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Sites and Regulation of Polyamine Catabolism in the Tobacco Plant. Correlations with Cell Division/Expansion Cell Cycle Progression and Vascular Development

机译:烟草厂中多胺分解代谢的位点和调控。与细胞分裂/扩张细胞周期进展和血管发育的关系

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摘要

We previously gave a picture of the homeostatic characteristics of polyamine (PA) biosynthesis and conjugation in tobacco (Nicotiana tabacum) plant organs during development. In this work, we present the sites and regulation of PA catabolism related to cell division/expansion, cell cycle progression, and vascular development in the tobacco plant. Diamine oxidase (DAO), PA oxidase (PAO), peroxidases (POXs), and putrescine N-methyltransferase expressions follow temporally and spatially discrete patterns in shoot apical cells, leaves (apical, peripheral, and central regions), acropetal and basipetal petiole regions, internodes, and young and old roots in developing plants. DAO and PAO produce hydrogen peroxide, a plant signal molecule and substrate for POXs. Gene expression and immunohistochemistry analyses reveal that amine oxidases in developing tobacco tissues precede and overlap with nascent nuclear DNA and also with POXs and lignification. In mature and old tissues, flow cytometry indicates that amine oxidase and POX activities, as well as pao gene and PAO protein levels, coincide with G2 nuclear phase and endoreduplication. In young versus the older roots, amine oxidases and POX expression decrease with parallel inhibition of G2 advance and endoreduplication, whereas putrescine N-methyltransferase dramatically increases. In both hypergeous and hypogeous tissues, DAO and PAO expression occurs in cells destined to undergo lignification, suggesting a different in situ localization. DNA synthesis early in development and the advance in cell cycle/endocycle are temporally and spatially related to PA catabolism and vascular development.
机译:我们先前给出了在开发过程中烟草(Nicotiana tabacum)植物器官中多胺(PA)生物合成和结合的稳态特性的图片。在这项工作中,我们介绍了与烟草植物中细胞分裂/扩展,细胞周期进程和血管发育有关的PA分解代谢的位点和调控。二胺氧化酶(DAO),PA氧化酶(PAO),过氧化物酶(POXs)和腐胺N-甲基转移酶的表达在茎尖细胞,叶片(根尖,周边和中央区域),顶瓣和基底柄的叶柄区域中在时间和空间上呈离散模式,节间以及发育中的植物的老少根源。 DAO和PAO产生过氧化氢,一种植物信号分子和POX的底物。基因表达和免疫组织化学分析表明,发育中的烟草组织中的胺氧化酶在新生核DNA以及POX和木质化之前并与之重叠。在成熟和旧的组织中,流式细胞仪表明胺氧化酶和POX活性以及pao基因和PAO蛋白水平与G2核期和核内复制一致。在年轻与较年长的根中,胺氧化酶和POX的表达随着G2前进和核内复制的平行抑制而降低,而腐胺N-甲基转移酶则急剧增加。在上皮和下皮组织中,DAO和PAO的表达都发生在注定要进行木质化的细胞中,这表明存在不同的原位定位。 DNA合成的早期发展和细胞周期/内循环的发展在时间和空间上都与PA分解代谢和血管发育有关。

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