【2h】

Analogies in the evolution of individual and social immunity

机译:个人和社会豁免权演变的类比

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摘要

We compare anti-parasite defences at the level of multicellular organisms and insect societies, and find that selection by parasites at these two organisational levels is often very similar and has created a number of parallel evolutionary solutions in the host's immune response. The defence mechanisms of both individuals and insect colonies start with border defences to prevent parasite intake and are followed by soma defences that prevent the establishment and spread of the parasite between the body's cells or the social insect workers. Lastly, germ line defences are employed to inhibit infection of the reproductive tissue of organisms or the reproductive individuals in colonies. We further find sophisticated selfon-self-recognition systems operating at both levels, which appear to be vital in maintaining the integrity of the body or colony as a reproductive entity. We then expand on the regulation of immune responses and end with a contemplation of how evolution may shape the different immune components, both within and between levels. The aim of this review is to highlight common evolutionary principles acting in disease defence at the level of both individual organisms and societies, thereby linking the fields of physiological and ecological immunology.
机译:我们在多细胞生物和昆虫社会的水平上比较了抗寄生虫的防御能力,发现在这两个组织水平上由寄生虫进行的选择通常非常相似,并在宿主的免疫反应中创造了许多平行的进化解决方案。个体和昆虫殖民地的防御机制都始于边界防御,以防止寄生虫摄入,然后是躯体防御,以防止寄生虫在人体细胞或社交昆虫工作者之间建立和扩散。最后,采用种系防御来抑制菌落中生物体或生殖个体的生殖组织的感染。我们还发现,复杂的自我/非自我识别系统可以在两个级别上运行,这对于维持作为生殖实体的身体或群体的完整性至关重要。然后,我们扩展了免疫应答的调控,并最终思考了进化如何影响不同的免疫成分,包括水平内和水平之间。这篇综述的目的是在个体有机体和社会的层面上强调在疾病防御中起作用的共同进化原理,从而将生理学和生态学免疫学领域联系起来。

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