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Biological interactions both facilitate and resist climate-related functional change in temperate reef communities

机译:生物相互作用促进和抵制温带礁社区中与气候有关的功能变化

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摘要

Shifts in the abundance and location of species are restructuring life on the Earth, presenting the need to build resilience into our natural systems. Here, we tested if protection from fishing promotes community resilience in temperate reef communities undergoing rapid warming in Tasmania. Regardless of protection status, we detected a signature of warming in the brown macroalgae, invertebrates and fishes, through increases in the local richness and abundance of warm-affinity species. Even so, responses in protected communities diverged from exploited communities. At the local scale, the number of cool-affinity fishes and canopy-forming algal species increased following protection, even though the observation window fell within a period of warming. At the same time, exploited communities gained turf algal and sessile invertebrate species. We further found that the recovery of predator populations following protection leads to marked declines in mobile invertebrates—this trend could be incorrectly attributed to warming without contextual data quantifying community change across trophic levels. By comparing long-term change in exploited and protected reefs, we empirically demonstrate the role of biological interactions in both facilitating and resisting climate-related biodiversity change. We further highlight the potential for trophic interactions to alter the progression of both range expansions and contractions.
机译:物种的丰度和位置的变化正在改变地球上的生命,这表明需要在我们的自然系统中建立抵御能力。在这里,我们测试了在塔斯马尼亚州经历快速变暖的温带珊瑚礁社区,钓鱼保护措施是否能增强社区的适应能力。无论保护状态如何,我们都通过增加局部区域的丰富度和温暖亲和性物种的数量,在棕色大型藻类,无脊椎动物和鱼类中发现了变暖的迹象。即便如此,受保护社区的反应也与受剥削社区不同。在当地范围内,即使观察窗口在变暖时期之内,受保护的凉爽亲缘鱼和形成冠层的藻类物种的数量也会增加。同时,被开发的社区获得了草皮藻和无草无脊椎动物。我们还发现,保护后捕食者种群的恢复导致流动无脊椎动物的数量显着下降-这种趋势可能被错误地归因于变暖,而没有上下文数据量化营养水平上的群落变化。通过比较已开发和受保护的珊瑚礁的长期变化,我们从经验上证明了生物相互作用在促进和抵抗与气候有关的生物多样性变化中的作用。我们进一步强调了营养相互作用改变范围扩展和收缩的可能性。

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