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冰动力学的高纬度变化及其对极地海洋生态系统的影响。

High latitude changes in ice dynamics and their impact on polar marine ecosystems.

作者信息

Moline Mark A, Karnovsky Nina J, Brown Zachary, Divoky George J, Frazer Thomas K, Jacoby Charles A, Torres Joseph J, Fraser William R

机构信息

Biological Sciences Department and Center for Coastal Marine Sciences, California Polytechnic State University, San Luis Obispo, CA 93407, USA.

出版信息

Ann N Y Acad Sci. 2008;1134:267-319. doi: 10.1196/annals.1439.010.

Abstract

Polar regions have experienced significant warming in recent decades. Warming has been most pronounced across the Arctic Ocean Basin and along the Antarctic Peninsula, with significant decreases in the extent and seasonal duration of sea ice. Rapid retreat of glaciers and disintegration of ice sheets have also been documented. The rate of warming is increasing and is predicted to continue well into the current century, with continued impacts on ice dynamics. Climate-mediated changes in ice dynamics are a concern as ice serves as primary habitat for marine organisms central to the food webs of these regions. Changes in the timing and extent of sea ice impose temporal asynchronies and spatial separations between energy requirements and food availability for many higher trophic levels. These mismatches lead to decreased reproductive success, lower abundances, and changes in distribution. In addition to these direct impacts of ice loss, climate-induced changes also facilitate indirect effects through changes in hydrography, which include introduction of species from lower latitudes and altered assemblages of primary producers. Here, we review recent changes and trends in ice dynamics and the responses of marine ecosystems. Specifically, we provide examples of ice-dependent organisms and associated species from the Arctic and Antarctic to illustrate the impacts of the temporal and spatial changes in ice dynamics.

摘要

近几十年来,极地地区经历了显著的变暖。北冰洋盆地和南极半岛沿岸的变暖最为明显,海冰范围和季节性持续时间显著减少。冰川的快速消退和冰盖的解体也有记录。变暖速度正在加快,预计将持续到本世纪,对冰动力学持续产生影响。冰动力学的气候介导变化令人担忧,因为冰是这些地区食物网核心海洋生物的主要栖息地。海冰时间和范围的变化导致许多较高营养级的能量需求和食物供应之间出现时间异步和空间分离。这些不匹配导致繁殖成功率降低、丰度下降和分布变化。除了冰损失的这些直接影响外,气候引起的变化还通过水文变化促进间接影响,包括低纬度物种的引入和初级生产者组合的改变。在这里,我们回顾了冰动力学的最新变化和趋势以及海洋生态系统的响应。具体来说,我们提供了北极和南极依赖冰的生物及相关物种的例子,以说明冰动力学时空变化的影响。

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