Department of Biology, Boston University, Boston, MA, 02215, USA.
Oecologia. 2012 Apr;168(4):1161-71. doi: 10.1007/s00442-011-2160-4. Epub 2011 Oct 20.
The strength and direction of phenological responses to changes in climate have been shown to vary significantly both among species and among populations of a species, with the overall patterns not fully resolved. Here, we studied the temporal and spatial variability associated with the response of several insect species to recent global warming. We use hierarchical models within a model comparison framework to analyze phenological data gathered over 40 years by the Japan Meteorological Agency on the emergence dates of 14 insect species at sites across Japan. Contrary to what has been predicted with global warming, temporal trends of annual emergence showed a later emergence day for some species and sites over time, even though temperatures are warming. However, when emergence data were analyzed as a function of temperature and precipitation, the overall response pointed out an earlier emergence day with warmer conditions. The apparent contradiction between the response to temperature and trends over time indicates that other factors, such as declining populations, may be affecting the date phenological events are being recorded. Overall, the responses by insects were weaker than those found for plants in previous work over the same time period in these ecosystems, suggesting the potential for ecological mismatches with deleterious effects for both suites of species. And although temperature may be the major driver of species phenology, we should be cautious when analyzing phenological datasets as many other factors may also be contributing to the variability in phenology.
物候对气候变化的响应强度和方向在物种间和物种内的种群间存在显著差异,其总体模式尚未完全确定。在这里,我们研究了与几种昆虫物种对最近全球变暖的响应相关的时间和空间可变性。我们使用模型比较框架内的层次模型来分析日本气象厅在过去 40 年中收集的物候数据,这些数据是在日本各地的多个地点通过昆虫物种的出现日期得出的。与全球变暖的预测相反,随着时间的推移,一些物种和地点的年度出现时间趋势显示出出现日较晚,尽管温度在升高。然而,当将出现数据作为温度和降水的函数进行分析时,整体响应表明在温暖条件下出现日较早。对温度的响应与随时间变化的趋势之间的明显矛盾表明,其他因素(如种群减少)可能会影响记录物候事件的日期。总的来说,与同一时期在这些生态系统中对植物的研究相比,昆虫的反应较弱,这表明与这两组物种都具有有害影响的生态不匹配的可能性。尽管温度可能是物种物候的主要驱动因素,但我们在分析物候数据集时应谨慎,因为许多其他因素也可能导致物候的可变性。