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首页> 外文期刊>The Emu >Variation in innate immune function during incubation, chick-rearing and moult in Little Penguins (Eudyptula minor)
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Variation in innate immune function during incubation, chick-rearing and moult in Little Penguins (Eudyptula minor)

机译:小企鹅(Eudyptula minor)在孵化,养鸡和换羽过程中先天免疫功能的变化

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Physiologically demanding and energetically expensive life-events, such as incubation, chick-rearing and moult, may cause a trade-off with costly immune defences and, in turn, decrease immune function. We examined innate immunity in Little Penguins (Eudyptula minor) during the physiologically demanding periods of incubation, chick-guarding, chick-rearing and moult using a bacterial-killing assay and white blood-cell counts. The capacity of individuals to kill Escherichia coli varied significantly in relation to life-stage, with bacterial killing significantly higher during incubation compared with late chick-rearing, the most energetically expensive period in the annual cycle of Little Penguins. The elevated bacterial-killing capacity during nesting stages could be particularly beneficial for protection from the presumed high pathogen (bacterial) loads in nests. However, this relationship remains to be tested. Counts of white blood cells varied during breeding but were significantly higher in chicks compared to adults during guarding and post-guarding stages, and significantly higher at the end of moult compared to all other stages, which could indicate inflammation from infection, or dehydration. These results suggest that immune function may be adversely affected during energetically demanding life-stages but may also offer protection from bacteria encountered in the nesting environment.
机译:生理上要求很高且能量消耗很高的生活事件,例如孵化,饲养鸡只和换羽,可能会导致代价高昂的免疫防御系统的权衡,进而降低免疫功能。我们使用细菌杀伤试验和白细胞计数检查了生理上要求的潜伏期,保护雏鸡,饲养雏鸡和换羽的小企鹅(Eudyptula minor)的先天免疫力。个体杀死大肠杆菌的能力与生命周期有关,在孵化过程中,与后期饲养小鸡相比,细菌杀死的能力要高得多,这是小企鹅年度周期中能量消耗最高的时期。嵌套阶段提高的细菌杀灭能力可能特别有益于保护免受嵌套中假定的高病原体(细菌)负荷的影响。但是,这种关系仍有待检验。在饲养过程中,白细胞的数量各不相同,但在保护和保护后阶段,与成年相比,雏鸡的白细胞数量显着更高,而在换羽期末,与所有其他阶段相比,白细胞的数量明显更高,这可能表明感染或脱水引起的炎症。这些结果表明,在精力旺盛的生命周期中,免疫功能可能受到不利影响,但也可能提供保护,防止在筑巢环境中遇到细菌。

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