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植物繁殖物候的跨大陆比较显示出温度敏感性存在高度种内变异。

Cross-continental comparison of plant reproductive phenology shows high intraspecific variation in temperature sensitivity.

作者信息

Reeb Rachel A, Heberling J Mason, Kuebbing Sara E

机构信息

Department of Biological Sciences, University of Pittsburgh, 4249 Fifth Ave, Pittsburgh, PA 15260, USA.

Section of Botany, Carnegie Museum of Natural History, 4400 Forbes Ave, Pittsburgh, PA 15213, USA.

出版信息

AoB Plants. 2024 Oct 23;16(6):plae058. doi: 10.1093/aobpla/plae058. eCollection 2024 Dec.

Abstract

The success of plant species under climate change will be determined, in part, by their phenological responses to temperature. Despite the growing need to forecast such outcomes across entire species ranges, it remains unclear how phenological sensitivity to temperature might vary across individuals of the same species. In this study, we harnessed community science data to document intraspecific patterns in phenological temperature sensitivity across the multicontinental range of six herbaceous plant species. Using linear models, we correlated georeferenced temperature data with 23 220 plant phenological records from to generate spatially explicit estimates of phenological temperature sensitivity across the shared range of species. We additionally evaluated the geographic association between local historic climate conditions (i.e. mean annual temperature [MAT] and interannual variability in temperature) and the temperature sensitivity of plants. We found that plant temperature sensitivity varied substantially at both the interspecific and intraspecific levels, demonstrating that phenological responses to climate change have the potential to vary both within and among species. Additionally, we provide evidence for a strong geographic association between plant temperature sensitivity and local historic climate conditions. Plants were more sensitive to temperature in hotter climates (i.e. regions with high MAT), but only in regions with high interannual temperature variability. In regions with low interannual temperature variability, plants displayed universally weak sensitivity to temperature, regardless of baseline annual temperature. This evidence suggests that pheno-climatic forecasts may be improved by accounting for intraspecific variation in phenological temperature sensitivity. Broad climatic factors such as MAT and interannual temperature variability likely serve as useful predictors for estimating temperature sensitivity across species' ranges.

摘要

植物物种在气候变化下的成功,部分将取决于它们对温度的物候响应。尽管越来越需要预测整个物种范围内的此类结果,但同一物种个体间的物候温度敏感性如何变化仍不清楚。在本研究中,我们利用社区科学数据记录了六种草本植物在多大陆范围内物候温度敏感性的种内模式。使用线性模型,我们将地理参考温度数据与来自[具体来源]的23220条植物物候记录相关联,以生成物种共享范围内物候温度敏感性的空间明确估计值。我们还评估了当地历史气候条件(即年平均温度[MAT]和温度的年际变率)与植物温度敏感性之间的地理关联。我们发现,植物温度敏感性在种间和种内水平上都有很大差异,这表明对气候变化的物候响应在物种内部和物种之间都有可能不同。此外,我们提供了植物温度敏感性与当地历史气候条件之间存在强烈地理关联的证据。植物在较热的气候(即MAT高的地区)对温度更敏感,但仅在年际温度变率高的地区如此。在年际温度变率低的地区,无论基线年温度如何,植物对温度的敏感性普遍较弱。这一证据表明,通过考虑物候温度敏感性的种内变异,物候-气候预测可能会得到改善。诸如MAT和年际温度变率等广泛的气候因素可能是估计物种范围内温度敏感性的有用预测指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bbb/11639196/db174fc96f87/plae058_fig1.jpg

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