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控制花不对称性的调控相互作用的进化。

Evolution of regulatory interactions controlling floral asymmetry.

作者信息

Costa Maria Manuela R, Fox Samantha, Hanna Andy I, Baxter Catherine, Coen Enrico

机构信息

Department of Cell and Developmental Biology, John Innes Centre, Norwich NR4 7UH, UK.

出版信息

Development. 2005 Nov;132(22):5093-101. doi: 10.1242/dev.02085. Epub 2005 Oct 19.

Abstract

A key challenge in evolutionary biology is to understand how new morphologies can arise through changes in gene regulatory networks. For example, floral asymmetry is thought to have evolved many times independently from a radially symmetrical ancestral condition, yet the molecular changes underlying this innovation are unknown. Here, we address this problem by investigating the action of a key regulator of floral asymmetry, CYCLOIDEA (CYC), in species with asymmetric and symmetric flowers. We show that CYC encodes a DNA-binding protein that recognises sites in a downstream target gene RADIALIS (RAD) in Antirrhinum. The interaction between CYC and RAD can be reconstituted in Arabidopsis, which has radially symmetrical flowers. Overexpression of CYC in Arabidopsis modifies petal and leaf development, through changes in cell proliferation and expansion at various stages of development. This indicates that developmental target processes are influenced by CYC in Arabidopsis, similar to the situation in Antirrhinum. However, endogenous RAD-like genes are not activated by CYC in Arabidopsis, suggesting that co-option of RAD may have occurred specifically in the Antirrhinum lineage. Taken together, our results indicate that floral asymmetry may have arisen through evolutionary tinkering with the strengths and pattern of connections at several points in a gene regulatory network.

摘要

进化生物学中的一个关键挑战是理解新形态如何通过基因调控网络的变化而产生。例如,花的不对称性被认为是多次从辐射对称的祖先状态独立进化而来的,然而这种创新背后的分子变化尚不清楚。在这里,我们通过研究花不对称性的关键调节因子CYCLOIDEA(CYC)在具有不对称花和对称花的物种中的作用来解决这个问题。我们表明CYC编码一种DNA结合蛋白,该蛋白识别金鱼草中一个下游靶基因RADIALIS(RAD)中的位点。CYC和RAD之间的相互作用可以在具有辐射对称花的拟南芥中重建。在拟南芥中过表达CYC会通过在发育的各个阶段改变细胞增殖和扩展来改变花瓣和叶片的发育。这表明在拟南芥中发育靶标过程受到CYC的影响,类似于金鱼草中的情况。然而,拟南芥中的内源性RAD样基因不会被CYC激活,这表明RAD的共选择可能专门发生在金鱼草谱系中。综上所述,我们的结果表明花的不对称性可能是通过对基因调控网络中几个点的连接强度和模式进行进化修补而产生的。

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