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Selection, Morphological Integration, and Strepsirrhine Locomotor Adaptations

机译:选择,形态学整合和链菌素运动适应性

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Clades with taxa that have multiple locomotor adaptations represent a direct way to test the relationship between adaptation and integration. If integration is influenced by functional requirements, integration should be most apparent where selection is strongest and less evident where selection has been relaxed. If integration is primarily regulated by genetic constraints, integration should be present irrespective of selection pressures. Here we use patterns of integration in the strepsirrhine fore- and hind limbs as a test case. Strepsirrhine locomotion is relatively well-studied, and there are multiple clades that share different locomotor modes. We found that quadrupeds have greater limb integration than vertical leapers. These results suggest that variation can be expressed if selection for integration is relaxed. However, an unexpected pattern was revealed, in which there appears to be some broader regulatory mechanism controlling overall limb integration. Our tests identified a strong correlation between integration of the forelimb and integration of the hind limb. This broader mechanism may be evidence of the primitive genetic control of limb integration.
机译:具有多种运动适应性的类群进化枝代表了测试适应性与整合之间关系的直接方法。如果集成受功能需求的影响,则集成应该在选择最强的地方最明显,而在选择放松的地方不那么明显。如果整合主要受遗传限制,则无论选择压力如何,都应存在整合。在这里,我们使用在前肢和后肢的融合模式作为测试用例。对瑞斯汀运动的研究相对较好,并且有多个进化枝共享不同的运动模式。我们发现四足动物的肢体整合度比垂直跨度更高。这些结果表明,如果放松对整合的选择,则可以表达变化。然而,揭示了一种出乎意料的模式,其中似乎存在一些控制整体肢体整合的更广泛的调节机制。我们的测试确定了前肢的整合与后肢的整合之间的密切相关性。这种更广泛的机制可能是肢体整合的原始遗传控制的证据。

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