首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Paradoxical persistence through mixed-system dynamics: Towards a unified perspective of reversal behaviours in evolutionary ecology
【24h】

Paradoxical persistence through mixed-system dynamics: Towards a unified perspective of reversal behaviours in evolutionary ecology

机译:通过混合系统动力学的矛盾持久性:进化生态学中逆向行为的统一视角

获取原文
获取原文并翻译 | 示例
           

摘要

Counterintuitive dynamics of various biological phenomena occur when composite system dynamics differ qualitatively from that of their component systems. Such composite systems typically arise when modelling situations with time-varying biotic or abiotic conditions, and examples range from metapopulation dynamics to population genetic models. These biological, and related physical, phenomena can often be modelled as simple financial games, wherein capital is gained and lost through gambling. Such games have been developed and used as heuristic devices to elucidate the processes at work in generating seemingly paradoxical outcomes across a spectrum of disciplines, albeit in a field-specific, ad hoc fashion. Here, we propose that studying these simple games can provide a much deeper understanding of the fundamental principles governing paradoxical behaviours in models from a diversity of topics in evolution and ecology in which fluctuating environmental effects, whether deterministic or stochastic, are an essential aspect of the phenomenon of interest. Of particular note, we find that, for a broad class of models, the ecological concept of equilibrium reactivity provides an intuitive necessary condition that must be satisfied in order for environmental variability to promote population persistence. We contend that further investigations along these lines promise to unify aspects of the study of a range of topics, bringing questions from genetics, species persistence and coexistence and the evolution of bet-hedging strategies, under a common theoretical purview.
机译:当复合系统动力学与其组成系统的动力学在质上不同时,就会发生各种生物现象的违反直觉的动力学。当使用时变的生物或非生物条件对情况进行建模时,通常会出现这样的复合系统,示例范围包括从种群动态到种群遗传模型。这些生物现象以及与之相关的自然现象通常可以被建模为简单的金融游戏,在这种游戏中,资本是通过赌博获得或损失的。此类游戏已被开发并用作启发式设备,以阐明在各个学科中产生看似矛盾的结果的工作过程,尽管采用的是特定领域的特定方式。在这里,我们认为,研究这些简单的游戏可以从进化和生态学的多个主题中更深入地理解控制模型中悖论行为的基本原理,在这些主题中,不确定性或随机性对环境的影响是波动的重要方面。兴趣现象。特别要注意的是,我们发现,对于广泛的模型类别,平衡反应性的生态学概念提供了一个直观的必要条件,必须满足这些条件才能使环境变化促进人口的持久性。我们认为,沿着这些思路进行进一步的研究有望统一一系列主题的研究,从而在共同的理论视野下提出遗传学,物种持久性和共存性以及对冲策略演变的问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号