Variation in the timing and duration of autumn leaf phenology among temperate deciduous trees, native shrubs and non-native shrubs.

IF 3 3区 地球科学 Q2 BIOPHYSICS International Journal of Biometeorology Pub Date : 2024-08-01 Epub Date: 2024-05-07 DOI:10.1007/s00484-024-02693-7
Alison Donnelly, Rong Yu, Chloe Rehberg, Mark D Schwartz
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Abstract

The timing and duration of autumn leaf phenology marks important transitions in temperate deciduous forests, such as, start of senescence, declining productivity and changing nutrient cycling. Phenological research on temperate deciduous forests typically focuses on upper canopy trees, overlooking the contribution of other plant functional groups like shrubs. Yet shrubs tend to remain green longer than trees, while non-native shrubs, in particular, tend to exhibit an extended growing season that confers a competitive advantage over native shrubs. We monitored leaf senescence and leaf fall (2017-2020) of trees and shrubs (native and non-native) in an urban woodland fragment in Wisconsin, USA. Our findings revealed that, the start of leaf senescence did not differ significantly between vegetation groups, but leaf fall started (DOY 273) two weeks later in shrubs. Non-native shrubs exhibited a considerably delayed start (DOY 262) and end of leaf senescence (DOY 300), with leaf-fall ending (DOY 315) nearly four weeks later than native shrubs and trees. Overall, the duration of the autumn phenological season was longer for non-native shrubs than either native shrubs or trees. Comparison of the timing of spring phenophases with the start and end of leaf senescence revealed that when spring phenology in trees starts later in the season senescence also starts later and ends earlier. The opposite pattern was observed in native shrubs. In conclusion, understanding the contributions of plant functional groups to overall forest phenology requires future investigation to ensure accurate predictions of future ecosystem productivity and help address discrepancies with remote sensing phenometrics.

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温带落叶乔木、本地灌木和非本地灌木秋叶物候期的时间和持续时间差异。
秋叶物候的时间和持续时间标志着温带落叶林的重要转变,如开始衰老、生产力下降和养分循环的变化。温带落叶林的物候学研究通常侧重于树冠上层的树木,而忽略了灌木等其他植物功能群的贡献。然而灌木往往比乔木保持绿色的时间更长,尤其是非本地灌木往往生长期更长,与本地灌木相比具有竞争优势。我们监测了美国威斯康星州城市林地片段中乔木和灌木(本地和非本地)的叶片衰老和落叶情况(2017-2020 年)。我们的研究结果表明,不同植被群落的叶片开始衰老的时间没有显著差异,但灌木的落叶开始时间(DOY 273)要晚两周。非本地灌木的叶片衰老开始时间(DOY 262)和结束时间(DOY 300)大大推迟,落叶结束时间(DOY 315)比本地灌木和乔木晚近四周。总体而言,非本地灌木的秋季物候期要长于本地灌木或乔木。将春季物候期的时间与叶片衰老的开始和结束时间进行比较后发现,当乔木的春季物候期开始得较晚时,衰老也开始得较晚,结束得较早。而在本地灌木中则观察到相反的模式。总之,了解植物功能群对整个森林物候的贡献需要未来的调查,以确保对未来生态系统生产力的准确预测,并帮助解决与遥感物候测量之间的差异。
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来源期刊
CiteScore
6.40
自引率
9.40%
发文量
183
审稿时长
1 months
期刊介绍: The Journal publishes original research papers, review articles and short communications on studies examining the interactions between living organisms and factors of the natural and artificial atmospheric environment. Living organisms extend from single cell organisms, to plants and animals, including humans. The atmospheric environment includes climate and weather, electromagnetic radiation, and chemical and biological pollutants. The journal embraces basic and applied research and practical aspects such as living conditions, agriculture, forestry, and health. The journal is published for the International Society of Biometeorology, and most membership categories include a subscription to the Journal.
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