利奇风暴海燕(Hydrobates leucorhous)是一种寿命很长的海鸟,在雏鸟状况不佳的情况下表现出灵活的、依赖条件的觅食策略。

IF 2.3 Q2 ECOLOGY BMC ecology and evolution Pub Date : 2024-07-01 DOI:10.1186/s12862-024-02273-8
Benjamin D Haussmann, Kayla E Lichtner, Robert A Mauck, Mark F Haussmann
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摘要

背景:亲代与子代之间的冲突代表着自我维护与繁殖之间资源分配的敏感平衡。为了更好地理解物种如何处理这种冲突,人们提出了两种策略。在固定水平的喂养行为中,亲代喂给后代的食物数量是一致的;而灵活喂养则显示了亲代根据后代需要分配资源的可塑性。根据生命史理论预测,长寿物种的亲代会优先考虑自身的生存,并可能倾向于固定水平假说,以最大限度地提高终生繁殖成功率。在本研究中,我们强调了利奇风暴海燕(Hydrobates leucorhous)独特种群中亲代-后代分配策略的自然变异,并通过长达一个月的食物补充和限制操作,研究了雏鸟状况如何影响父母在繁殖雏鸟期间的供给:结果:我们发现,在研究期间,亲鸟提高了营养匮乏雏鸟的喂食频率,从而增加了喂食总量。此外,父母双方都喂食的夜晚比例在受限雏鸟中最高,而父母双方都不喂食的夜晚比例在受限雏鸟中最低,这表明当雏鸟状况相对较差时,暴风海燕父母会缩短觅食时间,以更频繁地提供食物:我们的研究结果支持利奇风暴海燕采用灵活的喂食策略,表明亲鸟可以评估后代的状况,并通过提高喂食频率来应对。这些数据有助于我们了解长寿海鸟在繁殖期如何平衡自身与后代的能量需求。
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Leach's storm-petrel (Hydrobates leucorhous), a long-lived seabird shows flexible, condition-dependent, feeding strategies in response to poor chick condition.

Background: Parent-offspring conflict represents the sensitive balance of resource allocation between self-maintenance and reproduction. Two strategies have been proposed to better understand how species manage this conflict. In fixed-level feeding behavior, parents feed offspring consistent quantities of food; while flexible feeding shows plasticity in parental allocation based on offspring need. Life-history theory predicts that parents of long-lived species prioritize their survival and may favor the fixed-level hypothesis to maximize lifetime reproductive success. In this study, we highlight the natural variation of parent-offspring allocation strategies within a unique population of Leach's storm-petrels (Hydrobates leucorhous), and through month-long food supplementation and restriction manipulations, we investigate how chick condition affects parental provisioning during the chick-rearing period of reproduction.

Results: We show that the parents upregulated chick feeding frequency of nutritionally deprived chicks, resulting in a larger total amount of food delivered during the study period. Additionally, the proportion of nights when both parents fed was highest in restricted chicks, and the proportion of nights when neither parents fed was lowest in restricted chicks, suggesting that storm-petrel parents shorten their foraging bouts to deliver food more often when their chicks are in relatively poor condition.

Conclusions: Our results support that Leach's storm-petrels use a flexible-level feeding strategy, suggesting that parents can assess offspring condition, and respond by feeding chicks at higher frequencies. These data provide insight on how a long-lived seabird balances its own energetic demands with that of their offspring during the reproductive period.

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