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Phenological responses to climate change in communities of plants species with contrasting functional strategies

机译:具有对比功能策略的植物物种环境中气候变化的鉴效性反应

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摘要

Understanding why co-occurring plant species show differential phenological sensitivities to climate fluctuations, and more specifically to the joint variation in temperature and precipitation, is critical to make accurate predictions on how climate change could alter community dynamics and ecosystem functioning. However, the role that some relevant functional traits involved in resource uptake and/or stress tolerance could play on these inter-specific differences in phenological sensitivity remains largely unknown. In this study we evaluated experimentally how five co-occurring herbaceous species with contrasting functional strategies respond to current and ongoing climatic scenarios of increased temperature, decreased water availability and both abiotic changes acting interactively. To decompose the direct effect of climate change and the indirect effect of neighbors on plant performance and reproductive phenology, each of the five species was exposed to a density gradient of competitor species. Although the study species were more sensitive to changes in temperature than in water availability, the combined effect of both abiotic cues triggered very heterogeneous responses. Species with higher SLA values were particularly sensitive to climate change, delaying their reproduction and lengthening their flowering period under wanner scenarios while maintaining a high plant growth rate. In contrast, the species with the lowest SLA values exhibited less phenological variability to climate alterations, but they were more strongly affected by neighbor density compared to species with opposite trait values. These species-specific responses to climatic shifts altered the synchrony of phenological events at the community level. The most important changes appeared under the two scenarios of increased temperature, where 4 out of 5 species overlapped their flowering periods. Our findings indicate that the ongoing scenarios of increasing temperature and aridity could disrupt the phenological asynchrony within communities, and highlight the necessity of considering the interactive effects of temperature and precipitation to obtain an overall picture of climate change predictions on plant phenology and population dynamics.
机译:了解为什么共同发生的植物物种表明差异鉴别的气候波动,更具体地对温度和降水的关节变化,对对气候变化如何改变社区动态和生态系统功能的准确预测至关重要。然而,在资源摄取和/或压力耐受涉及的一些相关功能性状的作用可以在这些特异性鉴生性的特定差异上起到很大程度上未知。在这项研究中,我们通过实验评估了五种具有对比功能策略的共同发生的草本种类,响应了温度提高的当前和持续的气候情景,降低了水可用性和两种非生物改变的交互性。为了分解气候变化的直接影响和邻居对植物性能和生殖候选的间接影响,每种五种物种中的每一个都暴露于竞争物种的密度梯度。虽然研究物种对温度的变化更敏感而不是水可用性,但两种非生物症的综合作用引发了非常异质的反应。具有较高SLA值的物种对气候变化特别敏感,延迟其在WANNER情景下延迟其开花时期,同时保持高植物生长率。相反,具有最低SLA值的物种对气候变化表现出较少的酚类变异性,但与具有相反特征价值的物种相比,它们对邻居密度的影响更大。这些物种对气候变化的响应改变了社区一级的酚类事件的同步。在增加温度的两个场景下出现最重要的变化,其中5种中有4种重叠的开花时期。我们的研究结果表明,温度和干旱的持续情况可能会破坏社区内的伯文根本,并突出考虑温度和降水的互动影响,以获得对植物候选和人口动态的气候变化预测的整体情况。

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