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核激素响应系统的起源与演化。

Origin and evolution of the nuclear auxin response system.

机构信息

Laboratory of Biochemistry, Wageningen University, Wageningen, Netherlands.

Department of Integrative Biology, University of California, Berkeley, United States.

出版信息

Elife. 2018 Mar 27;7:e33399. doi: 10.7554/eLife.33399.

Abstract

The small signaling molecule auxin controls numerous developmental processes in land plants, acting mostly by regulating gene expression. Auxin response proteins are represented by large families of diverse functions, but neither their origin nor their evolution is understood. Here, we use a deep phylogenomics approach to reconstruct both the origin and the evolutionary trajectory of all nuclear auxin response protein families. We found that, while all subdomains are ancient, a complete auxin response mechanism is limited to land plants. Functional phylogenomics predicts defined steps in the evolution of response system properties, and comparative transcriptomics across six ancient lineages revealed how these innovations shaped a sophisticated response mechanism. Genetic analysis in a basal land plant revealed unexpected contributions of ancient non-canonical proteins in auxin response as well as auxin-unrelated function of core transcription factors. Our study provides a functional evolutionary framework for understanding diverse functions of the auxin signal.

摘要

小分子信号分子生长素在陆生植物中控制着众多的发育过程,主要通过调节基因表达来发挥作用。生长素反应蛋白由功能多样的大家族组成,但它们的起源和进化尚不清楚。在这里,我们使用深度系统发生基因组学方法来重建所有核生长素反应蛋白家族的起源和进化轨迹。我们发现,虽然所有亚结构域都很古老,但完整的生长素反应机制仅限于陆地植物。功能系统发生学预测了响应系统特性进化的明确步骤,对六个古老谱系的比较转录组学揭示了这些创新如何塑造了复杂的反应机制。在一个基础陆生植物中的遗传分析揭示了古老的非经典蛋白在生长素反应中的意外作用,以及核心转录因子与生长素无关的功能。我们的研究为理解生长素信号的多种功能提供了一个功能进化框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a43f/5873896/3a70d0d7d680/elife-33399-fig1-figsupp2.jpg

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