Flanagan Ben A, Fuess Lauren E, Vrtílek Milan, Roth-Monzón Andrea, Bolnick Daniel I
Department of Ecology and Evolutionary Biology University of Connecticut Storrs, CT 06269, USA.
Department of Biology, Texas State University, San Marcos, TX 78666, USA.
bioRxiv. 2024 Dec 17:2024.12.13.628417. doi: 10.1101/2024.12.13.628417.
Our understanding of the vertebrate immune system is dominated by a few model organisms such as mice. This use of a few model systems is reasonable if major features of the immune systems evolve slowly and are conserved across most vertebrates, but may be problematic if there is substantial macroevolutionary change in immune responses. Here, we present a test of the macroevolutionary stability, across 15 species of jawed fishes, of the transcriptomic response to a standardized immune challenge. Intraperitoneal injection of an immune adjuvant (alum) induces a fibrosis response in nearly all jawed fishes, which in some species contributes to anti-helminth resistance. Despite this conserved phenotypic response, the underlying transcriptomic response is highly inconsistent across species. Although many gene orthogroups exhibit differential expression between saline versus alum-injected fish in at least one species, few orthogroups exhibit consistent differential expression across species. This result suggests that although the phenotypic response to alum (fibrosis) is highly conserved, the underlying gene regulatory architecture is very flexible and cannot readily be extrapolated from any one species to fishes (or vertebrates) more broadly. The vertebrate immune response is remarkably changeable over macroevolutionary time, requiring a diversity of model organisms to describe effectively.
我们对脊椎动物免疫系统的理解主要基于小鼠等少数模式生物。如果免疫系统的主要特征进化缓慢且在大多数脊椎动物中保守,那么使用少数模式系统是合理的,但如果免疫反应存在重大的宏观进化变化,可能就会出现问题。在此,我们针对15种有颌鱼类对标准化免疫刺激的转录组反应进行了宏观进化稳定性测试。腹腔注射免疫佐剂(明矾)会在几乎所有有颌鱼类中引发纤维化反应,在某些物种中,这种反应有助于抵抗蠕虫。尽管存在这种保守的表型反应,但不同物种之间潜在的转录组反应却高度不一致。虽然许多基因直系同源组在至少一个物种中表现出盐水注射鱼与明矾注射鱼之间的差异表达,但很少有直系同源组在不同物种间表现出一致的差异表达。这一结果表明,尽管对明矾的表型反应(纤维化)高度保守,但潜在的基因调控结构非常灵活,无法轻易地从任何一个物种推广到更广泛的鱼类(或脊椎动物)。脊椎动物的免疫反应在宏观进化时间内变化显著,需要多种模式生物才能有效地进行描述。