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Cope's Rule in a modular organism: Directional evolution without an overarching macroevolutionary trend

机译:在模块化有机体中应对规则:无统一的宏观调整趋势的方向演变

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摘要

Cope's Rule describes increasing body size in evolutionary lineages through geological time. This pattern has been documented in unitary organisms but does it also apply to module size in colonial organisms? We address this question using 1169 cheilostome bryozoans ranging through the entire 150 million years of their evolutionary history. The temporal pattern evident in cheilostomes as a whole shows no overall change in zooid (module) size. However, individual subclades show size increases: within a genus, younger species often have larger zooids than older species. Analyses of (paleo)latitudinal shifts show that this pattern cannot be explained by latitudinal effects (Bergmann's Rule) coupled with younger species occupying higher latitudes than older species (an “out of the tropics” hypothesis). While it is plausible that size increase was linked to the advantages of large zooids in feeding, competition for trophic resources and living space, other proposed mechanisms for Cope's Rule in unitary organisms are either inapplicable to cheilostome zooid size or cannot be evaluated. Patterns and mechanisms in colonial organisms cannot and should not be extrapolated from the better-studied unitary organisms. And even if macroevolution simply comprises repeated rounds of microevolution, evolutionary processes occurring within lineages are not always detectable from macroevolutionary patterns.
机译:应对通过地质时间描述了进化谱系中的体积增加。该模式已在整体生物体中记录,但它还适用于殖民生物中的模块大小吗?我们使用1169个横略的荆棘箱来解决这个问题,通过整个进化历史的整个1.5亿年来。作为整体的乳酸肌瘤中明显的时间模式显示出ZoOid(模块)尺寸的总体变化。然而,个别亚余端显示尺寸增加:在属内,年轻物种通常比较旧的种类更大。 (Paleo)纬度变化的分析表明,这种模式不能通过纬度效应(Bergmann的规则)与占用更高纬度的较年轻物种(“从热带”假设“)相结合。虽然众所律的尺寸增加与饲养大量畜牧业的优势有关,但对营养型资源和生活空间的竞争,统一的应对统一机制在单一生物中的规则是不适用的,或者不能评估杂质组合毒素大小。在殖民生物体中的图案和机制不能,不应该从更好地研究的单一生物外推。即使宏观调度仅包括重复的微量凹面,即使是重复的微域,在谱系内发生的进化过程并不总是从宏观调度模式中可检测到的。

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