4.7 Article

Severe drought can delay autumn senescence of silver birch in the current year but advance it in the next year

Journal

AGRICULTURAL AND FOREST METEOROLOGY
Volume 316, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.agrformet.2022.108879

Keywords

Betula pendula; Silver birch; Cessation of wood growth; Autumn leaf phenology

Funding

  1. ERC Starting Grant LEAF-FALL [714916]
  2. Norwegian Institute of Bio-economy Research (NIBIO)

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This study monitored the leaf and wood phenological events of silver birch in Norway and found that drought advanced wood growth and delayed leaf phenology. It also observed an unexpected advance in leaf phenology in 2019 compared to 2018 and 2020. Additionally, the study showed that wood growth is more sensitive to site fertility than autumn leaf phenology.
Historically, the autumn dynamics of deciduous forest trees have not been investigated in detail. However, autumn phenological events, like onset of loss of canopy greenness (OLCG), onset of foliar senescence (OFS) and cessation of wood growth (CWG), have an important impact on tree radial growth and the entire ecosystem's seasonal dynamics. Here, we monitored the leaf and wood phenological events of silver birch (Betula pendula) at four different sites in angstrom s, southeastern Norway: (a) a natural mature stand, (b) a plantation on former agricultural ground, (c) young natural trees, and (d) young trees in pots under different fertilization levels. The study took place over four consecutive years (from 2017 to 2020), with a particular focus on 2018, a year in which there was a severe summer drought, and the next year, 2019, which featured more normal conditions. First, we provided a description of birch phenology within its mid-north distributional. Second, we showed that drought advanced CWG by about 5 to 6 weeks and it delayed OLCG and OFS up to 30 days. Third, we observed an unexpected advance in OLCG in 2019 compared to 2018 (30 days) and 2020 (14 days). OFS presented similar dynamics as OLCG, whereas CWG was advanced only in 2018. These findings might indicate lag-effects of severe drought on the next year autumn leaf phenology but not on wood growth. On the other hand, the comparison between the natural stand and the plantation showed that, under drought conditions, wood growth is more sensitive to site fertility than autumn leaf phenology. In summary, our study elucidated the autumn dynamics of an important deciduous forest species in the northern temperate zone and showed unexpected impacts of a severely dry and warm summer on the current and next year leaf phenology.

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