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Decreasing rainfall frequency contributes to earlier leaf onset in northern ecosystems

Jian Wang (), Desheng Liu (), Philippe Ciais and Josep Peñuelas
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Jian Wang: The Ohio State University
Desheng Liu: The Ohio State University
Philippe Ciais: Laboratoire des Sciences du Climat et de l’Environnement, IPSL-LSCE CEA CNRS UVSQ
Josep Peñuelas: CSIC, Global Ecology Unit CREAF-CSIC-UAB, Bellaterra

Nature Climate Change, 2022, vol. 12, issue 4, 386-392

Abstract: Abstract Climate change substantially advances the leaf onset date (LOD) and regulates carbon uptake by plants. Unlike temperature, the effect of precipitation remains largely elusive. Here we use carbon-flux measurements, in situ records of leaf unfolding and satellite greenness observations to examine the role of precipitation frequency (Pfreq, number of rainy days) in controlling the LOD in northern ecosystems (>30° N). Widespread decreases in Pfreq during the past three decades positively contributed to the advance in LOD, possibly due to increased exposure to radiation, exhibiting a dominant control of LOD over ~10% of the area. Lower Pfreq may also enhance chilling at night and warming at daytime, consequently leading to earlier LOD. We further develop a weighted precipitation growing-degree-day algorithm that projected a generally earlier LOD than currently predicted. These results highlight the need for a comprehensive understanding of the impacts of precipitation on LOD, which is necessary for improved projections.

Date: 2022
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DOI: 10.1038/s41558-022-01285-w

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