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茄科果实颜色的发育:两条生物合成途径的故事。

Development of fruit color in Solanaceae: a story of two biosynthetic pathways.

作者信息

Dhar Manoj K, Sharma Rupali, Koul Archana, Kaul Sanjana

出版信息

Brief Funct Genomics. 2015 May;14(3):199-212. doi: 10.1093/bfgp/elu018. Epub 2014 Jun 10.

Abstract

This review highlights the major differences between the regulation of two important pathways namely anthocyanin and carotenoid pathways, responsible for fruit color generation in Solanaceae mediated by transcription factors (TFs). The anthocyanin pathway is regulated by a common set of TFs (MYB, MYC and WD40) belonging to specific families of DNA-binding proteins. Their regulation is aimed at controlling the type and amount of pigments produced and the physiological conditions (like pH) at which they are finally stored. In the carotenoid pathway, the color diversity depends on the quantity of pigment produced and the point where the pathway is arrested. TFs in the latter case are accordingly found to influence the sequestration and degradation of these pigments, which determines their final concentration in the tissue. TFs (phytochrome interacting factors, MADS-BOX, HB-ZIP and B-ZIP) also regulate important rate-determining steps, which decide the direction in which the pathway proceeds and the point at which it is terminated. In the absence of a clear pattern of TF-mediated regulation, it is suggested that the carotenoid pathway is more significantly influenced by other regulatory methods which need to be explored. It is expected that common factors affecting these pathways are the ones acting much before the initiation of the biosynthesis of respective pigments.

摘要

本综述着重介绍了两个重要途径(即花青素途径和类胡萝卜素途径)调控方面的主要差异,这两个途径由转录因子(TFs)介导,负责茄科植物果实颜色的形成。花青素途径受一组属于特定DNA结合蛋白家族的常见转录因子(MYB、MYC和WD40)调控。它们的调控旨在控制所产生色素的类型和数量以及最终储存色素的生理条件(如pH值)。在类胡萝卜素途径中,颜色多样性取决于所产生色素的数量以及该途径终止的位置。相应地,发现后一种情况下的转录因子会影响这些色素的隔离和降解,这决定了它们在组织中的最终浓度。转录因子(光敏色素相互作用因子、MADS - BOX、HB - ZIP和B - ZIP)也调控重要的限速步骤,这些步骤决定了该途径的进展方向及其终止点。由于缺乏转录因子介导调控的清晰模式,有人认为类胡萝卜素途径受其他需要探索的调控方法影响更大。预计影响这些途径的共同因素是在各自色素生物合成起始之前就起作用的因素。

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