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差向和功能相互作用强调了多胺在植物中的多种作用。

Differential and functional interactions emphasize the multiple roles of polyamines in plants.

机构信息

Department of Horticulture & Landscape Architecture, Purdue University, W. Lafayette, IN, USA.

出版信息

Plant Physiol Biochem. 2010 Jul;48(7):540-6. doi: 10.1016/j.plaphy.2010.02.009. Epub 2010 Feb 21.

Abstract

Biogenic amines putrescine, spermidine and spermine are ubiquitous in nature and have interested researchers because they are essential for cell division and viability, and due to a large body of their pharmacological effects on growth and development in most living cells. The genes and enzymes involved in their biosynthetic pathways are now established and characterized. In recent years, molecular aspects of polyamine action have also begun to emerge. Our model is the ripening tomato fruit in which processes of cell division, cell expansion and cell growth have ceased, and yet the cells are responsive at biochemical and molecular levels to genetically manipulated concentrations of putrescine (Put), spermidine (Spd) and spermine (Spm). Thus, transcriptome, limited protein profiling, and metabolome studies of transgenic tomato fruit have yielded significant new information on cellular processes impacted by polyamine manipulation. We have used these datasets to determine the linear correlation coefficients between the endogenous levels of Put, Spd and Spm with several parameters. Results of our analysis presented here show that effects of the diamine Put generally contrast those with polyamines Spd and Spm, emphasizing that individual biogenic amines should be considered to have defined action in plant biology and that they differentially affect growth and development. A multiple function model of polyamine action is discussed to explain the role of polyamines in most organisms, in general, and ripening fruit, in particular.

摘要

生物胺腐胺、亚精胺和精胺在自然界中无处不在,它们对细胞分裂和活力至关重要,并且由于它们在大多数活细胞的生长和发育中有大量的药理学作用,因此引起了研究人员的兴趣。它们生物合成途径中的基因和酶现在已经确定并得到了描述。近年来,多胺作用的分子方面也开始显现出来。我们的模式是成熟的番茄果实,其中细胞分裂、细胞扩张和细胞生长过程已经停止,但细胞在生化和分子水平上对遗传操纵的腐胺(Put)、亚精胺(Spd)和精胺(Spm)浓度有反应。因此,转基因番茄果实的转录组、有限蛋白质谱和代谢组学研究为受多胺操作影响的细胞过程提供了重要的新信息。我们使用这些数据集来确定内源 Put、Spd 和 Spm 水平与几个参数之间的线性相关系数。我们这里呈现的分析结果表明,二胺 Put 的作用通常与多胺 Spd 和 Spm 的作用相反,这强调了应该认为单个生物胺在植物生物学中有明确的作用,并且它们对生长和发育有不同的影响。讨论了多胺作用的多效性模型,以解释多胺在大多数生物体中的作用,特别是在成熟果实中的作用。

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