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Global warming and excess nitrogen may induce butterfly decline by microclimatic cooling

机译:全球气候变暖和过量的氮可能通过微气候冷却导致蝴蝶下降

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摘要

Global warming may explain the current poleward shift of species distributions. However, paradoxically, climatic warming can lead to microclimatic cooling in spring by advancing plant growth, an effect worsened by excess nitrogen. We suggest that spring-developing but thermophilous organisms, such as butterflies hibernating as egg or larva, are particularly sensitive to the cooling of microclimates. Using published data on butterfly trends in distribution, we report a comparatively greater decline in egg-larva hibernators in European countries with oceanic climates and high nitrogen deposition, which supports this explanation. Furthermore, trends in abundance from a nationwide butterfly monitoring scheme reveal a 63% decrease over 13 years (1992-2004) for egg-larva hibernators in the Netherlands, contrasting with a nonsignificant trend in adult-pupa hibernators. This evidence supports the hypothesis that these environmental changes pose new threats to spring-developing, thermophilous species. We underline the threat of climate change to biodiversity, as previously suggested on the basis of mobility, habitat fragmentation and evolutionary adaptation, but we here emphasize a different ecological axis of change in habitat quality.
机译:全球变暖可以解释当前物种分布的极移。然而,自相矛盾的是,气候变暖会通过促进植物生长而导致春季的小气候降温,而氮的过量则会加剧这种影响。我们建议春季发育但嗜热的生物,例如冬眠的卵或幼虫的蝴蝶,对微气候的冷却特别敏感。使用已发布的有关蝴蝶分布趋势的数据,我们报告了在海洋性气候和高氮沉积的欧洲国家,卵幼虫冬眠器的下降相对较大,这支持了这一解释。此外,全国范围内蝴蝶监测计划的丰度趋势表明,在13年内(1992-2004年),荷兰的卵幼虫冬眠者的数量减少了63%,而成年pu冬眠者的趋势却没有显着变化。这些证据支持以下假设:这些环境变化对春季发育的嗜热菌种构成了新的威胁。我们强调了气候变化对生物多样性的威胁,正如先前根据机动性,生境破碎化和进化适应所提出的那样,但我们在这里强调了生境质量变化的不同生态轴。

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