Wojda Iwona
Maria Curie-Sklodowska University, Faculty of Biology and Biotechnology, Institute of Biology and Biochemistry, Department of Immunobiology, Akademicka 19, 20-033, Lublin, Poland.
Insect Sci. 2017 Jun;24(3):342-357. doi: 10.1111/1744-7917.12325. Epub 2016 May 25.
Investigation of insect immune mechanisms provides important information concerning innate immunity, which in many aspects is conserved in animals. This is one of the reasons why insects serve as model organisms to study virulence mechanisms of human pathogens. From the evolutionary point of view, we also learn a lot about host-pathogen interaction and adaptation of organisms to conditions of life. Additionally, insect-derived antibacterial and antifungal peptides and proteins are considered for their potential to be applied as alternatives to antibiotics. While Drosophila melanogaster is used to study the genetic aspect of insect immunity, Galleria mellonella serves as a good model for biochemical research. Given the size of the insect, it is possible to obtain easily hemolymph and other tissues as a source of many immune-relevant polypeptides. This review article summarizes our knowledge concerning G. mellonella immunity. The best-characterized immune-related proteins and peptides are recalled and their short characteristic is given. Some other proteins identified at the mRNA level are also mentioned. The infectious routes used by Galleria natural pathogens such as Bacillus thuringiensis and Beauveria bassiana are also described in the context of host-pathogen interaction. Finally, the plasticity of G. mellonella immune response influenced by abiotic and biotic factors is described.
对昆虫免疫机制的研究为先天性免疫提供了重要信息,先天性免疫在许多方面在动物中是保守的。这就是昆虫作为研究人类病原体毒力机制的模式生物的原因之一。从进化的角度来看,我们也能学到很多关于宿主 - 病原体相互作用以及生物体对生活条件的适应性的知识。此外,昆虫来源的抗菌和抗真菌肽及蛋白质因其有潜力作为抗生素的替代品而受到关注。虽然黑腹果蝇用于研究昆虫免疫的遗传方面,但大蜡螟是生化研究的良好模型。鉴于昆虫的大小,可以轻松获得血淋巴和其他组织,作为许多与免疫相关的多肽的来源。这篇综述文章总结了我们关于大蜡螟免疫的知识。回顾了特征最明确的免疫相关蛋白质和肽,并给出了它们的简短特征。还提到了在mRNA水平鉴定出的一些其他蛋白质。在宿主 - 病原体相互作用的背景下,也描述了大蜡螟天然病原体如苏云金芽孢杆菌和白僵菌所使用的感染途径。最后,描述了受非生物和生物因素影响的大蜡螟免疫反应的可塑性。