School of Integrative Plant Science, Cornell University, Ithaca, NY, 14850, USA.
New Phytol. 2021 Aug;231(3):974-986. doi: 10.1111/nph.17432. Epub 2021 Jun 6.
Temperate forest ecosystems are exposed to a higher frequency, duration and severity of drought. To promote forest longevity in a changing climate, we require a better understanding of the long-term impacts of repetitive drought events on fine-root dynamics in mature forests. Using minirhizotron methods, we investigated the effect of seasonal drought on fine-root dynamics in single-species and mixed-species arrangements of Fagus sylvatica (European beech) and Picea abies (Norway spruce) by means of a 4-yr-long throughfall-exclusion experiment. Fine-root production of both species decreased under drought. However, this reduction was not evident for P. abies when grown intermixed with F. sylvatica. Throughfall-exclusion prolonged the lifespan of P. abies roots but did not change the lifespan of F. sylvatica roots, except in 2016. Fagus sylvatica responded to drought by reducing fine-root production at specific depths and during roof closure. This is the first study to examine long-term trends in mature forest fine-root dynamics under repetitive drought events. Species-specific fine-root responses to drought have implications for the rate and depth of root-derived organic matter supply to soil. From a root dynamics perspective, intermixing tree species is not beneficial to all species but dampens drought impacts on the belowground productivity of P. abies.
温带森林生态系统更容易受到更频繁、更长时间和更严重的干旱影响。为了促进气候变化下森林的长期生长,我们需要更好地了解重复干旱事件对成熟森林细根动态的长期影响。本研究采用微根管方法,通过为期 4 年的林冠截留去除实验,研究了季节性干旱对欧洲山毛榉(Fagus sylvatica)和挪威云杉(Picea abies)单种和混交林细根动态的影响。在干旱条件下,两种树种的细根生产力均下降。然而,当 P. abies 与 F. sylvatica 混交时,这种减少并不明显。林冠截留延长了 P. abies 根的寿命,但除 2016 年外,并没有改变 F. sylvatica 根的寿命。F. sylvatica 通过在特定深度和林冠关闭期间减少细根生产来应对干旱。这是首次研究重复干旱事件对成熟森林细根动态的长期趋势。树种特异性对干旱的细根响应对根源有机物质向土壤的供应速率和深度有影响。从根动态的角度来看,树种混交并不利于所有物种,反而减轻了干旱对 P. abies 地下生产力的影响。