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Marine ecosystems, climate and phenology: introduction

机译:海洋生态系统,气候和物候学:简介

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Mid to high-latitude marine ecosystems are characterized by strong intra-seasonal variability in productivity across multiple trophic levels. It is understood that climate variability, as well as projected climate change, is likely to cause substantial changes in the timing of key seasonal events, such as the spring phytoplankton bloom, dates of diapause for zooplankton, or nesting dates in seabirds. However, it is not well known how changes in timing across multiple trophic levels will impact predator-prey relationships. Several mechanistic hypotheses have been put forth to explain changes in fish production in relation to phenological variability of prey, including Cushing's (1990; Adv Mar Biol 26:249-293) 'match-mismatch' hypothesis, yet there have been few tests of these ideas relative to ongoing oceanographic change. In this Theme Section, we present 9 papers that relate ocean climate variability and climate change to timing of key events for zooplankton, fish, and sea-birds from northern hemisphere marine ecosystems. They cover phenological variability and consequences of timing changes for species of the California Current, Gulf of Alaska, NE Atlantic Ocean, Arctic Ocean and northern Japan Sea, all cold-water ecosystems, and highlight the importance of phenology as a key response variable, as well as the complexity of ecological relationships to be impacted by marine climate change. Multi-trophic level changes in phenology of species abundance and productivity are likely to have important consequences to marine ecosystem structure and function.
机译:中高纬度海洋生态系统的特点是,在多个营养级别上,生产力的季节内变化很大。据了解,气候变化以及预计的气候变化可能会导致关键季节事件的发生时间发生重大变化,例如春季浮游植物开花,浮游动物滞育日期或海鸟筑巢日期。但是,还不知道跨多个营养级别的时间变化如何影响食肉动物与猎物之间的关系。提出了几种机制假说来解释与捕食物的物候变化有关的鱼类生产变化,包括库欣(1990; Adv Mar Biol 26:249-293)的“匹配-不匹配”假说,但对这些假说的检验很少。有关正在进行的海洋学变化的想法。在本主题部分中,我们提出9篇论文,这些论文将海洋气候变化和气候变化与北半球海洋生态系统中浮游动物,鱼类和海鸟的关键事件的发生时间联系起来。它们涵盖了物候变异性以及加利福尼亚洋流,阿拉斯加湾,东北大西洋,北冰洋和北日本海,所有冷水生态系统物种的时变变化的后果,并着重说明了物候学作为关键反应变量的重要性,例如以及受海洋气候变化影响的生态关系的复杂性。物种丰度和生产力的物候方面的多营养水平变化可能对海洋生态系统的结构和功能产生重要影响。

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