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物种种群丰富度对落叶林春季物候的影响具有时间和物种间的变异性。

Unpunctual in diversity: The effect of stand species richness on spring phenology of deciduous tree stands varies among species and years.

机构信息

Plants and Ecosystems (PLECO), Department of Biology, University of Antwerp, Wilrijk, Belgium.

Forest & Naturelab (ForNaLab), Department of Environment, Ghent University, Gontrode, Belgium.

出版信息

Glob Chang Biol. 2024 Apr;30(4):e17266. doi: 10.1111/gcb.17266.

Abstract

Climatic drivers alone do not adequately explain the regional variation in budburst timing in deciduous forests across Europe. Stand-level factors, such as tree species richness, might affect budburst timing by creating different microclimates under the same site macroclimate. We assessed different phases of the spring phenology (start, midpoint, end, and overall duration of the budburst period) of four important European tree species (Betula pendula, Fagus sylvatica, Quercus robur and Tilia cordata) in monocultures and four-species mixture stands of a common garden tree biodiversity experiment in Belgium (FORBIO) in 2021 and 2022. Microclimatic differences between the stands in terms of bud chilling, temperature forcing, and soil temperature were considerable, with four-species mixtures being generally colder than monocultures in spring, but not in winter. In the colder spring of 2021, at the stand level, the end of the budburst period was advanced, and its overall duration shortened, in the four-species mixtures. At species level, this response was significant for F. sylvatica. In the warmer spring of 2022, advances in spring phenology in four-species stands were observed again in F. sylvatica and, less markedly, in B. pendula but without a general response at the stand level. Q. robur showed specific patterns with delayed budburst start in 2021 in the four-species mixtures and very short budburst duration for all stands in 2022. Phenological differences between monocultures and four-species mixtures were linked to microclimatic differences in light availability rather than in temperature as even comparatively colder microclimates showed an advanced phenology. Compared to weather conditions, tree species richness had a lower impact on budburst timing, but this impact can be of importance for key species like F. sylvatica and colder springs. These results indicate that forest biodiversity can affect budburst phenology, with wider implications, especially for forest- and land surface models.

摘要

气候驱动因素单独不能充分解释欧洲落叶林芽破裂时间的区域变化。林分水平因素,如树种丰富度,可能通过在相同的局地大气候下创造不同的小气候来影响芽破裂时间。我们评估了四个重要的欧洲树种(欧洲山毛榉、欧洲山毛榉、欧洲山毛榉和欧洲椴)在 2021 年和 2022 年比利时共同花园树木生物多样性实验(FORBIO)的单一种群和四物种混合林分中的不同春态(芽破裂期开始、中点、结束和总持续时间)阶段。林分之间在芽休眠、温度强迫和土壤温度方面的微气候差异相当大,四物种混合林通常比单一种群林在春季更冷,但在冬季则不然。在 2021 年较冷的春季,在林分水平上,四物种混合林分的芽破裂期结束提前,总持续时间缩短。在树种水平上,这一反应在欧洲山毛榉中显著。在 2022 年较暖的春季,再次观察到四物种林分的春态提前,在欧洲山毛榉中较为明显,在欧洲山毛榉中则不明显,但在林分水平上没有普遍反应。Q. robur 在 2021 年四物种混合林中的芽破裂开始延迟,在所有林分中 2022 年的芽破裂持续时间非常短,表现出特定的模式。单一种群和四物种混合林分之间的物候差异与光照可用性方面的微气候差异有关,而与温度无关,即使是相对较冷的微气候也表现出提前的物候。与天气条件相比,树种丰富度对芽破裂时间的影响较小,但对像欧洲山毛榉这样的关键物种来说,这种影响可能很重要,尤其是在较冷的春季。这些结果表明,森林生物多样性可以影响芽破裂物候,具有更广泛的影响,特别是对森林和陆面模型。

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