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Red queen for a day: models of symmetry and selection in paleoecology

机译:一天的红皇后:古生态学中的对称和选择模型

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摘要

The Unified Theory of Biodiversity (UNTB), the Red Queen’s Hypothesis (RQH), and the Cascading Extinctions on Graphs hypothesis (CEG) are explored as members of a spectrum describing the ecological partitioning of species richness. All are models of historical biodiversity, but fare differently in explaining observed features of Phanerozoic biodiversity. The models treat species as symmetric, asymmetric, or partially symmetric respectively. Symmetry in the UNTB is broken by the generation and selection of variation of ecological performance, while the robustness and hence longevity of RQ communities are subject to selection. The CEG model reconciles some of the differences, demonstrating the importance of functional partitioning to both species evolution and selection at the community level. It is concluded that the UNTB explains communities partially on the shortest of evolutionary time scales, while RQ communities would be, at best, geologically ephemeral yet conditionally important.
机译:作为描述物种丰富度生态分区的频谱成员,探索了统一的生物多样性理论(UNTB),红色女王假说(RQH)和图形假设的级联消亡(CEG)。所有这些都是历史生物多样性的模型,但是在解释古生代生物多样性的观察结果时却有所不同。模型将物种分别视为对称,不对称或部分对称。 UNTB的对称性因生态性能变化的产生和选择而受到破坏,而RQ社区的健壮性和寿命则取决于选择。 CEG模型调和了某些差异,证明了功能分区对于社区一级物种进化和选择的重要性。结论是,UNTB在进化时间尺度上以最短的时间解释社区,而RQ社区充其量只是地质上短暂的,但在条件上很重要。

著录项

  • 来源
    《Evolutionary Ecology》 |2012年第1期|p.1-10|共10页
  • 作者

    Peter Roopnarine;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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