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From landing lights to mimicry: the molecular regulation of flower colouration and mechanisms for pigmentation patterning.

机译:从落地灯到模仿:花朵着色的分子调控和色素形成的机理。

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Flower colour is a key component for plant signaling to pollinators and a staggering variety of colour variations are found in nature. Patterning of flower colour, such as pigment spots or stripes, is common and is important in promoting pollination success. Developmentally programmed pigmentation patterns are of interest with respect to the evolution of specialised plant-pollinator associations and as models for dissecting regulatory signaling in plants. This article reviews the occurrence and function of flower colour patterns, as well as the molecular genetics of anthocyanin pigmentation regulation. The transcription factors controlling anthocyanin biosynthesis have been characterised for many species and an 'MBW' regulatory complex of R2R3MYB, bHLH and WD-Repeat proteins is of central importance. In particular, R2R3MYBs are key determinants of pigmentation intensity and patterning in plants. Progress is now being made on how environmental or developmental signal pathways may in turn control the production of the MBW components. Furthermore, additional regulatory proteins that interact with the MBW activation complex are being identified, including a range of proteins that repress complex formation or action, either directly or indirectly. This review discusses some of the recent data on the regulatory factors and presents models of how patterns may be determined.
机译:花的颜色是植物向传粉者发出信号的关键成分,自然界中发现了惊人的颜色变化。花朵图案的形成(例如色素斑点或条纹)很常见,并且对于促进授粉成功至关重要。关于专门的植物-授粉媒介协会的发展,以及作为解剖植物中调控信号的模型,开发程序化的色素沉着模式是令人感兴趣的。本文回顾了花色图案的发生和功能,以及花色苷色素沉着调节的分子遗传学。控制花色苷生物合成的转录因子已经针对许多物种进行了表征,R2R3MYB,bHLH和WD-Repeat蛋白的“ MBW”调节复合物至关重要。特别地,R2R3MYB是植物中色素沉着强度和图案形成的关键决定因素。现在,环境或发育信号途径如何反过来控制MBW组件的生产正在取得进展。此外,还鉴定了与MBW激活复合物相互作用的其他调节蛋白,包括一系列直接或间接抑制复合物形成或作用的蛋白。这篇评论讨论了有关调节因素的一些最新数据,并提出了如何确定模式的模型。

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