...
首页> 外文期刊>Theoretical Ecology >Dealing with stochastic environmental variation in space and time: bet hedging by generalist, specialist, and diversified strategies
【24h】

Dealing with stochastic environmental variation in space and time: bet hedging by generalist, specialist, and diversified strategies

机译:处理时空的随机环境变化:通才,专家和多元化策略的对冲

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Building on previous work, we derive an optimization model for a two-state stochastic environment and evaluate the fitnesses of five reproductive strategies across generations. To do this, we characterize spatiotemporal variation and define grain (=patch) size as the scale of fitness autocorrelation. Fitness functions of environmental condition are Gaussian. The strategies include two specialists on each of the environmental conditions; two generalists that each fare equally well under both conditions, but one (a conservative bet hedger) optimizes the shape of the fitness function; and a diversified bet hedger producing an optimal mix of the two specialists within individual broods. When the environment is primarily in one of the two states, the specialist on that state achieves the highest fitness. In the more interesting situation where the two environments are equally prevalent in the long term, with low-moderate environmental variation, a generalist strategy (that copes with both states well) does best. Higher variation favors diversified bet hedgers, or surprisingly, specialists, depending mainly on whether spatial or temporal variation predominates. These strategies reduce variance in fitness and optimize the distribution of offspring among patches differently: specialists by spreading offspring among many independently varying patches, while diversified bet hedgers put all offspring into a few patches or a single patch. We distinguish features consistent with strategies like diversified bet hedgers that spread risk in time from features linked to strategies like specialists that spread risk in space. Finally, we present testable hypotheses arising from this study and suggest directions for future work.
机译:在以前的工作的基础上,我们推导了一种针对两种状态的随机环境的优化模型,并评估了五代人不同生育策略的适应性。为此,我们表征时空变化并定义谷物(=斑块)大小作为适应性自相关量表。环境条件的适应度函数是高斯的。这些策略包括每个环境条件的两名专家;两位通才在两种情况下均表现良好,但其中一位(保守的赌注套期保值者)可以优化适应度函数的形状;以及一个多元化的对冲套期保值器,可以在单个育雏区域中最佳地融合这两名专家。当环境主要位于两个州之一时,该州的专家可以达到最高的适应性。在更有趣的情况下,从长远来看,两种环境都普遍存在,环境变化较小,那么通才策略(能够很好地应对两种状态)才是最好的选择。较高的差异主要取决于时空差异占主导地位,因此有利于多元化的押注套期保值者,或者令人惊讶的是,专业人士对此感到惊讶。这些策略降低了适应度的差异,并以不同的方式优化了后代之间的分布:通过将后代分布在许多独立变化的补丁中来进行专家分配,而多元化的押注套期保值员将所有后代分成几个或单个补丁。我们将与及时分散风险的多元化赌注套期保值策略等策略相一致的特征,与与在太空分散风险的专家等策略相联系的特征相区别。最后,我们提出了这项研究得出的可检验的假设,并提出了今后工作的方向。

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