Jiang Liang, Xia Qingyou
State Key Laboratory of Silkworm Genome Biology, Southwest University, Chongqing 400715, PR China.
Insect Biochem Mol Biol. 2014 May;48:1-7. doi: 10.1016/j.ibmb.2014.02.003. Epub 2014 Feb 20.
Bombyx mori is a common lepidopteran model and an important economic insect for silk production. B. mori nucleopolyhedrovirus (BmNPV) is a typical pathogenic baculovirus that causes serious economic losses in sericulture. B. mori and BmNPV are a model of insect host and pathogen interaction including invasion of the host by the pathogen, host response, and enhancement of host resistance. The antiviral capacity of silkworms can be improved by transgenic technology such as overexpression of an endogenous or exogenous antiviral gene, RNA interference of the BmNPV gene, or regulation of the immune pathway to inhibit BmNPV at different stages of infection. Antiviral capacity could be further increased by combining different methods. We discuss the future of an antiviral strategy in silkworm, including possible improvement of anti-BmNPV, the feasibility of constructing transgenic silkworms with resistance to multiple viruses, and the safety of transgenic silkworms. The silkworm model could provide a reference for disease control in other organisms.
家蚕是一种常见的鳞翅目模式生物,也是用于丝绸生产的重要经济昆虫。家蚕核型多角体病毒(BmNPV)是一种典型的致病性杆状病毒,会给养蚕业造成严重经济损失。家蚕和BmNPV是昆虫宿主与病原体相互作用的一个模型,包括病原体对宿主的入侵、宿主反应以及宿主抗性的增强。通过转基因技术,如内源性或外源性抗病毒基因的过表达、BmNPV基因的RNA干扰或免疫途径的调控,可在感染的不同阶段抑制BmNPV,从而提高家蚕的抗病毒能力。将不同方法结合可进一步提高抗病毒能力。我们讨论了家蚕抗病毒策略的未来,包括抗BmNPV能力的可能提升、构建对多种病毒具有抗性的转基因家蚕的可行性以及转基因家蚕的安全性。家蚕模型可为其他生物体的疾病控制提供参考。