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人为引起的盐度变化会影响海洋生物和生态系统。

Human-induced salinity changes impact marine organisms and ecosystems.

机构信息

Department of Biology, University of Konstanz, Konstanz, Germany.

Branch of Bioresources, Fraunhofer Institute for Molecular Biology and Applied Ecology, Giessen, Germany.

出版信息

Glob Chang Biol. 2023 Sep;29(17):4731-4749. doi: 10.1111/gcb.16859. Epub 2023 Jul 12.

Abstract

Climate change is fundamentally altering marine and coastal ecosystems on a global scale. While the effects of ocean warming and acidification on ecology and ecosystem functions and services are being comprehensively researched, less attention is directed toward understanding the impacts of human-driven ocean salinity changes. The global water cycle operates through water fluxes expressed as precipitation, evaporation, and freshwater runoff from land. Changes to these in turn modulate ocean salinity and shape the marine and coastal environment by affecting ocean currents, stratification, oxygen saturation, and sea level rise. Besides the direct impact on ocean physical processes, salinity changes impact ocean biological functions with the ecophysiological consequences are being poorly understood. This is surprising as salinity changes may impact diversity, ecosystem and habitat structure loss, and community shifts including trophic cascades. Climate model future projections (of end of the century salinity changes) indicate magnitudes that lead to modification of open ocean plankton community structure and habitat suitability of coral reef communities. Such salinity changes are also capable of affecting the diversity and metabolic capacity of coastal microorganisms and impairing the photosynthetic capacity of (coastal and open ocean) phytoplankton, macroalgae, and seagrass, with downstream ramifications on global biogeochemical cycling. The scarcity of comprehensive salinity data in dynamic coastal regions warrants additional attention. Such datasets are crucial to quantify salinity-based ecosystem function relationships and project such changes that ultimately link into carbon sequestration and freshwater as well as food availability to human populations around the globe. It is critical to integrate vigorous high-quality salinity data with interacting key environmental parameters (e.g., temperature, nutrients, oxygen) for a comprehensive understanding of anthropogenically induced marine changes and its impact on human health and the global economy.

摘要

气候变化正在从根本上改变全球范围内的海洋和沿海生态系统。虽然海洋变暖、酸化对生态和生态系统功能及服务的影响正在得到全面研究,但人们对人类驱动的海洋盐度变化的影响的理解还不够。全球水循环通过降水、蒸发和陆地淡水径流等水通量来运转。这些变化继而调节海洋盐度,并通过影响洋流、分层、氧气饱和度和海平面上升来塑造海洋和沿海环境。除了对海洋物理过程的直接影响外,盐度变化还影响海洋生物功能,而其生态生理后果还了解甚少。这令人惊讶,因为盐度变化可能会影响多样性、生态系统和栖息地结构的丧失,以及包括营养级联在内的群落转移。气候模型对未来(本世纪末盐度变化)的预测表明,盐度变化的幅度可能会改变开阔海洋浮游生物群落结构和珊瑚礁群落的栖息地适宜性。这种盐度变化也可能影响沿海微生物的多样性和代谢能力,并损害(沿海和开阔海洋)浮游植物、藻类和海草的光合作用能力,从而对全球生物地球化学循环产生下游影响。在动态沿海地区,综合性盐度数据的稀缺性值得引起更多关注。这些数据集对于量化基于盐度的生态系统功能关系以及预测这些变化至关重要,这些变化最终将与全球范围内的碳封存以及淡水和食物供应联系起来。将活跃的高质量盐度数据与相互作用的关键环境参数(如温度、养分、氧气)相结合,对于全面了解人为引起的海洋变化及其对人类健康和全球经济的影响至关重要。

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