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Parameterization of temperature sensitivity of spring phenology and its application in explaining diverse phenological responses to temperature change

机译:春季物候温度敏感性参数化及其在解释温度变化的多种物候响应中的应用

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摘要

Existing evidence of plant phenological change to temperature increase demonstrates that the phenological responsiveness is greater at warmer locations and in early-season plant species. Explanations of these findings are scarce and not settled. Some studies suggest considering phenology as one functional trait within a plant's life history strategy. In this study, we adapt an existing phenological model to derive a generalized sensitivity in space (SpaceSens) model for calculating temperature sensitivity of spring plant phenophases across species and locations. The SpaceSens model have three parameters, including the temperature at the onset date of phenophases (Tp), base temperature threshold (Tb) and the length of period (L) used to calculate the mean temperature when performing regression analysis between phenology and temperature. A case study on first leaf date of 20 plant species from eastern China shows that the change of Tp and Tb among different species accounts for interspecific difference in temperature sensitivity. Moreover, lower Tp at lower latitude is the main reason why spring phenological responsiveness is greater there. These results suggest that spring phenophases of more responsive, early-season plants (especially in low latitude) will probably continue to diverge from the other late-season plants with temperatures warming in the future.
机译:植物物候变化对温度升高的现有证据表明,在较暖的位置和早期季节的植物物种中,物候响应性更高。这些发现的解释是稀缺的,尚未解决。一些研究建议将物候学视为植物生命史策略中的一项功能特征。在这项研究中,我们采用现有的物候模型来推导广义的空间敏感性(SpaceSens)模型,以计算跨物种和位置的春季植物表相的温度敏感性。 SpaceSens模型具有三个参数,包括物候开始日期的温度(Tp),基本温度阈值(Tb)和用于在物候和温度之间进行回归分析时用来计算平均温度的时间长度(L)。以中国东部20种植物的初叶期为例,研究表明,不同物种间Tp和Tb的变化是造成温度敏感性种间差异的原因。此外,较低纬度的较低Tp是该处春季物候响应较大的主要原因。这些结果表明,响应性更强的早期植物(特别是在低纬度地区)的春季物候期将来可能会继续与其他晚期植物区别开来,因为未来温度会升高。

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