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多个基因协同作用导致了 Gorteria diffusa 中具有性欺骗性花朵的快速进化。

Multiple gene co-options underlie the rapid evolution of sexually deceptive flowers in Gorteria diffusa.

机构信息

Department of Plant Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EA, UK.

Department of Plant Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EA, UK.

出版信息

Curr Biol. 2023 Apr 24;33(8):1502-1512.e8. doi: 10.1016/j.cub.2023.03.003. Epub 2023 Mar 23.

Abstract

Gene co-option, the redeployment of an existing gene in an unrelated developmental context, is an important mechanism underlying the evolution of morphological novelty. In most cases described to date, novel traits emerged by co-option of a single gene or genetic network. Here, we show that the integration of multiple co-opted genetic elements facilitated the rapid evolution of complex petal spots that mimic female bee-fly pollinators in the sexually deceptive South African daisy Gorteria diffusa. First, co-option of iron homeostasis genes altered petal spot pigmentation, producing a color similar to that of female pollinators. Second, co-option of the root hair gene GdEXPA7 enabled the formation of enlarged papillate petal epidermal cells, eliciting copulation responses from male flies. Third, co-option of the miR156-GdSPL1 transcription factor module altered petal spot placement, resulting in better mimicry of female flies resting on the flower. The three genetic elements were likely co-opted sequentially, and strength of sexual deception in different G. diffusa floral forms strongly correlates with the presence of the three corresponding morphological alterations. Our findings suggest that gene co-options can combine in a modular fashion, enabling rapid evolution of novel complex traits.

摘要

基因获得,即将现有基因重新用于不相关的发育环境,是形态新颖性进化的重要机制。在迄今为止描述的大多数情况下,新特征是通过单个基因或遗传网络的获得而出现的。在这里,我们表明,多个获得的遗传元件的整合促进了复杂花瓣斑点的快速进化,这些斑点模仿了南非雏菊 Gorteria diffusa 中具有性欺骗性的雌性蜜蜂蝇传粉者。首先,铁稳态基因的获得改变了花瓣斑点的色素沉着,产生了类似于雌性传粉者的颜色。其次,根毛基因 GdEXPA7 的获得使扩大的乳突状花瓣表皮细胞形成,从而引起雄性苍蝇的交配反应。第三,miR156-GdSPL1 转录因子模块的获得改变了花瓣斑点的位置,从而更好地模拟了停留在花朵上的雌性苍蝇。这三个遗传元件可能是按顺序获得的,不同 G. diffusa 花型的性欺骗强度与三个相应形态改变的存在强烈相关。我们的研究结果表明,基因获得可以以模块化的方式组合,从而促进新的复杂特征的快速进化。

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