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首页> 外文期刊>Global change biology >Temperature-related shifts in butterfly phenology depend on the habitat.
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Temperature-related shifts in butterfly phenology depend on the habitat.

机译:与温度相关的蝴蝶物候变化取决于栖息地。

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Many species are becoming active earlier in the season as the climate becomes warmer. In parallel to phenological responses to climate change, many species have also been affected by habitat changes due to anthropogenic land use. As habitat type can directly affect microclimatic conditions, concurrent changes in climate and habitat could have interacting effects on the phenology of species. Temperature-related shifts in phenology, however, have mostly been studied independent of habitat types. Here, I used long-term data from a highly standardized monitoring program with 519 transects to study how phenology of butterflies is affected by ambient temperature and habitat type. I compared forests, agricultural areas and settlements, reflecting three major land use forms, and considered butterfly species that were observed in all three of these habitats. Seasonal appearance of the butterflies was affected both by the ambient temperature and the habitat type. As expected, warmer temperatures led to an overall advancement of the appearance and flight period of most species. Surprisingly, however, phenology of species was delayed in settlement habitats, even though this habitat type is generally associated with higher temperatures. A possible explanation is dispersal among habitat types, such that source-sink effects affect local phenology. When there is little productivity in settlement areas, observed butterflies may have immigrated from forest or agricultural habitats and thus appear later in settlements. My findings suggest that a spillover of individuals among habitats may affect phenology trends and indicate that phenological studies need to be interpreted in the context of habitat types. This becomes especially important when defining strategies to prevent or mitigate effects of climate and land-use changes on phenology and abundance of species.
机译:随着气候变暖,许多物种在本赛季初活跃起来。在对气候变化的物候响应的同时,由于人为土地利用,许多物种也受到栖息地变化的影响。由于栖息地类型可以直接影响微气候条件,因此气候和栖息地的同时变化可能会对物种的物候产生相互作用的影响。但是,大多数研究了与温度相关的物候变化,而与栖息地类型无关。在这里,我使用来自高度标准化的监测程序(包含519个样点)的长期数据来研究蝴蝶的物候如何受到环境温度和栖息地类型的影响。我比较了森林,农业地区和居民点,反映了三种主要的土地利用形式,并考虑了在这三个栖息地中都观察到的蝴蝶种类。蝴蝶的季节性外观受环境温度和栖息地类型的影响。不出所料,温度升高导致大多数物种的外观和飞行时间总体上有所提高。然而,令人惊讶的是,即使这种栖息地类型通常与更高的温度相关,定居栖息地的物种物候也被延迟了。可能的解释是生境类型之间的分散,以至源汇效应影响局部物候。如果在定居点地区生产力低下,则观察到的蝴蝶可能已从森林或农业栖息地移出,因此后来出现在定居点。我的发现表明,个人在生境中的溢出可能会影响物候趋势,并表明需要根据生境类型来解释物候研究。在定义预防或减轻气候和土地利用变化对物候和物种丰富度的影响的策略时,这一点尤其重要。

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