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Testing local and global stressor impacts on a coastal foundation species using an ecologically realistic framework

机译:使用生态现实框架测试本地和全球应激源对沿海地基物种的影响

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Despite the abundance of literature on organismal responses to multiple environmental stressors, most studies have not matched the timing of experimental manipulations with the temporal pattern of stressors in nature. We test the interactive effects of diel-cycling hypoxia with both warming and decreased salinities using ecologically realistic exposures. Surprisingly, we found no evidence of negative synergistic effects on Olympia oyster growth; rather, we found only additive and opposing effects of hypoxia (detrimental) and warming (beneficial). We suspect that diel-cycling provided a temporal refuge that allowed physiological compensation. We also tested for latent effects of warming and hypoxia to low-salinity tolerance using a seasonal delay between stressor events. However, we did not find a latent effect, rather a threshold survival response to low salinity that was independent of early life-history exposure to warming or hypoxia. The absence of synergism is likely the result of stressor treatments that mirror the natural timing of environmental stressors. We provide environmental context for laboratory experimental data by examining field time series environmental data from four North American west coast estuaries and find heterogeneous environmental signals that characterize each estuary, suggesting that the potential stressor exposure to oysters will drastically differ over moderate spatial scales. This heterogeneity implies that efforts to conserve and restore oysters will require an adaptive approach that incorporates knowledge of local conditions. We conclude that studies of multiple environmental stressors can be greatly improved by integrating ecologically realistic exposure and timing of stressors found in nature with organismal life-history traits.
机译:尽管有大量关于有机体对多种环境应激源的反应的文献,但大多数研究并未将实验操作的时间与自然环境中应激源的时间模式相匹配。我们使用生态现实的暴露测试了狄尔循环缺氧与变暖和盐度降低的相互作用。令人惊讶的是,我们没有发现对奥林匹亚牡蛎生长有负面协同作用的证据。相反,我们仅发现缺氧(有害)和变暖(有益)的相加和相反作用。我们怀疑迪尔循环提供了一个暂时的避难所,可以进行生理补偿。我们还使用压力事件之间的季节性延迟测试了变暖和缺氧对低盐度耐受性的潜在影响。但是,我们没有发现潜在的影响,而是发现了对低盐度的阈值存活反应,该反应与生命历史早期暴露于变暖或缺氧的状况无关。缺乏协同作用很可能是应激反应治疗的结果,反映了环境应激因素的自然时机。通过检查来自四个北美西海岸河口的田间时间序列环境数据,并发现表征每个河口的异质环境信号,我们为实验室实验数据提供了环境背景,这表明在中等空间范围内,牡蛎的潜在应激源暴露将大不相同。这种异质性意味着保护和恢复牡蛎的努力将需要一种适应性方法,该方法应结合当地情况。我们得出结论,通过将生态现实暴露和自然界发现的应激源与机体生命历史特征相结合,可以大大改善对多种环境应激源的研究。

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