Swiss Federal Institute for Forest, Snow and Landscape Research WSL, Birmensdorf, Switzerland.
Forest Ecology and Management Group, Wageningen University, Wageningen, The Netherlands.
Ecol Lett. 2022 Feb;25(2):427-439. doi: 10.1111/ele.13933. Epub 2021 Dec 9.
Radial stem growth dynamics at seasonal resolution are essential to understand how forests respond to climate change. We studied daily radial growth of 160 individuals of seven temperate tree species at 47 sites across Switzerland over 8 years. Growth of all species peaked in the early part of the growth season and commenced shortly before the summer solstice, but with species-specific seasonal patterns. Day length set a window of opportunity for radial growth. Within this window, the probability of daily growth was constrained particularly by air and soil moisture, resulting in intermittent growth to occur only on 29 to 77 days (30% to 80%) within the growth period. The number of days with growth largely determined annual growth, whereas the growth period length contributed less. We call for accounting for these non-linear intra-annual and species-specific growth dynamics in tree and forest models to reduce uncertainties in predictions under climate change.
径向茎生长动态的季节性分辨率对于理解森林如何应对气候变化至关重要。我们在瑞士 47 个地点的 160 株七种温带树种上进行了为期 8 年的研究,以了解其日生长动态。所有树种的生长高峰期都在生长季节的早期,并且在夏至前不久就开始了,但具有特定于物种的季节性模式。日照长度为径向生长创造了一个机会窗口。在这个窗口内,空气和土壤湿度特别限制了每日生长的可能性,导致仅在生长期间的 29 到 77 天(30%到 80%)内发生间歇性生长。有生长的天数在很大程度上决定了年生长量,而生长季节长度的贡献则较小。我们呼吁在树木和森林模型中考虑这些非线性的年内和种间特定的生长动态,以减少在气候变化下预测的不确定性。