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Baseline innate immunity does not affect the response to an immune challenge in female great tits (Parus major)

机译:基线先天免疫力不影响雌性大山雀(Parus major)对免疫挑战的反应

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摘要

The immune system is an important defence against pathogens but requires resources that hosts may also use otherwise. Thus, trade-offs between investment in immunity versus other life-history traits may exist, especially during resource-demanding periods such as reproduction. Here, we investigated the potential trade-off between an activated immune system and parental care in free-living great tits. We also studied whether variation in baseline immune indices prior to immunization contributes to individual differences in the responses to an immune challenge. To this end, we injected free-living great tit females with either phosphate-buffered saline (PBS) or with bacterial lipopolysaccharides (LPS) when nestlings were 9 days old and subsequently recorded parental feeding rates. We quantified potential fitness consequences via the growth and survival of their nestlings. Exposure to LPS tended to decrease female feeding rates. However, nestling body mass was not affected by the maternal immune challenge, probably because males compensated for the change in feeding rate of their partner. We found a negative relationship between haptoglobin levels and female feeding rates pre-treatment, but not with any of the other innate immune traits. Although there was substantial variation in female innate immune indices, we found no evidence that baseline immunity affected how females reacted to an immune challenge in terms of changes in parental behaviour.
机译:免疫系统是抵御病原体的重要防御手段,但需要宿主可能另外使用的资源。因此,在免疫投资与其他生活史特征之间的权衡可能存在,尤其是在诸如繁殖之类的资源需求时期。在这里,我们研究了自由活动的大山雀在激活的免疫系统和父母照顾之间的潜在权衡。我们还研究了免疫前基线免疫指数的变化是否会导致对免疫激发反应的个体差异。为此,当雏鸟成年9天时,我们向自由活动的大山雀雌性注射磷酸盐缓冲液(PBS)或细菌脂多糖(LPS),然后记录父母的喂养率。我们通过雏鸟的生长和存活来量化潜在的健身后果。暴露于LPS往往会降低雌性喂养率。但是,雏鸟的体重不受母体免疫挑战的影响,这可能是因为雄性补偿了伴侣的喂养速度的变化。我们发现触珠蛋白水平与女性摄食率之间呈负相关,但与其他任何先天免疫性状均无负相关。尽管女性先天免疫指数存在很大差异,但我们没有发现证据表明基线免疫会影响父母行为方式变化对雌性对免疫挑战的反应。

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