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Implications of climate warming for Boreal Shield lakes: a review and synthesis

机译:北方盾构湖气候变暖的意义:综述与综合

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Climate change is a reality. A warming climate will have large effects on lakes of the Boreal Shield, Our ability to forecast these effects, however, is hampered by a very incomplete understanding of the actual interactions between weather and many aspects of lake ecosystems. Climate change will affect lakes in very complex ways. Changing weather conditions will have direct effects on thermal habitats; however, there will also be very important indirect effects on lake ecosystems through influences on watershed processes that affect the thermal and chemical characteristics of lakes. Altered habitat conditions will affect the resident biota in both positive and negative ways and may favour range expansions of some native and non-native species. Our understanding of the altered biological interactions that will structure lake communities in a warmer climate is still limited, making the prediction of biological outcomes very difficult. Modelling efforts, experiments and empirical analyses of relationships between important attributes of lakes, lake communities, and weather conditions in the past are beginning to further our ability to predict likely future effects. Much more work is needed in all these research areas to further our understanding of the probable effects of climate change on Boreal Shield lakes. Because of the potential interactions of climate with other large-scale environmental stressors such as UV-B irradi-ance, exotic species invasions, base cation depletion, and acidification, future studies need to consider multiple stressor effects.
机译:气候变化是现实。气候变暖将对北方盾构湖泊产生重大影响。然而,由于对天气与湖泊生态系统许多方面之间的实际相互作用的理解不够全面,我们预测这些影响的能力受到了阻碍。气候变化将以非常复杂的方式影响湖泊。天气条件的变化将直接影响热生境;但是,通过影响流域过程的影响湖泊的热和化学特性,对湖泊生态系统也将有非常重要的间接影响。栖息地条件的改变将以积极和消极的方式影响居民的生物区系,并可能有利于某些本地和非本地物种的范围扩展。我们对在温暖的气候下将构成湖泊群落的生物相互作用发生改变的理解仍然很有限,因此很难预测生物学结果。对过去湖泊,湖泊群落的重要属性与天气状况之间的关系进行建模,实验和实证分析,正在开始增强我们预测未来可能影响的能力。在所有这些研究领域中,还需要做更多的工作来加深我们对气候变化对北盾湖的可能影响的理解。由于气候与其他大规模环境胁迫因素(例如UV-B辐照度,外来物种入侵,碱性阳离子耗竭和酸化)之间可能存在相互作用,因此未来的研究需要考虑多种胁迫因素。

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