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Evolution of transgenerational immunity in invertebrates

机译:无脊椎动物的跨代免疫进化

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摘要

Over a decade ago, the discovery of transgenerational immunity in invertebrates shifted existing paradigms on the lack of sophistication of their immune system. Nonetheless, the prevalence of this trait and the ecological factors driving its evolution in invertebrates remain poorly understood. Here, we develop a theoretical host–parasite model and predict that long lifespan and low dispersal should promote the evolution of transgenerational immunity. We also predict that in species that produce both philopatric and dispersing individuals, it may pay to have a plastic allocation strategy with a higher transgenerational immunity investment in philopatric offspring because they are more likely to encounter locally adapted pathogens. We review all experimental studies published to date, comprising 21 invertebrate species in nine different orders, and we show that, as expected, longevity and dispersal correlate with the transfer of immunity to offspring. The validity of our prediction regarding the plasticity of investment in transgenerational immunity remains to be tested in invertebrates, but also in vertebrate species. We discuss the implications of our work for the study of the evolution of immunity, and we suggest further avenues of research to expand our knowledge of the impact of transgenerational immune protection in host–parasite interactions.
机译:十多年前,无脊椎动物中跨代免疫的发现改变了现有范例,因为它们的免疫系统不够完善。然而,这种特征的普遍性以及驱动其在无脊椎动物中进化的生态因素仍然知之甚少。在这里,我们建立了理论上的宿主-寄生虫模型,并预测长寿命和低扩散应该促进跨代免疫的发展。我们还预测,在同时产生个体化和散布个体的物种中,可能有必要采取塑料分配策略,并在亲子代后代中投资更高的跨代免疫能力,因为它们更可能遇到局部适应的病原体。我们回顾了迄今发表的所有实验研究,包括九个不同顺序的21个无脊椎动物物种,我们证明,正如预期的那样,寿命和分散性与免疫力向后代的转移相关。我们关于跨代免疫投资可塑性的预测是否有效,尚需在无脊椎动物和脊椎动物中进行检验。我们讨论了我们的工作对免疫进化研究的意义,并建议了进一步的研究途径,以扩大我们对跨代免疫保护对宿主-寄生虫相互作用的影响的认识。

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