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Large extents of intensive land use limit community reorganization during climate warming

机译:大量土地集约利用限制了气候变暖期间的社区重组

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摘要

Climate change is increasingly altering the composition of ecological communities, in combination with other environmental pressures such as high-intensity land use. Pressures are expected to interact in their effects, but the extent to which intensive human land use constrains community responses to climate change is currently unclear. A generic indicator of climate change impact, the community temperature index (CTI), has previously been used to suggest that both bird and butterflies are successfully ‘tracking’ climate change. Here, we assessed community changes at over 600 English bird or butterfly monitoring sites over three decades and tested how the surrounding land has influenced these changes. We partitioned community changes into warm- and cold-associated assemblages and found that English bird communities have not reorganized successfully in response to climate change. CTI increases for birds are primarily attributable to the loss of cold-associated species, whilst for butterflies, warm-associated species have tended to increase. Importantly, the area of intensively managed land use around monitoring sites appears to influence these community changes, with large extents of intensively managed land limiting ‘adaptive’ community reorganization in response to climate change. Specifically, high-intensity land use appears to exacerbate declines in cold-adapted bird and butterfly species, and prevent increases in warm-associated birds. This has broad implications for managing landscapes to promote climate change adaptation.
机译:气候变化与其他环境压力(例如高强度土地利用)一起正日益改变着生态社区的组成。预计压力会相互影响,但目前尚不清楚密集的人类土地使用在多大程度上限制了社区对气候变化的反应。气候变化影响的通用指标,即社区温度指数(CTI),以前曾被用来表明鸟类和蝴蝶都已成功地“追踪”了气候变化。在这里,我们评估了过去三十年来在600多个英国鸟类或蝴蝶监测点的社区变化,并测试了周围土地如何影响这些变化。我们将群落变化分为与温暖和寒冷相关的组合,发现英语鸟类群落并未成功响应气候变化而重组。鸟类的CTI增加主要归因于与寒冷有关的物种的丧失,而对蝴蝶而言,与温暖有关的物种的趋势趋于增加。重要的是,监测点周围土地集约化管理的区域似乎会影响这些社区的变化,在很大程度上,土地集约化管理会限制应对气候变化的“适应性”社区重组。具体而言,高强度土地利用似乎加剧了适应寒冷的鸟类和蝴蝶物种的下降,并阻止了与温暖相关的鸟类的增长。这对于管理景观以促进气候变化适应具有广泛的意义。

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