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The effects of marine heatwaves on acute heat tolerance in corals

机译:海洋热浪对珊瑚急性耐热性的影响

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摘要

Abstract Scleractinian coral populations are increasingly exposed to conditions above their upper thermal limits due to marine heatwaves, contributing to global declines of coral reef ecosystem health. However, historic mass bleaching events indicate there is considerable inter‐ and intra‐specific variation in thermal tolerance whereby species, individual coral colonies and populations show differential susceptibility to exposure to elevated temperatures. Despite this, we lack a clear understanding of how heat tolerance varies across large contemporary and historical environmental gradients, or the selective pressures that underpin this variation. Here we conducted standardised acute heat stress experiments to identify variation in heat tolerance among species and isolated reefs spanning a large environmental gradient across the Coral Sea Marine Park. We quantified the photochemical yield (Fv/Fm) of coral samples in three coral species, Acropora cf humilis, Pocillopora meandrina, and Pocillopora verrucosa, following exposure to four temperature treatments (local ambient temperatures, and + 3°C, +6°C and + 9°C above local maximum monthly mean). We quantified the temperature at which Fv/Fm decreased by 50 (termed ED50) and used derived values to directly compare acute heat tolerance across reefs and species. The ED50 for Acropora was 0.4–0.7°C lower than either Pocillopora species, with a 0.3°C difference between the two Pocillopora species. We also recorded 0.9°C to 1.9°C phenotypic variation in heat tolerance among reefs within species, indicating spatial heterogeneity in heat tolerance across broad environmental gradients. Acute heat tolerance had a strong positive relationship to mild heatwave exposure over the past 35 years (since 1986) but was negatively related to recent severe heatwaves (2016–2020). Phenotypic variation associated with mild thermal history in local environments provides supportive evidence that marine heatwaves are selecting for tolerant individuals and populations; however, this adaptive potential may be compromised by the exposure to recent severe heatwaves.
机译:摘要 由于海洋热浪,硬质珊瑚种群越来越多地暴露在高于其温度上限的条件下,导致全球珊瑚礁生态系统健康状况下降。然而,历史上的大规模白化事件表明,在耐热性方面存在相当大的种间和种内差异,物种、单个珊瑚群落和种群对暴露于高温表现出不同的敏感性。尽管如此,我们仍然缺乏对耐热性在当代和历史大环境梯度中如何变化的清晰理解,或者支持这种变化的选择压力。在这里,我们进行了标准化的急性热应激实验,以确定跨越珊瑚海海洋公园大环境梯度的物种和孤立珊瑚礁之间的耐热性变化。我们量化了三种珊瑚物种的珊瑚样品的光化学产率 (Fv/Fm),鹿角珊瑚 cf humilis、Pocillopora meandrina 和 Pocillopora verrucosa,在暴露于四种温度处理后(当地环境温度,比当地最大月平均值高 + 3°C、+6°C 和 + 9°C)。我们量化了 Fv/Fm 降低 50% 的温度(称为 ED50),并使用衍生值直接比较珊瑚礁和物种的急性耐热性。鹿角虫的ED50比任何一个Pocillopora物种低0.4-0.7°C,两个Pocillopora物种之间相差0.3°C。我们还记录了 0.9°C 至 1。物种内珊瑚礁耐热性9°C表型变化,表明在广泛的环境梯度上耐热性的空间异质性。在过去 35 年(自 1986 年以来)中,急性耐热性与轻度热浪暴露有很强的正相关关系,但与最近的严重热浪(2016-2020 年)呈负相关。与当地环境中的轻度热史相关的表型变异提供了支持性证据,表明海洋热浪正在选择耐受的个体和种群;然而,这种适应潜力可能会因暴露于最近的严重热浪而受到损害。

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