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Larval connectivity across temperature gradients and its potential effect on heat tolerance in coral populations

机译:跨温度梯度的幼虫连通性及其对珊瑚种群耐热性的潜在影响

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摘要

Coral reefs are increasingly exposed to elevated temperatures that can cause coral bleaching and high levels of mortality of corals and associated organisms. The temperature threshold for coral bleaching depends on the acclimation and adaptation of corals to the local maximum temperature regime. However, because of larval dispersal, coral populations can receive larvae from corals that are adapted to very different temperature regimes. We combine an offline particle tracking routine with output from a high-resolution physical oceanographic model to investigate whether connectivity of coral larvae between reefs of different thermal regimes could alter the thermal stress threshold of corals. Our results suggest that larval transport between reefs of widely varying temperatures is likely in the Coral Triangle and that accounting for this connectivity may be important in bleaching predictions. This has important implications in conservation planning, because connectivity may allow some reefs to have an inherited heat tolerance that is higher or lower than predicted based on local conditions alone.
机译:珊瑚礁越来越多地暴露于高温下,这可能导致珊瑚白化和珊瑚及相关生物的高死亡率。珊瑚褪色的温度阈值取决于珊瑚对当地最高温度制度的适应程度和适应程度。但是,由于幼虫扩散,珊瑚种群可以从适应非常不同温度条件的珊瑚中获得幼虫。我们将离线粒子跟踪例程与高分辨率物理海洋学模型的输出相结合,以研究不同热状态的珊瑚礁之间的珊瑚幼虫连通性是否会改变珊瑚的热应力阈值。我们的结果表明,在珊瑚三角中,温度变化很大的珊瑚礁之间的幼体运输是可能的,并且考虑到这种连通性在漂白预测中可能很重要。这对保护规划具有重要意义,因为连通性可能会使某些珊瑚礁具有继承的耐热性,该耐热性高于或低于仅根据当地条件预测的耐热性。

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