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调控调节因子:生长素运输的控制

Regulating the regulator: the control of auxin transport.

作者信息

Benjamins René, Malenica Nenad, Luschnig Christian

机构信息

Institute for Applied Genetics and Cell Biology, University of Natural Resources and Applied Life Sciences, Vienna, Austria.

出版信息

Bioessays. 2005 Dec;27(12):1246-55. doi: 10.1002/bies.20322.

Abstract

With the discovery of the phytohormone auxin in the late 1920s, it became possible to link the regulation of complex plant growth responses to a single biologically active compound. Among all the plant growth regulators characterised so far, only auxin appears to be actively transported throughout the plant to create complex variations in concentration patterns and flow directions over time. This stimulated interest in the specific mechanisms underlying auxin transport as key factors in plant growth responses. Research in the last decade revealed several genes involved in the controlled transport of auxin and greatly improved our understanding of the basic principles of auxin-mediated responses. We are at this point, however, only starting to understand the complex interplay and control of factors that ultimately underlie the observed spatiotemporal variations in auxin transport and thus mediate plant growth and environmental responses. This review highlights important findings that provide us with a framework of molecular players and potential regulatory mechanisms that should contribute to the formulation of a comprehensive dynamic model of spatiotemporal auxin distribution.

摘要

随着20世纪20年代末植物激素生长素的发现,将复杂的植物生长反应调节与单一生物活性化合物联系起来成为可能。在迄今为止已鉴定的所有植物生长调节剂中,只有生长素似乎在整个植物中进行主动运输,从而随着时间的推移在浓度模式和流动方向上产生复杂的变化。这激发了人们对生长素运输特定机制的兴趣,这些机制是植物生长反应的关键因素。过去十年的研究揭示了几个参与生长素受控运输的基因,并极大地增进了我们对生长素介导反应基本原理的理解。然而,目前我们才刚刚开始理解最终导致观察到的生长素运输时空变化并因此介导植物生长和环境反应的各种因素的复杂相互作用和控制。本综述重点介绍了一些重要发现,这些发现为我们提供了一个分子参与者框架和潜在调节机制,应有助于构建一个全面的生长素时空分布动态模型。

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