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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Genetic constraints predict evolutionary divergence in Dalechampia blossoms
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Genetic constraints predict evolutionary divergence in Dalechampia blossoms

机译:遗传限制预测达勒坎皮亚花的进化差异

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摘要

If genetic constraints are important, then rates and direction of evolution should be related to trait evolvability. Here we use recently developed measures of evolvability to test the genetic, constraint hypothesis with quantitative genetic data on floral morphology from the Neotropical vine Dalechampia scandens (Euphorbiaceae). These measures were compared against rates of evolution and patterns of divergence among 24 populations in two species in the D. scandens species complex. We found clear evidence for genetic constraints, particularly among traits that were tightly phenotypically integrated. This relationship between evolvability and evolutionary divergence is puzzling, because the estimated evolvabilities seem too large to constitute real constraints. We suggest that this paradox can be explained by a combination of weak stabilizing selection around moving adaptive optima and small realized evolvabilities relative to the observed additive genetic variance.
机译:如果遗传限制很重要,则进化的速率和方向应与性状的可进化性相关。在这里,我们使用最近开发的可测量性的方法,通过对来自新热带藤蔓Dalechampia scandens(Euphorbiaceae)花形态的定量遗传数据,测试遗传约束假说。将这些措施与D. scandens物种复合体中两个物种的24个种群之间的进化速率和趋异模式进行了比较。我们发现了遗传限制的明确证据,特别是在紧密表型整合的性状中。可进化性与进化分歧之间的关系令人困惑,因为估计的可进化性似乎太大而无法构成实际约束。我们建议,这一矛盾可以通过围绕移动自适应最优的弱稳定选择和相对于所观察到的累加遗传方差的小的已实现进化的结合来解释。

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