统相互作用动态的最新知识,与核衣壳运输、细胞凋亡和热休克反应相比,该系统相对得到了较好的研究,但在涉及生存途径、DNA 损伤途径、蛋白质降解、翻译、信号通路、RNAi 通路以及重要的能量、核苷酸和氨基酸产生代谢通路的反应方面仍知之甚少。我们讨论了如何应用这两种基因组规模的转录组学工具来研究这些通路,并建议蛋白质组学和代谢组学可以为转录组学研究提供补充发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19cd/3856412/cd04e55bf387/viruses-05-02721-g001.jpg

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