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Copper-Containing Amine Oxidases and FAD-Dependent Polyamine Oxidases Are Key Players in Plant Tissue Differentiation and Organ Development

机译:含铜胺氧化酶和依赖FAD的多胺氧化酶是植物组织分化和器官发育的关键因素

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摘要

Plant polyamines are catabolized by two classes of amine oxidases, the copper amine oxidases (CuAOs) and the flavin adenine dinucleotide (FAD)-dependent polyamine oxidases (PAOs). These enzymes differ to each other in substrate specificity, catalytic mechanism and subcellular localization. CuAOs and PAOs contribute to several physiological processes both through the control of polyamine homeostasis and as sources of biologically-active reaction products. CuAOs and PAOs have been found at high level in the cell-wall of several species belonging to Fabaceae and Poaceae families, respectively, especially in tissues fated to undertake extensive wall loosening/stiffening events and/or in cells undergoing programmed cell death (PCD). Apoplastic CuAOs and PAOs have been shown to play a key role as a source of H2O2 in light- or developmentally-regulated differentiation events, thus influencing cell-wall architecture and maturation as well as PCD. Moreover, growing evidence suggests a key role of intracellular CuAOs and PAOs in several facets of plant development. Here, we discuss recent advances in understanding the contribution of different CuAOs/PAOs, as well as their cross-talk with different intracellular and apoplastic metabolic pathways, in tissue differentiation and organ development.
机译:植物多胺被两类胺氧化酶,铜胺氧化酶(CuAOs)和黄素腺嘌呤二核苷酸(FAD)依赖性多胺氧化酶(PAOs)分解代谢。这些酶在底物特异性,催化机理和亚细胞定位方面彼此不同。 CuAOs和PAOs通过控制多胺稳态和作为生物活性反应产物的来源,有助于几个生理过程。 CuAOs和PAOs分别在Fabaceae和Poaceae家族的几种物种的细胞壁中被高水平发现,特别是在注定要进行广泛的壁松弛/变硬事件的组织中和/或正在经历程序性细胞死亡(PCD)的细胞中。 。质外性CuAO和PAO已被证明在光或发育调节的分化事件中作为H2O2的来源起着关键作用,从而影响细胞壁的结构和成熟以及PCD。此外,越来越多的证据表明细胞内CuAO和PAO在植物发育的多个方面起着关键作用。在这里,我们讨论了了解不同CuAOs / PAOs的贡献以及它们与不同细胞内和质外代谢途径在组织分化和器官发育中的相互影响的最新进展。

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