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From Patterns to Function in Living Systems: Dryland Ecosystems as a Case Study
Annual Review of Condensed Matter Physics ( IF 22.6 ) Pub Date : 2018-03-12 00:00:00 , DOI: 10.1146/annurev-conmatphys-033117-053959
Ehud Meron 1, 2
Affiliation  

Spatial patterns are ubiquitous in animate matter. Besides their intricate structure and beauty they generally play functional roles. The capacity of living systems to remain functional in changing environments is a question of utmost importance, but its intimate relationship to pattern formation is largely unexplored. Here, we address this relationship using dryland vegetation as a case study. Following a brief introduction to pattern-formation theory, we describe a mathematical model that captures several mechanisms of vegetation pattern formation and discuss ecological contexts that showcase different mechanisms. Using this model, we unravel the different vegetation patterns that keep dryland ecosystems viable along the rainfall gradient, identify multistability ranges where fronts separating domains of alternative stable states exist, and highlight the roles of front dynamics in mitigating or reversing desertification. The utility of satellite images in testing model predictions is discussed. An outlook on outstanding open problems concludes this paper.

中文翻译:


从模式到生命系统的功能:以旱地生态系统为例

在动画方面,空间模式无处不在。除了其复杂的结构和美观之外,它们还通常发挥功能性作用。生命系统在不断变化的环境中保持功能的能力是一个极为重要的问题,但很大程度上尚未探讨其与模式形成的密切关系。在这里,我们以旱地植被为案例研究这种关系。在简要介绍了格局形成理论之后,我们描述了一个数学模型,该模型捕获了几种植被格局形成机制,并讨论了展示不同机制的生态环境。使用此模型,我们可以揭示使干旱地区生态系统能够在降雨梯度上维持生存的不同植被模式,确定存在多条稳定区域,其中存在将其他稳定状态的域分开的前沿,并强调前线动力学在减轻或逆转荒漠化方面的作用。讨论了卫星图像在测试模型预测中的实用性。本文总结了未解决的未解决问题的观点。

更新日期:2018-03-12
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