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首页> 外文期刊>Climate research >Heterogeneous intra-annual climatic changes drive different phenological responses at two trophic levels
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Heterogeneous intra-annual climatic changes drive different phenological responses at two trophic levels

机译:年内异质气候变化在两个营养水平上驱动不同的物候响应

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A shift in a life cycle event of one species relative to other species in an ecosystem should be considered more relevant than an absolute shift in phenological dates. However, there is very little evidence regarding the differential effects of climate change on the phenologies of different trophic levels and their potential effects on ecosystem functioning. The Japan Meteorological Agency has monitored the flowering of 4 Prunus tree species and the appearance date of the butterfly Pieris rapae (a proxy for potential pollinators) in spring at Nagano, Japan, since 1953. Flowering tended to occur earlier over the last 3 decades, whereas the appearance of the butterfly was delayed. The effects of climate and. the timing of the sensitive period differ between both trophic levels. The plants were strongly affected by temperature (r = -0.87) 30 to 40 d prior to flowering, whereas the butterfly was less affected by temperature (r = -0.50), and the effects mainly occurred during the 15 d prior to its appearance. The temperature during the plants' sensitive period has increased sharply since 1953, whereas the temperature during the butterfly's sensitive period has not changed significantly. The phenologies of the plants and butterfly are changing in opposite directions because they use different climatic cues with different temporal trends. This is the first documentation of differential effects of climate change between plant and insect phenology in Japan.
机译:应将一个物种相对于生态系统中其他物种的生命周期事件发生的变化比在物候日期上的绝对变化更为相关。但是,关于气候变化对不同营养水平的物候的不同影响及其对生态系统功能的潜在影响的证据很少。自1953年以来,日本气象厅监视了4种李属植物的开花情况以及春季在日本长野的蝴蝶皮利斯天蛾的出现日期。该花朵通常在过去的30年中出现得较早,而蝴蝶的出现被延迟了。气候的影响。在两个营养级别之间,敏感期的时间有所不同。开花前30至40 d,植物受到温度的强烈影响(r = -0.87),而蝴蝶受到温度的影响较小(r = -0.50),其影响主要发生在出现前15 d。自1953年以来,植物敏感期的温度急剧上升,而蝴蝶敏感期的温度没有明显变化。植物和蝴蝶的物候向相反的方向变化,因为它们使用具有不同时间趋势的不同气候线索。这是日本气候变化对植物和昆虫物候的不同影响的第一份文献。

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