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Linking Darwinian Mechanisms with the Evolution of Form

机译:将达尔文机制与形式演变联系起来

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As early as the 1960's,prior to elucidation of genome structure,eukaryotic gene regulation,or the mechanisms controlling development,R.Britten and E.Davidson had compiled enough evidenceindicating to them that the evolution of the multi-cellular body plan occurred through changes in the circuitry regulating development rather than through the adaptive substitution of point changes in proteins.But twenty years earlier,C.H.Waddington had already proposed his theory of canalization,a mechanism by which robust developmental pathways could suppress phenotypic (and genetic) variability,and give rise to an abundant classes of "hidden" variation upon which Darwinian selection can act when called upon.More recently,evolutionary studies of cis-regulatory modules-the functional unit of gene expression control-have revealed surprisingly rapid structural evolution of their functional elements,even when there is strong evolutionary constraint on gene expression.Adaptive morphological evolution has also been traced to evolutionary changes in CRM's,on the one hand reinforcing the Britten and Davidson belief that changes in gene regulation are paramount to evolutionary change,but also elevating Darwinian mechanisms involving the accumulation of mutational changes of small effect on the other.Here I attempt to sort through both the dialectical and empirical evidence supporting these opposing views.I also describe our current work on variation and evolution in pattern formation in Drosophila,a system I believe will allow resolution of the molecular basis for Darwinian selection acting on phenotypic variation filtered through developmental processes and pathways.
机译:早在1960年代,在阐明基因组结构,真核基因调控或控制发育的机制之前,R.Britten和E.Davidson收集了足够的证据,向他们表明,多细胞体计划的进化是通过改变但是二十年前,CHWaddington已经提出了他的渠化理论,这种机制可以通过健壮的发育途径抑制表型(和遗传)变异并产生最近,有关顺式调控模块(基因表达控制的功能单位)的进化研究显示,其功能元件的结构变化令人惊讶地迅速,甚至当基因表达受到强烈的进化限制时,适应性形态进化具有我们还可以追溯到CRM的进化变化,一方面强化了Britten和Davidson的观点,即基因调控的变化对进化变化至关重要,但另一方面也增强了达尔文的机制,其中涉及对微小影响的突变变化的积累。尝试对支持这些相反观点的辩证和经验证据进行分类。我还描述了我们目前在果蝇模式形成中的变异和进化方面的工作,我相信该系统可以解析作用于表型变异的达尔文选择的分子基础。通过发展过程和途径。

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