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Seasonal decline of offspring quality in the European starling Sturnus vulgaris: an immune challenge experiment

机译:欧洲八哥寻常turn八哥的后代品质季节性下降:一项免疫挑战实验

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In seasonally fluctuating environments, timing of reproduction is a crucial determinant of fitness. Studies of birds show that late breeding attempts generally result in offspring of lower reproductive value, with lower recruitment and long-term survival prospects. Several proximate mechanisms, including a seasonal decline of immune system functioning, may lead to a seasonal decline of offspring fitness. We investigated seasonal variation in offspring quality by subjecting first- and second-brood chicks of a sexually size dimorphic species, the European starling Sturnus vulgaris, to an immune challenge with a bacterial endotoxin (LPS), and evaluated their growth and physiological response in terms of total plasma antioxidant capacity (TAC), concentration of reactive oxygen metabolites and hematocrit. LPS challenge did not affect chick growth or oxidative status. However, hematocrit of second-brood chicks was higher in LPS chicks compared to controls. Body mass halfway through the rearing period (days 8-9 post-hatching), TAC and hematocrit were lower among second- vs. first-brood chicks. Interestingly, sexual dimorphism in body mass at days 8-9 post-hatching markedly differed between broods, first-brood males being 4.7% and second-brood males 22.7% heavier than their sisters, respectively. Pre-fledging mortality occurred among second-brood chicks only and was strongly female-biased. Our findings suggest that starling chicks, even if in poor conditions, are little affected by a bacterial challenge, at least in the short-term. Moreover, our study indicates that sex differences in body size, possibly mediated by sex-specific maternal investment in egg size, may heavily impact on pre-fledging survival in a different way in the course of the breeding season, resulting in sex-specific seasonal decline of offspring fitness. Finally, we suggest that levels of circulating antioxidants should be regarded among the proximate causes of the association between timing of fledging and long-term survival in avian species.
机译:在季节性波动的环境中,繁殖的时机是健康的关键因素。鸟类研究表明,后期繁殖尝试通常会导致后代的繁殖价值降低,募集和长期存活前景降低。几种邻近的机制,包括免疫系统功能的季节性下降,可能导致后代适应性的季节性下降。我们通过对有性别大小的双态种的第一和第二育雏小欧洲star鸟八哥(Sturnus vulgaris)进行细菌内毒素(LPS)的免疫攻击,调查了后代质量的季节性变化,并评估了它们的生长和生理反应血浆总抗氧化能力(TAC),活性氧代谢产物浓度和血细胞比容LPS攻击不影响雏鸡的生长或氧化状态。但是,与对照相比,LPS雏鸡的第二胎雏鸡的血细胞比容更高。育雏中途(孵化后第8-9天)的体重在第二和第一育雏雏鸡中TAC和血细胞比容较低。有趣的是,孵化后第8-9天体重的性二态性明显不同,第一胎雄性比姊妹重4.7%,第二胎雄性比姐妹重22.7%。出雏前的死亡率仅发生在第二代雏鸡中,并且强烈偏向雌性。我们的发现表明,即使在恶劣的条件下,star鸟雏鸡也至少在短期内几乎不受细菌攻击的影响。此外,我们的研究表明,个体大小的性别差异可能是由性别特定的母体对卵大小的投资所介导的,可能在繁殖季节以不同的方式严重影响初生前的存活,从而导致性别特定的季节后代适应性下降。最后,我们建议循环抗氧化剂的水平应被视为在鸟类中出雏时间与长期存活之间联系的最直接原因。

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