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Grasshopper phenological responses to climate gradients, variability, and change

机译:蝗虫对气候梯度,变异性和变化的物候响应

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Species have responded to recent climate change via pronounced, but often variable, shifts in seasonal timing (phenology). Can this variability be accounted for by comparing responses along an elevational gradient and among species differing in seasonal timing and traits? We resurveyed montane grasshopper communities along a 1300‐m elevational gradient to examine phenological responses to ~50?yr of climate warming. Phenological responses were elevation dependent, influenced by relative warming (which was more pronounced at higher elevations) and by substantial interannual variability in available growing degree‐days ( GDD s). The total number of GDD s available for development within a season declines with elevation, and correspondingly high‐elevation populations required fewer GDD s to reach adulthood. Although phenological advancements were particularly pronounced at higher elevations, consistent with a greater magnitude of climate warming, species as a whole initiated and completed development earlier in warmer years. During warm years, phenological advances were most pronounced early in development, and the timing of adulthood tended to occur earlier (at a similar or greater accumulation of GDD s). Phenological advancement was also more pronounced in early season species, which exhibit developmental plasticity to capitalize on warming. Interactions with elevation were also strongest for the early season species. Our study shows the importance of incorporating developmental information to understand the environmental and organismal mechanisms that drive variable phenological responses and suggests that the phenological impacts of warming will be concentrated early in development, among early season species, and at high elevations. Considering these drivers of phenological variability can aid understanding and predicting climate‐induced changes to community and ecosystem structure.
机译:物种通过明显但通常是季节性的季节变化(物候学)来应对近期的气候变化。是否可以通过比较沿海拔梯度以及季节时间和性状不同的物种之间的响应来解释这种变异性?我们对海拔1300-m的山地蝗虫群落进行了调查,以调查对50年来气候变暖的物候响应。物候响应是与海拔相关的,受相对变暖(在较高海拔时更为明显)和可用生长日数(GDD s)中年际变化的影响。一个季节内可用于发育的GDD总数随着海拔的升高而下降,相应地,高海拔人口需要较少的GDD才能成年。尽管在更高的海拔高度,物候学的进步尤为明显,这与气候变暖的幅度更大相一致,但总体而言,物种在更早的年份就开始并完成了发育。在温暖的年份,物候学的进展在发育的早期最为明显,成年的时间往往较早发生(GDD的积累或相似或更大)。在早期季节物种中,物候学的进步也更为明显,这些物种表现出可塑性,可以利用变暖。对于早期季节物种,与海拔的相互作用也最强。我们的研究表明,纳入发展信息以了解驱动各种物候响应的环境和生物机制的重要性,并表明变暖的物候影响将集中在发育的早期,早期物种和高海拔地区。考虑这些物候变异性的驱动因素可以帮助理解和预测气候引起的群落和生态系统结构的变化。

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