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首页> 外文期刊>The Journal of Experimental Biology >Common guillemot (Uria aalge) eggs are not self-cleaning
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Common guillemot (Uria aalge) eggs are not self-cleaning

机译:常见的吉列(UriaAalge)鸡蛋不是自我清洁

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Birds are arguably the most evolutionarily successful extant vertebrate taxon, in part because of their ability to reproduce in virtually all terrestrial habitats. Common guillemots, Uria aalge, incubate their single egg in an unusual and harsh environment; on exposed cliff ledges, without a nest, and in close proximity to conspecifics. As a consequence, the surface of guillemot eggshells is frequently contaminated with faeces, dirt, water and other detritus, which may impede gas exchange or facilitate microbial infection of the developing embryo. Despite this, guillemot chicks survive incubation and hatch from eggs heavily covered with debris. To establish how guillemot eggs cope with external debris, we tested three hypotheses: (1) contamination by debris does not reduce gas exchange efficacy of the eggshell to a degree that may impede normal embryo development; (2) the guillemot eggshell surface is self-cleaning; (3) shell accessory material (SAM) prevents debris from blocking pores, allowing relatively unrestricted gas diffusion across the eggshell. We showed that natural debris reduces the conductance of gases across the guillemot eggshell by blocking gas exchange pores. Despite this problem, we found no evidence that guillemot eggshells are self-cleaning, but instead showed that the presence of SAM on the eggshell surface largely prevents pore blockages from occurring. Our results demonstrate that SAM is a crucial feature of the eggshell surface in a species with eggs that are frequently in contact with debris, acting to minimise pore blockages and thus ensure a sufficient rate of gas diffusion for embryo development.
机译:鸟类可以说是最重要的成功脊椎动物分类群,部分原因是他们几乎所有的陆地栖息地繁殖的能力。普通吉列斯,UriaAalge,在一个不寻常和恶劣的环境中孵育他们的单个鸡蛋;在没有巢穴的暴露的悬崖壁上,并靠近Conspecifics。因此,鳄梨蛋壳的表面经常被粪便,污垢,水和其他碎屑污染,这可能会阻碍煤气交换或促进发育胚胎的微生物感染。尽管如此,Guillemot小鸡才能孵化并孵化从碎片覆盖的鸡蛋。为了建立如何与外部碎片应对外部碎片,我们测试了三个假设:(1)碎片的污染不会降低蛋壳的气体交换效果,这可能妨碍正常胚胎发育; (2)Guillemot蛋壳表面是自清洁; (3)壳辅助材料(SAM)防止碎片阻挡孔,允许在蛋壳上的相对不受限制的气体扩散。我们表明,通过阻塞气体交换孔,天然碎片通过阻挡气体交换孔来降低鳄梨膜穿过的气体的电导。尽管存在这个问题,但我们发现没有证据表明Guillemot蛋壳是自清洁,而是表明蛋壳表面上的SAM的存在很大程度上防止孔隙堵塞发生。我们的结果表明,SAM是蛋壳表面中蛋壳表面的一个关键特征,其中鸡蛋通常与碎屑接触,以最小化孔隙堵塞,从而确保胚胎发育的足够的气体扩散速率。

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