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Survival differences and the effect of environmental instability on breeding dispersal in an Adélie penguin meta-population

机译:生存差异和环境不稳定性对Adélie企鹅杂居种群繁殖扩散的影响

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摘要

High survival and breeding philopatry was previously confirmed for the Adélie penguin (Pygoscelis adeliae) during a period of stable environmental conditions. However, movements of breeding adults as a result of an unplanned natural experiment within a four-colony meta-population provided interesting insights into this species’ population dynamics. We used multistate mark-recapture models to investigate apparent survival and dispersal of breeding birds in the southwestern Ross Sea during 12 breeding seasons (1996–2007). The natural experiment was facilitated by the temporary grounding of two immense icebergs that (i) erected a veritable fence separating colonies and altering migration routes and (ii) added additional stress by trapping extensive sea ice in the region during 5 of 12 y. Colony size varied by orders of magnitude, allowing investigation of apparent survival and dispersal rates in relation to both environmental conditions and colony size within this meta-population. Apparent survival was lowest for the smallest colony (4,000 pairs) and similar for the medium (45,000 pairs) and large colonies (155,000 pairs), despite increased foraging effort expended by breeders at the largest colony. Dispersal of breeding birds was low (<1%), except during years of difficult environmental conditions when movements increased, especially away from the smallest colony (3.5%). Decreased apparent survival at the smallest colony could reflect differences in migration chronology and winter habitat use compared with the other colonies, or it may reflect increased permanent emigration to colonies outside this meta-population. Contrary to current thought, breeding penguins are not always philopatric. Rather, stressful conditions can significantly increase dispersal rates.
机译:先前已经证实,在稳定的环境条件下,阿德利企鹅(Pygoscelis adeliae)具有较高的成活率和繁殖性。但是,由于在四个殖民地的聚居人口中进行了一项计划外的自然实验,导致成年成虫的运动为该物种的种群动态提供了有趣的见解。我们使用多状态标记捕获模型调查了西南罗斯海在12个繁殖季节(1996-2007年)内繁殖鸟类的表观存活率和分布情况。临时接地两个巨大的冰山为自然实验提供了便利,这些冰山(i)建立了一个真正的栅栏,将菌落隔开,改变了迁徙路线,并且(ii)通过在12年中的5年内将该区域捕获大量海冰而增加了额外的压力。菌落的大小变化了几个数量级,从而允许研究与该环境中的环境条件和菌落大小有关的表观存活率和扩散率。尽管最小的菌落(4,000对)的表观存活率最低,但中型(45,000对)和大型菌落(155,000对)的表观存活率最低,尽管育种者在最大菌落上增加了觅食努力。繁殖鸟类的散布率低(<1%),除非在艰难的环境条件下数年内运动增加,尤其是远离最小的殖民地(3.5%)。与其他殖民地相比,最小殖民地的表观存活率降低可能反映了迁移时间和冬季栖息地使用方式的差异,或者可能反映出永久迁移至该超种群之外的殖民地的情况有所增加。与目前的想法相反,繁殖企鹅并非总是亲代的。相反,压力条件会大大增加分散速度。

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