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The challenge of paleoecological stasis: reassessing sources of evolutionary stability.

机译:古生态停滞的挑战:重新评估进化稳定性的来源。

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摘要

The paleontological record of the lower and middle Paleozoic Appalachian foreland basin demonstrates an unprecedented level of ecological and morphological stability on geological time scales. Some 70-80% of fossil morphospecies within assemblages persist in similar relative abundances in coordinated packages lasting as long as 7 million years despite evidence for environmental change and biotic disturbances. These intervals of stability are separated by much shorter periods of ecological and evolutionary change. This pattern appears widespread in the fossil record. Existing concepts of the evolutionary process are unable to explain this uniquely paleontological observation of faunawide coordinated stasis. A principle of evolutionary stability that arises from the ecosystem is explored here. We propose that hierarchical ecosystem theory, when extended to geological time scales, can explain long-term paleoecological stability as the result of ecosystem organization in response to high-frequency disturbance. The accompanying stability of fossil morphologies results from "ecological locking," in which selection is seen as a high-rate response of populations that is hierarchically constrained by lower-rate ecological processes. When disturbance exceeds the capacity of the system, ecological crashes remove these higher-level constraints, and evolution is free to proceed at high rates of directional selection during the organization of a new stable ecological hierarchy.
机译:下古生代阿巴拉契亚前陆盆地的古生物学记录显示,在地质时间尺度上,生态和形态稳定性达到了前所未有的水平。尽管有环境变化和生物干扰的证据,组合中的约70-80%的化石形态物种仍以类似的相对丰度存在于协调的包装中,可持续长达700万年。这些稳定的间隔被生态和进化变化的周期大大缩短了。这种模式在化石记录中似乎很普遍。现有的进化过程概念无法解释这种对整个动物区系的协同淤积的独特的古生物学观察。这里探讨了由生态系统产生的进化稳定性原理。我们提出,分层生态系统理论在扩展到地质时标时,可以解释长期的古生态稳定性,这是生态系统组织对高频干扰作出反应的结果。化石形态的伴随稳定性来自“生态锁定”,在生态锁定中,选择被视为对种群的高响应,而种群的响应受到较低速率的生态过程的限制。当干扰超出系统的能力时,生态崩溃将消除这些更高层次的约束,并且在组织新的稳定生态等级过程中,可以以高定向选择率自由进行进化。

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