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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Biotic Interactions Contribute to the Geographic Range Limit of an Annual Plant: Herbivory and Phenology Mediate Fitness beyond a Range Margin
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Biotic Interactions Contribute to the Geographic Range Limit of an Annual Plant: Herbivory and Phenology Mediate Fitness beyond a Range Margin

机译:生物互动有助于年度植物的地理范围限制:草食性和候选地调解超出范围边际的健身

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摘要

Species' geographic distributions have already shifted during the Anthropocene. However, we often do not know what aspects of the environment drive range dynamics, much less which traits mediate organisms' responses to these environmental gradients. Most studies focus on possible climatic limits to species' distributions and have ignored the role of biotic interactions, despite theoretical support for their importance in setting distributional limits. We used field experiments and simulations to estimate contributions of mammalian herbivory to a range boundary in the Californian annual plant Clarkia xantiana ssp. xantiana. A steep gradient of increasing probability of herbivory occurred across the boundary, and a reanalysis of prior transplant experiments revealed that herbivory drove severalfold declines in lifetime fitness at and beyond the boundary. Simulations showed that populations could potentially persist beyond the range margin in the absence of herbivory. Using data from a narrowly sympatric subspecies, Clarkia xantiana parviflora, we also showed that delayed phenology is strongly associated with C. xantiana ssp. xantiana's susceptibility to herbivory and low fitness beyond its border. Overall, our results provide some of the most comprehensive evidence to date of how the interplay of demography, traits, and spatial gradients in species interactions can produce a geographic range limit, and they lend empirical support to recent developments in range limits theory.
机译:物种的地理分布已经在人体期间转移。然而,我们常常不知道环境驱动范围动态的哪些方面,更少的特征介导生物体对这些环境梯度的反应。大多数研究重点关注物种分布的可能气候限制,忽略了生物互动的作用,尽管对其在设定分配限制的重要性方面的理论支持。我们使用现场实验和模拟来估算哺乳动物草食病对加州年度植物Clarkia Xantiana SSP的范围边界的贡献。 Xantiana。在边界中发生了越来越多的草本概率的陡峭梯度,并且先前移植实验的再分析显示,草食病在边界和超出边界的寿命适应性下降的几倍下降。模拟表明,在没有草食病的情况下,人群可能持续超过范围边缘。使用来自狭义目间亚种的数据Clarkia Xantiana Parviflora,我们还表明延迟的候选与C. Xantiana SSP强烈相关。 Xantiana对其边境超出了草食病和低健康的影响。总体而言,我们的结果提供了一些最全面的证据,迄今为止,物种交互中的人口统计学,特征和空间梯度的相互作用如何产生地理范围限制,并且它们为范围限制理论的最新发展而借鉴了实证支持。

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