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生长素介导的苔藓Physcomitrella patens 发育调控。

Auxin-mediated developmental control in the moss Physcomitrella patens.

机构信息

Department of Plant Biology, Swedish University of Agricultural Sciences, The Linnean Centre for Plant Biology in Uppsala, Sweden.

出版信息

J Exp Bot. 2018 Jan 4;69(2):277-290. doi: 10.1093/jxb/erx255.

Abstract

The signalling molecule auxin regulates many fundamental aspects of growth and development in plants. We review and discuss what is known about auxin-regulated development in mosses, with special emphasis on the model species Physcomitrella patens. It is well established that mosses and other early diverging plants produce and respond to auxin. By sequencing the P. patens genome, it became clear that it encodes many core proteins important for auxin homeostasis, perception, and signalling, which have also been identified in flowering plants. This suggests that the auxin molecular network was present in the last common ancestor of flowering plants and mosses. Despite fundamental differences in their life cycles, key processes such as organ initiation and outgrowth, branching, tropic responses, as well as cell differentiation, division, and expansion appear to be regulated by auxin in the two lineages. This knowledge paves the way for studies aimed at a better understanding of the origin and evolution of auxin function and how auxin may have contributed to the evolution of land plants.

摘要

信号分子生长素调节植物生长和发育的许多基本方面。我们回顾并讨论了已知的关于苔藓中生长素调节发育的情况,特别强调了模式物种Physcomitrella patens。已经证实,苔藓和其他早期分化的植物会产生和响应生长素。通过对 P. patens 基因组进行测序,人们清楚地发现它编码了许多对生长素稳态、感知和信号传导很重要的核心蛋白,这些蛋白也在开花植物中被鉴定出来。这表明生长素分子网络存在于开花植物和苔藓的最后共同祖先中。尽管它们的生命周期存在根本差异,但关键过程,如器官起始和生长、分枝、向性反应以及细胞分化、分裂和扩张,似乎在两个谱系中都受到生长素的调节。这一知识为研究生长素功能的起源和进化以及生长素如何促进陆地植物的进化铺平了道路。

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