Polyamine Catabolism in Plants: A Universal Process With Diverse Functions

植物中的多胺分解代谢:具有多种功能的普遍过程

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Abstract

Polyamine (PA) catabolic processes are performed by copper-containing amine oxidases (CuAOs) and flavin-containing PA oxidases (PAOs). So far, several CuAOs and PAOs have been identified in many plant species. These enzymes exhibit different subcellular localization, substrate specificity, and functional diversity. Since PAs are involved in numerous physiological processes, considerable efforts have been made to explore the functions of plant CuAOs and PAOs during the recent decades. The stress signal transduction pathways usually lead to increase of the intracellular PA levels, which are apoplastically secreted and oxidized by CuAOs and PAOs, with parallel production of hydrogen peroxide (H(2)O(2)). Depending on the levels of the generated H(2)O(2), high or low, respectively, either programmed cell death (PCD) occurs or H(2)O(2) is efficiently scavenged by enzymatic/nonenzymatic antioxidant factors that help plants coping with abiotic stress, recruiting different defense mechanisms, as compared to biotic stress. Amine and PA oxidases act further as PA back-converters in peroxisomes, also generating H(2)O(2), possibly by activating Ca(2+) permeable channels. Here, the new research data are discussed on the interconnection of PA catabolism with the derived H(2)O(2), together with their signaling roles in developmental processes, such as fruit ripening, senescence, and biotic/abiotic stress reactions, in an effort to elucidate the mechanisms involved in crop adaptation/survival to adverse environmental conditions and to pathogenic infections.

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