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Turning on the Heat: Ecological Response to Simulated Warming in the Sea

机译:开启热量:模拟海洋变暖的生态反应

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摘要

Significant warming has been observed in every ocean, yet our ability to predict the consequences of oceanic warming on marine biodiversity remains poor. Experiments have been severely limited because, until now, it has not been possible to manipulate seawater temperature in a consistent manner across a range of marine habitats. We constructed a “hot-plate” system to directly examine ecological responses to elevated seawater temperature in a subtidal marine system. The substratum available for colonisation and overlying seawater boundary layer were warmed for 36 days, which resulted in greater biomass of marine organisms and a doubling of space coverage by a dominant colonial ascidian. The “hot-plate” system will facilitate complex manipulations of temperature and multiple stressors in the field to provide valuable information on the response of individuals, populations and communities to environmental change in any aquatic habitat.
机译:在每个海洋中都观察到了明显的变暖现象,但是我们预测海洋变暖对海洋生物多样性后果的能力仍然很差。实验一直受到严格的限制,因为直到现在,还不可能在一系列海洋生境中以一致的方式控制海水温度。我们构建了一个“热板”系统,以直接检查潮汐海洋系统对海水温度升高的生态响应。可供定殖的底层和上覆的海水边界层被加热了36天,这导致海洋生物的生物量增加,占优势的殖民海鞘使空间覆盖率增加了一倍。 “热板”系统将促进现场温度的复杂控制和多种压力源,以提供有关任何水生生境中个人,种群和社区对环境变化的反应的有价值的信息。

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