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Climate change affects colonization dynamics in a metacommunity of three Daphnia species

机译:气候变化影响三个水蚤物种的一个群落的定居动态

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Climate change is expected to alter the range and abundance of many species by influencing habitat qualities. For species living in fragmented populations, not only the quality of the present patches but also access to new habitat patches may be affected. Here, we show that colonization in a metacommunity can be directly influenced by weather changes, and that these observed weather changes are consistent with global climate change models. Using a long-term dataset from a rock pool metacommunity of the three species Daphnia magna, Daphnia longispina and Daphnia pulex with 507 monitored habitat patches, we correlated a four-fold increase in colonization rate with warmer, drier weather for the period from 1982 to 2006. The higher colonization rate after warm and dry summers led to an increase in metacommunity dynamics over time. A mechanistic explanation for the increased colonization rate is that the resting stages have a higher exposure to animal and wind dispersal in desiccated rock pools. Although colonization rates reacted in the same direction in all three species, there were significant species-specific effects that resulted in an overall change in the metacommunity composition. Increased local instability and colonization dynamics may even lead to higher global stability of the metacommunity. Thus, whereas climate change has been reported to cause a unidirectional change in species range for many other species, it changes the dynamics and composition of an entire community in this metacommunity, with winners and losers difficult to predict.
机译:预计气候变化将通过影响栖息地质量而改变许多物种的范围和丰度。对于生活在零散种群中的物种,不仅会影响目前斑块的质量,而且还会影响获得新栖息地斑块的机会。在这里,我们表明,气候变化可以直接影响一个元社区的殖民化,而且这些观测到的天气变化与全球气候变化模型是一致的。使用来自三个物种Daphnia magna,Daphnia longispina和Daphnia pulex的岩石池亚群落的长期数据集以及507个监测到的栖息地斑块,我们将1982年至2007年期间定居率的四倍与温暖,干燥的天气相关联。 2006年。夏季炎热干燥之后较高的定殖率导致元群落动态随着时间的推移而增加。移殖率增加的一个机械解释是,在干燥的岩石池中,休耕期对动物和风的扩散影响更大。尽管在所有三个物种中定殖率都朝着相同的方向反应,但是存在明显的物种特异性效应,导致了整个群落的整体变化。局部不稳定性和殖民动态的增加甚至可能导致元社区的更高的全球稳定性。因此,尽管据报道气候变化导致许多其他物种的物种范围发生单向变化,但它改变了这个元社区中整个社区的动态和组成,而成功者和失败者都难以预测。

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