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气候变暖对欧洲浮游生物动态物候异步性的影响。

Impact of climate warming on phenological asynchrony of plankton dynamics across Europe.

作者信息

Gronchi Enzo, Straile Dietmar, Diehl Sebastian, Jöhnk Klaus D, Peeters Frank

机构信息

Limnological Institute, University of Constance, Constance, Germany.

Department of Ecology and Environmental Science, Umeå University, Umeå, Sweden.

出版信息

Ecol Lett. 2023 May;26(5):717-728. doi: 10.1111/ele.14190. Epub 2023 Mar 4.

Abstract

Climate warming alters the seasonal timing of biological events. This raises concerns that species-specific responses to warming may de-synchronize co-evolved consumer-resource phenologies, resulting in trophic mismatch and altered ecosystem dynamics. We explored the effects of warming on the synchrony of two events: the onset of the phytoplankton spring bloom and the spring/summer maximum of the grazer Daphnia. Simulation of 16 lake types over 31 years at 1907 North African and European locations under 5 climate scenarios revealed that the current median phenological delay between the two events varies greatly (20-190 days) across lake types and geographic locations. Warming moves both events forward in time and can lengthen or shorten the delay between them by up to ±60 days. Our simulations suggest large geographic and lake-specific variations in phenological synchrony, provide quantitative predictions of its dependence on physical lake properties and geographic location and highlight research needs concerning its ecological consequences.

摘要

气候变暖改变了生物事件的季节性时间安排。这引发了人们的担忧,即物种对变暖的特异性反应可能会使共同进化的消费者-资源物候不同步,导致营养不匹配并改变生态系统动态。我们探究了变暖对两个事件同步性的影响:浮游植物春季水华的开始以及食草动物水蚤在春季/夏季的数量最大值。在5种气候情景下,对1907个北非和欧洲地点的16种湖泊类型进行31年的模拟,结果显示,目前这两个事件之间的物候延迟中值在不同湖泊类型和地理位置之间差异很大(20 - 190天)。变暖使这两个事件都提前发生,并且可以将它们之间的延迟延长或缩短多达±60天。我们的模拟表明物候同步性存在很大的地理和湖泊特异性差异,提供了其对湖泊物理特性和地理位置依赖性的定量预测,并突出了有关其生态后果的研究需求。

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