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Immune Profile Predicts Survival and Reflects Senescence in a Small Long-Lived Mammal the Greater Sac-Winged Bat (Saccopteryx bilineata)

机译:免疫特征可预测生存期并反映出寿命长的小哺乳动物大囊翅蝙蝠(Saccopteryx bilineata)的衰老。

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摘要

The immune system imposes costs that may have to be traded against investment of resources in other costly life-history traits. Yet, it is unknown if a trade-off between immunity and longevity occurs in free-ranging mammals. Here, we tested if age and survival, two aspects associated with longevity, are linked to immune parameters in an 8 g bat species. Using a combination of cross-sectional and longitudinal data, we assessed whether total white blood cell (WBC) counts, bacterial killing ability of the plasma (BKA) and immunoglobulin G (IgG) concentration change with age. Furthermore, we asked if these immune parameters impose costs resulting in decreased survival probabilities. We found that WBC counts decreased with age both within and among individuals. IgG concentrations were higher in older individuals, but did not change with age within individuals. Furthermore, individuals with above average WBC counts or IgG concentration had lower probabilities to survive the next six months. High WBC counts and IgG concentrations may reflect infections with parasites and pathogens, however, individuals that were infected with trypanosomes or nematodes showed neither higher WBC counts or IgG concentrations, nor was infection connected with survival rates. BKA was higher in infected compared with uninfected bats, but not related to age or survival. In conclusion, cellular (WBC) and humoral (IgG) parts of the immune system were both connected to age and survival, but not to parasite infections, which supports the hypothesis that energetically costly immunological defences are traded against other costly life-history traits, leading to a reduced lifespan in this free-ranging mammal.
机译:免疫系统施加的成本可能必须与其他昂贵的生命历史特征中的资源投资进行权衡。然而,尚不清楚在自由放养的哺乳动物中是否会在免疫力和寿命之间进行权衡。在这里,我们测试了与寿命有关的两个方面,即年龄和生存率是否与8 g蝙蝠物种的免疫参数有关。使用横截面和纵向数据的组合,我们评估了总白细胞(WBC)计数,血浆细菌杀伤能力(BKA)和免疫球蛋白G(IgG)浓度是否随年龄变化。此外,我们询问这些免疫参数是否强加了导致降低生存概率的成本。我们发现,在个体内部和个体之间,白细胞计数都随着年龄的增长而下降。 IgG浓度在老年人中较高,但在个体中并未随年龄变化。此外,具有高于平均WBC计数或IgG浓度的个体在未来六个月内存活的可能性较低。高WBC计数和IgG浓度可能反映了寄生虫和病原体的感染,但是,被锥虫或线虫感染的个体既未显示出较高的WBC计数或IgG浓度,也未显示与存活率相关。与未感染的蝙蝠相比,感染的BKA更高,但与年龄或存活率无关。总之,免疫系统的细胞(WBC)和体液(IgG)部分都与年龄和存活率相关,但与寄生虫感染无关,这支持了假说,即在能量上要付出高昂的免疫防御才能与其他代价高昂的生命历史特征相对应,导致这种自由放养的哺乳动物的寿命缩短。

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