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Quercus ilex recruitment in a drier world: A multi-stage demographic approach

机译:干旱世界中的Quercus ilex招聘:多阶段人口统计方法

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摘要

There is a growing interest in understanding and forecasting the responses of plant communities to projected changes of environmental conditions. Multi-stage demographic approaches, where plant recruitment is explored across multiple and consecutive stages, are essential to obtain a whole overview of the consequences of increasing aridity on tree recruitment and forest dynamics, but they are still rarely used. In this study, we present the results of an experimental rainfall exclusion aimed to evaluate the impact of projected increasing drought on multiple stage-specific probabilities of recruitment in a key tree species typical of late-successional Mediterranean woodlands (Quercus ilex L.). We calibrated linear and nonlinear likelihood models for the different demographic processes and calculated overall probabilities of recruitment along a wide range of microhabitat conditions. Rainfall exclusion altered Q. ilex recruitment throughout ontogeny. Seed maturation, seedling emergence and survival and, to a lesser extent, post-dispersal seed survival were the most sensitive demographic processes to decreased rainfall. Interestingly, both the identity of the most critical stages for recruitment and their specific sensitivity to rainfall manipulation depended largely on the yearly pattern of precipitation. The microhabitat heterogeneity strongly determined the success of recruitment in the study species. The experimental increase in drought displaced the peak of maximum overall recruitment towards the low end of the light gradient, suggesting that the dependence on shrubs for an effective recruitment in Q. ilex could be intensified under future environmental scenarios. In terms of phenotypic plasticity, Q. ilex seedlings responded more strongly to light availability than to experimentally increased drought, which could reduce its ability to persist under on-going environmental conditions due to climate change. Results from this study provide a full picture of the ecological and functional consequences of the projected rainfall reduction on tree recruitment and forest dynamics in two years of contrasting precipitation.
机译:人们对理解和预测植物群落对预计的环境条件变化的反应的兴趣与日俱增。多阶段人口统计方法需要在多个和连续的阶段中进行植物募集,这是获得干旱增加对树木募集和森林动态影响的整体概述所必不可少的,但是仍然很少使用。在这项研究中,我们提出了降雨排除实验的结果,旨在评估干旱的增加对地中海后期典型林地(Quercus ilex L.)典型的关键树种多阶段特定招募概率的影响。我们针对不同的人口统计学过程校准了线性和非线性似然模型,并计算了在广泛的微生境条件下招募的总体概率。降雨排除改变了整个个体发育中Q. ilex的募集。种子成熟,幼苗出苗和存活,以及在较小程度上分散后的种子存活是降雨减少最敏感的人口统计过程。有趣的是,招聘最关键阶段的身份及其对降雨操纵的特定敏感性在很大程度上取决于每年的降雨模式。微生境异质性强烈决定了研究物种募集的成功。实验性干旱的增加使最大总体募集的峰值向光梯度的低端移动,这表明在未来的环境情景中,对灌木丛的有效募集的依赖可能会增加。在表型可塑性方面,冬青Q.幼苗对光利用率的响应比实验上增加的干旱响应更强烈,干旱可能会降低其在气候变化引起的持续环境条件下的持久能力。这项研究的结果全面说明了预计的降雨减少与降水形成对比的两年中对树木募集和森林动态的生态和功能后果。

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