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干旱对草地物候的影响取决于功能类型。

Effects of drought on grassland phenology depend on functional types.

作者信息

Castillioni Karen, Newman Gregory S, Souza Lara, Iler Amy M

机构信息

Oklahoma Biological Survey, University of Oklahoma, Norman, OK, 73019, USA.

Department of Microbiology and Plant Biology, University of Oklahoma, Norman, OK, 73019, USA.

出版信息

New Phytol. 2022 Nov;236(4):1558-1571. doi: 10.1111/nph.18462. Epub 2022 Sep 28.

Abstract

Shifts in flowering phenology are important indicators of climate change. However, the role of precipitation in driving phenology is far less understood compared with other environmental cues, such as temperature. We use a precipitation reduction gradient to test the direction and magnitude of effects on reproductive phenology and reproduction across 11 plant species in a temperate grassland, a moisture-limited ecosystem. Our experiment was conducted in a single, relatively wet year. We examine the effects of precipitation for species, functional types, and the community. Our results provide evidence that reduced precipitation shifts phenology, alters flower and fruit production, and that the magnitude and direction of the responses depend on functional type and species. For example, early-blooming species shift toward earlier flowering, whereas later-blooming species shift toward later flowering. Because of opposing species-level shifts, there is no overall shift in community-level phenology. This study provides experimental evidence that changes in rainfall can drive phenological shifts. Our results additionally highlight the importance of understanding how plant functional types govern responses to changing climate conditions, which is relevant for forecasting phenology and community-level changes. Specifically, the implications of divergent phenological shifts between early- and late-flowering species include resource scarcity for pollinators and seed dispersers and new temporal windows for invasion.

摘要

开花物候的变化是气候变化的重要指标。然而,与温度等其他环境因素相比,降水对物候的驱动作用却鲜为人知。我们利用降水减少梯度,在一个水分受限的温带草原生态系统中,对11种植物的生殖物候和繁殖情况进行了测试,以探究降水影响的方向和程度。我们的实验在相对湿润的一年中进行。我们研究了降水对物种、功能类型和群落的影响。我们的结果表明,降水减少会改变物候,影响花和果实的产量,而且反应的程度和方向取决于功能类型和物种。例如,早开花物种的花期提前,而晚开花物种的花期推迟。由于物种层面的变化方向相反,群落层面的物候没有整体变化。这项研究提供了实验证据,证明降雨变化会推动物候变化。我们的研究结果还凸显了理解植物功能类型如何影响对气候变化的反应的重要性,这对预测物候和群落层面的变化具有重要意义。具体而言,早开花和晚开花物种之间不同的物候变化可能导致传粉者和种子传播者面临资源短缺,以及为外来物种入侵创造新的时间窗口。

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