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确定生长素反应链中各过程的选择性:一项使用生长素类似物的研究。

Defining the selectivity of processes along the auxin response chain: a study using auxin analogues.

作者信息

Simon Sibu, Kubeš Martin, Baster Pawel, Robert Stéphanie, Dobrev Petre Ivanov, Friml Jiří, Petrášek Jan, Zažímalová Eva

机构信息

Institute of Experimental Botany, The Academy of Sciences of the Czech Republic, Rozvojová 263, 16502, Prague 6, Czech Republic; Department of Plant Systems Biology, VIB and Department of Plant Biotechnology and Genetics, Ghent University, 9052, Ghent, Belgium; Developmental and Cell Physiology of Plants, Institute of Science and Technology (IST Austria), 3400, Klosterneuburg, Austria.

出版信息

New Phytol. 2013 Dec;200(4):1034-48. doi: 10.1111/nph.12437. Epub 2013 Aug 5.

Abstract

The mode of action of auxin is based on its non-uniform distribution within tissues and organs. Despite the wide use of several auxin analogues in research and agriculture, little is known about the specificity of different auxin-related transport and signalling processes towards these compounds. Using seedlings of Arabidopsis thaliana and suspension-cultured cells of Nicotiana tabacum (BY-2), the physiological activity of several auxin analogues was investigated, together with their capacity to induce auxin-dependent gene expression, to inhibit endocytosis and to be transported across the plasma membrane. This study shows that the specificity criteria for different auxin-related processes vary widely. Notably, the special behaviour of some synthetic auxin analogues suggests that they might be useful tools in investigations of the molecular mechanism of auxin action. Thus, due to their differential stimulatory effects on DR5 expression, indole-3-propionic (IPA) and 2,4,5-trichlorophenoxy acetic (2,4,5-T) acids can serve in studies of TRANSPORT INHIBITOR RESPONSE 1/AUXIN SIGNALLING F-BOX (TIR1/AFB)-mediated auxin signalling, and 5-fluoroindole-3-acetic acid (5-F-IAA) can help to discriminate between transcriptional and non-transcriptional pathways of auxin signalling. The results demonstrate that the major determinants for the auxin-like physiological potential of a particular compound are very complex and involve its chemical and metabolic stability, its ability to distribute in tissues in a polar manner and its activity towards auxin signalling machinery.

摘要

生长素的作用模式基于其在组织和器官内的不均匀分布。尽管几种生长素类似物在研究和农业中得到广泛应用,但对于不同生长素相关运输和信号传导过程对这些化合物的特异性了解甚少。利用拟南芥幼苗和烟草(BY-2)悬浮培养细胞,研究了几种生长素类似物的生理活性,以及它们诱导生长素依赖性基因表达、抑制内吞作用和跨质膜运输的能力。这项研究表明,不同生长素相关过程的特异性标准差异很大。值得注意的是,一些合成生长素类似物的特殊行为表明它们可能是研究生长素作用分子机制的有用工具。因此,由于它们对DR5表达的不同刺激作用,吲哚-3-丙酸(IPA)和2,4,5-三氯苯氧乙酸(2,4,5-T)可用于研究运输抑制剂响应1/生长素信号传导F-盒(TIR1/AFB)介导的生长素信号传导,而5-氟吲哚-3-乙酸(5-F-IAA)有助于区分生长素信号传导的转录和非转录途径。结果表明,特定化合物类似生长素生理潜力的主要决定因素非常复杂,涉及其化学和代谢稳定性、以极性方式在组织中分布的能力以及对生长素信号传导机制的活性。

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