Shifting Precipitation Regimes Influence Optimal Germination Strategies and Population Dynamics in Bet-Hedging Desert Annuals.

IF 2.4 2区 环境科学与生态学 Q2 ECOLOGY American Naturalist Pub Date : 2025-01-01 Epub Date: 2024-11-18 DOI:10.1086/733105
William S Cuello, Sebastian J Schreiber, Jennifer R Gremer, Pete C Trimmer, D Lawrence Venable, Andrew Sih
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Abstract

AbstractClimate change will affect both the mean and the variability in environmental conditions and may have major negative impacts on population densities in the future. For annual plants that already live in an extreme environment like the Sonoran Desert, keeping a fraction of their seeds dormant underground (for possibly years at a time) is critical to survive. Here, we consider how this form of bet hedging (i.e., delayed germination) for 10 Sonoran Desert annuals mediates responses to precipitation shifts. We use a demographic model parameterized with long-term field and precipitation data to explore how forecasted changes in precipitation impact annual plant species' population densities. We then examine how instantaneous evolution of optimal germination fractions in the shifted precipitation regimes bolsters population densities. Our results indicate that overall less rainfall and, to a lesser extent, increased variance in rainfall drive population levels down. Instantaneous evolution of optimal germination fractions in new regimes benefited species' populations only marginally, and only for small to moderate shifts in precipitation. Thus, even rapid evolution is unlikely to save populations experiencing larger shifts in precipitation. Finally, we predict that specialists that can capitalize on wet-year bonanzas or are water use efficient will be the most resilient to precipitation shifts as long as their seed survivorships are sufficiently high.

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降水变化对荒漠一年生植物最佳发芽策略和种群动态的影响
气候变化会影响环境条件的平均值和变率,并可能对未来的人口密度产生重大的负面影响。对于已经生活在索诺兰沙漠这样极端环境中的一年生植物来说,让一部分种子在地下休眠(一次可能长达数年)是生存的关键。在这里,我们考虑了这种形式的下注对冲(即延迟发芽)如何调解10索诺兰沙漠年降水变化的响应。我们使用一个以长期野外和降水数据为参数化的人口统计学模型来探讨降水预测变化如何影响年植物物种的种群密度。然后,我们研究了在变化的降水制度下,最佳发芽分数的瞬时进化如何促进种群密度。我们的研究结果表明,总体上降雨量减少,在较小程度上,降雨量变化的增加导致人口水平下降。在新制度下,最优发芽分数的瞬时进化对物种种群的影响微乎其微,而且只对降水的小到中等变化有利。因此,即使是快速进化也不太可能拯救那些经历更大降水变化的种群。最后,我们预测,只要种子成活率足够高,能够利用丰水年资源或水资源利用效率高的专家对降水变化的适应能力最强。
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来源期刊
American Naturalist
American Naturalist 环境科学-进化生物学
CiteScore
5.40
自引率
3.40%
发文量
194
审稿时长
3 months
期刊介绍: Since its inception in 1867, The American Naturalist has maintained its position as one of the world''s premier peer-reviewed publications in ecology, evolution, and behavior research. Its goals are to publish articles that are of broad interest to the readership, pose new and significant problems, introduce novel subjects, develop conceptual unification, and change the way people think. AmNat emphasizes sophisticated methodologies and innovative theoretical syntheses—all in an effort to advance the knowledge of organic evolution and other broad biological principles.
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