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首页> 外文期刊>Current Protein and Peptide Science >Phytohormone Crosstalk Research: Cytokinin and its Crosstalk with Other Phytohormones
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Phytohormone Crosstalk Research: Cytokinin and its Crosstalk with Other Phytohormones

机译:植物激素串扰研究:细胞分裂素及其与其他植物激素的串扰

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As signal molecules produced within the plant, phytohormones (plant hormones) control plant growth and development through the regulation of gene expression. They play also a crucial role in the regulation of cellular activities including elongation, cell division and differentiation, organogenesis, pattern formation, reproduction and responses to abiotic and biotic stress conditions. Cytokinins, auxins, gibberellins, abscisic acid and ethylene are five classic phytohormones that had been discovered by the middle of the twentieth century, while strigolactones, brassinosteroids, jasmonates and salicylates are of more recently characterized phytohormones. Interaction between different phytohormone pathways is essential in coordinating tissue outgrowth in response to environmental changes. In the past decades, hormone research has focused on elucidating signal transduction pathways from hormone perception to response. Such efforts have been well paid off by recent discoveries of almost all receptors for major classes of phytohormones. While receptors and pathways for individual hormones are being illustrated, growing evidence suggests that these signaling pathways are interconnected in a complex network. In these pathways, phytohormones not only coordinate fundamental developmental cues, but also convey environmental inputs by means of synergistic or antagonistic actions referred to as signaling crosstalk. Focusing on hormone action and crosstalk, this work suggested concentrating on phytohormones signaling, particularly cytokinin crosstalk with other hormones, in various plants. Plant responses to biotic and abiotic stresses are also elucidated regarding the dramatic recent progress in understanding the cytokinin-other phytohormones crosstalk.
机译:作为植物内产生的信号分子,植物激素(植物激素)通过调节基因表达来控制植物的生长和发育。它们在调节细胞活动中也起着至关重要的作用,包括伸长,细胞分裂和分化,器官发生,模式形成,繁殖以及对非生物和生物胁迫条件的反应。细胞分裂素,植物生长素,赤霉素,脱落酸和乙烯是二十世纪中叶发现的五种经典植物激素,而雌激素内酯,油菜素类固醇,茉莉酸酯和水杨酸酯是最近鉴定的植物激素。不同植物激素途径之间的相互作用对于协调组织对环境变化的生长至关重要。在过去的几十年中,激素研究一直致力于阐明从激素感知到反应的信号转导途径。最近发现主要类别植物激素的几乎所有受体的努力都得到了很好的回报。虽然说明了每种激素的受体和途径,但越来越多的证据表明这些信号传导途径在复杂的网络中相互连接。在这些途径中,植物激素不仅协调基本的发育线索,而且还通过称为信号串扰的协同或拮抗作用传达环境输入。着眼于激素作用和串扰,这项工作建议着重于各种植物中植物激素的信号传导,特别是细胞分裂素与其他激素的串扰。还阐明了植物对生物和非生物胁迫的反应,这是因为最近在了解细胞分裂素与其他植物激素的串扰方面取得了令人瞩目的进展。

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