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Mutualistic interactions reshuffle the effects of climate change on plants across the tree of life

机译:相互影响的相互作用改变了气候变化对整个生命树上植物的影响

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Climatically induced local species extinctions may trigger coextinction cascades, thus driving many more species to extinction than originally predicted by species distribution models. Using seven pollination networks across Europe that include the phylogeny and life history traits of plants, we show a substantial variability across networks in climatically predicted plant extinction—and particularly the subsequent coextinction—rates, with much higher values in Mediterranean than Eurosiberian networks. While geographic location best predicts the probability of a plant species to be driven to extinction by climate change, subsequent coextinctions are best predicted by the local network of interactions. These coextinctions not only increase the total number of plant species being driven to extinction but also add a bias in the way the major taxonomic and functional groups are pruned.
机译:气候导致的局部物种灭绝可能引发共灭绝级联反应,从而驱使比物种分布模型最初预测的物种灭绝更多的物种。使用欧洲的七个授粉网络,其中包括植物的系统发育和生活史特征,我们显示出气候预测的植物灭绝率(尤其是随后的共灭绝率)在整个网络中都存在很大的变异性,在地中海,该值比欧洲西伯利亚网络高得多。地理位置最能预测植物物种因气候变化而灭绝的可能性,而随后的共灭绝最能通过当地的相互作用网络预测。这些共存不仅增加了濒临灭绝的植物物种总数,而且在修剪主要分类和功能基团的方式上也增加了偏见。

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