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首页> 外文期刊>Global change biology >Beyond just sea-level rise: considering macroclimatic drivers within coastal wetland vulnerability assessments to climate change
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Beyond just sea-level rise: considering macroclimatic drivers within coastal wetland vulnerability assessments to climate change

机译:超越海平面上升:在沿海湿地对气候变化的脆弱性评估中​​考虑宏观气候驱动因素

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摘要

Due to their position at the land-sea interface, coastal wetlands are vulnerable to many aspects of climate change. However, climate change vulnerability assessments for coastal wetlands generally focus solely on sea-level rise without considering the effects of other facets of climate change. Across the globe and in all ecosystems, macroclimatic drivers (e.g., temperature and rainfall regimes) greatly influence ecosystem structure and function. Macroclimatic drivers have been the focus of climate change-related threat evaluations for terrestrial ecosystems, but largely ignored for coastal wetlands. In some coastal wetlands, changing macroclimatic conditions are expected to result in foundation plant species replacement, which would affect the supply of certain ecosystem goods and services and could affect ecosystem resilience. As examples, we highlight several ecological transition zones where small changes in macroclimatic conditions would result in comparatively large changes in coastal wetland ecosystem structure and function. Our intent in this communication is not to minimize the importance of sea-level rise. Rather, our overarching aim is to illustrate the need to also consider macroclimatic drivers within vulnerability assessments for coastal wetlands.
机译:由于其在陆海界面的位置,沿海湿地易受气候变化许多方面的影响。但是,对沿海湿地的气候变化脆弱性评估通常只关注海平面上升,而没有考虑气候变化其他方面的影响。在全球范围内以及在所有生态系统中,宏观气候驱动因素(例如温度和降雨制度)都会极大地影响生态系统的结构和功能。宏观气候驱动因素一直是针对陆地生态系统与气候变化相关的威胁评估的重点,但对于沿海湿地却大为忽略。在一些沿海湿地,不断变化的宏观气候条件预计将导致基础植物种类的替换,这将影响某些生态系统产品和服务的供应,并可能影响生态系统的复原力。例如,我们重点介绍了几个生态过渡带,在这些过渡带,宏观气候条件的微小变化会导致沿海湿地生态系统的结构和功能发生较大的变化。我们进行这种交流的目的不是要最小化海平面上升的重要性。相反,我们的总体目标是说明需要在沿海湿地脆弱性评估中​​同时考虑宏观气候驱动因素。

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