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Projected response of an endangered marine turtle population to climate change

机译:预计濒危海龟种群对气候变化的反应

摘要

Assessing the potential impacts of climate change on individual species and populations is essential for the stewardship of ecosystems and biodiversity. Critically endangered leatherback turtles in the eastern Pacific Ocean are excellent candidates for such an assessment because their sensitivity to contemporary climate variability has been substantially studied. If incidental fisheries mortality is eliminated, this population still faces the challenge of recovery in a rapidly changing climate. Here we combined an Earth system model, climate model projections assessed by the Intergovernmental Panel on Climate Change and a population dynamics model to estimate a 7% per decade decline in the Costa Rica nesting population over the twentyfirst century. Whereas changes in ocean conditions had a small effect on the population, the 2.5 C warming of the nesting beach was the primary driver of the decline through reduced hatching success and hatchling emergence rate. Hatchling sex ratio did not substantially change. Adjusting nesting phenology or changing nesting sites may not entirely prevent the decline, but could offset the decline rate. However, if future observations show a long-term decline in hatching success and emergence rate, anthropogenic climate mitigation of nests (for example, shading, irrigation) may be able to preserve the nesting population.
机译:评估气候变化对单个物种和种群的潜在影响对于管理生态系统和生物多样性至关重要。在东太平洋,濒临灭绝的棱皮海龟是进行此类评估的极佳候选者,因为已经对它们对当代气候多变性的敏感性进行了大量研究。如果消除偶然的渔业死亡率,该人口仍然面临着在迅速变化的气候中恢复的挑战。在这里,我们结合了地球系统模型,政府间气候变化专门委员会评估的气候模型预测和人口动力学模型,以估计二十一世纪哥斯达黎加筑巢人口每十年下降7%。尽管海洋条件的变化对种群的影响不大,但由于孵化成功率和孵化率的降低,筑巢海滩的2.5 C升温是下降的主要原因。孵化的性别比例没有实质性变化。调整筑巢物候或改变筑巢地点可能无法完全防止下降,但可以抵消下降速度。但是,如果将来的观察结果表明孵化成功率和出苗率长期下降,则人为减少气候的巢穴(例如,遮荫,灌溉)可能能够保护巢穴种群。

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