首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >A novel spatio-temporal scale based on ocean currents unravels environmental drivers of reproductive timing in a marine predator
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A novel spatio-temporal scale based on ocean currents unravels environmental drivers of reproductive timing in a marine predator

机译:一种新颖的时空尺度基于洋流揭示了海洋捕食者生殖时间的环境驱动因素

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摘要

Life-history strategies have evolved in response to predictable patterns of environmental features. In practice, linking life-history strategies and changes in environmental conditions requires comparable space–time scales between both processes, a difficult match in most marine system studies. We propose a novel spatio-temporal and dynamic scale to explore marine productivity patterns probably driving reproductive timing in the inshore little penguin (Eudyptula minor), based on monthly data on ocean circulation in the Southern Ocean, Australia. In contrast to what occurred when considering any other fixed scales, little penguin's highly variable laying date always occurred within the annual peak of ocean productivity that emerged from our newly defined dynamic scale. Additionally, local sea surface temperature seems to have triggered the onset of reproduction, acting as an environmental cue informing on marine productivity patterns at our dynamic scale. Chlorophyll-a patterns extracted from this scale revealed that environment factors in marine ecosystems affecting breeding decisions are related to a much wider region than foraging areas that are commonly used in current studies investigating the link between animals' life history and their environment. We suggest that marine productivity patterns may be more predictable than previously thought when environmental and biological data are examined at appropriate scales.
机译:生命历史策略已经发展为响应可预测的环境特征模式。在实践中,将生命历史策略与环境条件的变化联系起来,需要两个过程之间具有可比的时空尺度,这在大多数海洋系统研究中都是很难做到的。我们基于澳大利亚南大洋的月度海洋环流数据,提出了一种新颖的时空尺度和动态尺度,以探讨可能推动近岸小企鹅(Eudyptula minor)繁殖时间的海洋生产力模式。与考虑任何其他固定比例尺时所发生的情况相比,企鹅的高度定居日期总是发生在从我们新定义的动态比例尺出现的海洋生产力的年度峰值内。此外,当地海表温度似乎已经触发了繁殖的开始,这是在我们的动态规模上通知海洋生产力模式的环境线索。从这种规模中提取的叶绿素-a模式表明,海洋生态系统中影响育种决策的环境因素所涉及的区域比当前研究动物生活史与环境之间联系的常用研究区域广泛。我们建议,以适当的规模检查环境和生物数据时,海洋生产力模式可能比以前认为的更具可预测性。

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