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光敏色素-激素信号网络

Phytochrome-hormonal signalling networks.

作者信息

Halliday Karen J, Fankhauser Christian

机构信息

School of Biological Sciences, University of Bristol, Woodland Road, Bristol BS8 1UG, UK.

Department of Molecular Biology, Université de Genève, 30 quai E. Ansermet, CH-1211 Geneva 4, Switzerland.

出版信息

New Phytol. 2003 Mar;157(3):449-463. doi: 10.1046/j.1469-8137.2003.00689.x.

Abstract

Through time, plants have evolved an extraordinary ability to interpret environmental cues. One of the most reliable of these cues is light, and plants are particularly adept at sensing and translating environmental light signals. The phytochrome family of photoreceptors monitor cues such as daylength or vegetative shade and adjust development to reflect change in these parameters. Indeed, it is their ability to coordinate these complex developmental changes that underpins the remarkable success of plants. Evidence is mounting that hormones control many of these light-mediated changes. Therefore, if we are to understand how light manipulates development we need to explore the interplay between light and hormonal signalling. Toward this goal, this review highlights the known convergence points of the phytochrome and the hormonal networks and explores their interactions. Contents Summary 449 I. Introduction 449 II. The phytochrome protein 450 III. Bacteriophytochromes 450 IV. IBacteriophytochrome signalling 450 V. Plant phytochrome signalling 451 VI. Ethylene perception and signalling 451 VII. Cytokinin perception and signalling 452 VIII. Brassinosteroid perception and signalling 453 IX. Gibberellin signalling 455 X. Auxin signalling 456 XI. Proteolysis in light and hormonal signalling 458 XII. Conclusion 459 Acknowledgements 459 References 459.

摘要

随着时间的推移,植物进化出了非凡的能力来解读环境线索。其中最可靠的线索之一就是光,植物尤其擅长感知和转换环境光信号。光敏色素家族的光感受器监测诸如日照长度或营养遮荫等线索,并调整发育以反映这些参数的变化。事实上,正是它们协调这些复杂发育变化的能力支撑了植物的巨大成功。越来越多的证据表明,激素控制着许多这些光介导的变化。因此,如果我们要理解光如何操纵发育,就需要探索光与激素信号之间的相互作用。为了实现这一目标,本综述突出了光敏色素和激素网络的已知交汇点,并探讨了它们之间的相互作用。内容摘要449 一、引言449 二、光敏色素蛋白450 三、细菌光敏色素450 四、细菌光敏色素信号传导450 五、植物光敏色素信号传导451 六、乙烯感知与信号传导451 七、细胞分裂素感知与信号传导452 八、油菜素内酯感知与信号传导453 九、赤霉素信号传导455 十、生长素信号传导456 十一、光和激素信号传导中的蛋白水解458 十二、结论459 致谢459 参考文献459

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