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Recent advances in vertebrate and invertebrate transgenerational immunity in the light of ecology and evolution

机译:从生态学和进化的角度看脊椎动物和无脊椎动物跨代免疫的最新进展

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摘要

Parental experience with parasites and pathogens can lead to increased offspring resistance to infection, through a process known as transgenerational immune priming (TGIP). Broadly defined, TGIP occurs across a wide range of taxa, and can be viewed as a type of phenotypic plasticity, with hosts responding to the pressures of relevant local infection risk by altering their offspring’s immune defenses. There are ever increasing examples of both invertebrate and vertebrate TGIP, which go beyond classical examples of maternal antibody transfer. Here we critically summarize the current evidence for TGIP in both invertebrates and vertebrates. Mechanisms underlying TGIP remain elusive in many systems, but while it is unlikely that they are conserved across the range of organisms with TGIP, recent insight into epigenetic modulation may challenge this view. We place TGIP into a framework of evolutionary ecology, discussing costs and relevant environmental variation. We highlight how the ecology of species or populations should affect if, where, when, and how TGIP is realized. We propose that the field can progress by incorporating evolutionary ecology focused designs to the study of the so far well chronicled, but mostly descriptive TGIP, and how rapidly developing -omic methods can be employed to further understand TGIP across taxa.
机译:父母对寄生虫和病原体的经验可以通过称为“世代免疫启动”(TGIP)的过程来提高后代对感染的抵抗力。广义上讲,TGIP发生在广泛的分类单元中,可以看作是表型可塑性,宿主通过改变其后代的免疫防御能力来应对相关的局部感染风险。越来越多的无脊椎动物和脊椎动物TGIP实例,都超出了母源抗体转移的经典实例。在这里,我们批判性地总结了无脊椎动物和脊椎动物中TGIP的当前证据。 TGIP的基本机制在许多系统中仍然难以捉摸,但是尽管不太可能在使用TGIP的所有生物体中保守它们,但最近对表观遗传调控的见识可能会挑战这一观点。我们将TGIP置于进化生态学框架中,讨论成本和相关的环境变化。我们着重指出,如果实现了TGIP,那么物种或种群的生态应该如何影响,何时何地以及如何实现。我们建议通过将以进化生态学为重点的设计并入迄今已充分记载的,但主要是描述性的TGIP的研究中,以及如何采用快速发展的组学方法来进一步了解整个类群的TGIP,可以使该领域取得进展。

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