4.8 Article

Climate warming increases spring phenological differences among temperate trees

期刊

GLOBAL CHANGE BIOLOGY
卷 26, 期 10, 页码 5979-5987

出版社

WILEY
DOI: 10.1111/gcb.15301

关键词

climate change; interspecific differences in spring phenology; phenological shift; photoperiod; temperature sensitivity

资金

  1. General program of National Nature Science Foundation of China [31770516]
  2. National Key Research and Development Program of China [2017YFA06036001]
  3. 111 Project [B18006]
  4. Fundamental Research Funds for the Central Universities [2018EYT05]
  5. European Research Council through Synergy grant ERC-2013-SyG IMBALANCE-P [610028]
  6. Bavarian Ministry of Science via the Bavarian Climate Research Network (bayklif/BAYSICS)

向作者/读者索取更多资源

Climate warming has substantially advanced spring leaf flushing, but winter chilling and photoperiod co-determine the leaf flushing process in ways that vary among species. As a result, the interspecific differences in spring phenology (IDSP) are expected to change with climate warming, which may, in turn, induce negative or positive ecological consequences. However, the temporal change of IDSP at large spatiotemporal scales remains unclear. In this study, we analyzed long-term in-situ observations (1951-2016) of six, coexisting temperate tree species from 305 sites across Central Europe and found that phenological ranking did not change when comparing the rapidly warming period 1984-2016 to the marginally warming period 1951-1983. However, the advance of leaf flushing was significantly larger in early-flushing species EFS (6.7 +/- 0.3 days) than in late-flushing species LFS (5.9 +/- 0.2 days) between the two periods, indicating extended IDSP. This IDSP extension could not be explained by differences in temperature sensitivity between EFS and LFS; however, climatic warming-induced heat accumulation effects on leaf flushing, which were linked to a greater heat requirement and higher photoperiod sensitivity in LFS, drove the shifts in IDSP. Continued climate warming is expected to further extend IDSP across temperate trees, with associated implications for ecosystem function.

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