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Flowering phenology change and climate warming in southwestern Ohio

机译:俄亥俄西南部开花物候变化与气候变暖

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Global surface temperature has increased markedly over the last 100 years. This increase has a variety of implications for human societies, and for ecological systems. One of the most obvious ways ecosystems are affected by global climate change is through alteration of organisms’ developmental timing (phenology). We used annual botanical surveys that documented the first flowering for an array of species from 1976 to 2003 to examine the potential implications of climate change for plant development. The overall trend for these species was a progressively earlier flowering time. The two earliest flowering taxa (Galanthus and Crocus) also exhibited the strongest shift in first flowering. We detected a significant trend in climate suggesting higher temperatures in winter and spring over the sampling interval and found a significant relationship between warming temperatures and first flowering time for some species. Although 60% of the species in our study flowered earlier over the sampling interval, the remaining species exhibited no statistically detectable change. This variation in response is ostensibly associated with among-species variation in the role of climate cues in plant development. Future work is needed to isolate specific climate cues, and to link plant phenology to the physiological processes that trigger plant development.
机译:在过去的100年中,全球表面温度显着上升。这种增长对人类社会和生态系统都有各种影响。生态系统受到全球气候变化影响的最明显方式之一是通过改变生物的发育时间(物候学)。我们使用了年度植物调查记录了1976年至2003年一系列物种的第一朵花,以研究气候变化对植物发育的潜在影响。这些物种的总体趋势是开花时间逐渐提前。两种最早开花的类群(Galanthus和番红花)在首次开花时也表现出最强的转移。我们检测到明显的气候变化趋势,表明在整个采样间隔内冬季和春季的温度较高,并且发现某些物种的变暖温度与首次开花时间之间存在显着的关系。尽管在我们的研究中,有60%的物种在采样间隔内开花较早,但其余物种均未显示出可检测到的变化。表面上,这种响应差异与种间差异在气候提示在植物发育中的作用有关。需要进一步的工作来分离特定的气候线索,并将植物物候与触发植物发育的生理过程联系起来。

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