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Polyamine: A Potent Ameliorator for Plant Growth Response and Adaption to Abiotic Stresses Particularly the Ammonium Stress Antagonized by Urea

Polyamine(s) (PA, PAs), a sort of N-containing and polycationic compound synthesized in almost all organisms, has been recently paid considerable attention due to its multifarious actions in the potent modulation of plant growth, development, and response to abiotic/biotic stresses. PAs in cells/tis...

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Autores principales: Sheng, Song, Wu, Changzheng, Xiang, Yucheng, Pu, Wenxuan, Duan, Shuhui, Huang, Pingjun, Cheng, Xiaoyuan, Gong, Yuanyong, Liang, Yilong, Liu, Laihua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8988247/
https://www.ncbi.nlm.nih.gov/pubmed/35401587
http://dx.doi.org/10.3389/fpls.2022.783597
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author Sheng, Song
Wu, Changzheng
Xiang, Yucheng
Pu, Wenxuan
Duan, Shuhui
Huang, Pingjun
Cheng, Xiaoyuan
Gong, Yuanyong
Liang, Yilong
Liu, Laihua
author_facet Sheng, Song
Wu, Changzheng
Xiang, Yucheng
Pu, Wenxuan
Duan, Shuhui
Huang, Pingjun
Cheng, Xiaoyuan
Gong, Yuanyong
Liang, Yilong
Liu, Laihua
author_sort Sheng, Song
collection PubMed
description Polyamine(s) (PA, PAs), a sort of N-containing and polycationic compound synthesized in almost all organisms, has been recently paid considerable attention due to its multifarious actions in the potent modulation of plant growth, development, and response to abiotic/biotic stresses. PAs in cells/tissues occur mainly in free or (non- or) conjugated forms by binding to various molecules including DNA/RNA, proteins, and (membrane-)phospholipids, thus regulating diverse molecular and cellular processes as shown mostly in animals. Although many studies have reported that an increase in internal PA may be beneficial to plant growth under abiotic conditions, leading to a suggestion of improving plant stress adaption by the elevation of endogenous PA via supply or molecular engineering of its biosynthesis, such achievements focus mainly on PA homeostasis/metabolism rather than PA-mediated molecular/cellular signaling cascades. In this study, to advance our understanding of PA biological actions important for plant stress acclimation, we gathered some significant research data to succinctly describe and discuss, in general, PA synthesis/catabolism, as well as PA as an internal ameliorator to regulate stress adaptions. Particularly, for the recently uncovered phenomenon of urea-antagonized NH(4)(+)-stress, from a molecular and physiological perspective, we rationally proposed the possibility of the existence of PA-facilitated signal transduction pathways in plant tolerance to NH(4)(+)-stress. This may be a more interesting issue for in-depth understanding of PA-involved growth acclimation to miscellaneous stresses in future studies.
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spelling pubmed-89882472022-04-08 Polyamine: A Potent Ameliorator for Plant Growth Response and Adaption to Abiotic Stresses Particularly the Ammonium Stress Antagonized by Urea Sheng, Song Wu, Changzheng Xiang, Yucheng Pu, Wenxuan Duan, Shuhui Huang, Pingjun Cheng, Xiaoyuan Gong, Yuanyong Liang, Yilong Liu, Laihua Front Plant Sci Plant Science Polyamine(s) (PA, PAs), a sort of N-containing and polycationic compound synthesized in almost all organisms, has been recently paid considerable attention due to its multifarious actions in the potent modulation of plant growth, development, and response to abiotic/biotic stresses. PAs in cells/tissues occur mainly in free or (non- or) conjugated forms by binding to various molecules including DNA/RNA, proteins, and (membrane-)phospholipids, thus regulating diverse molecular and cellular processes as shown mostly in animals. Although many studies have reported that an increase in internal PA may be beneficial to plant growth under abiotic conditions, leading to a suggestion of improving plant stress adaption by the elevation of endogenous PA via supply or molecular engineering of its biosynthesis, such achievements focus mainly on PA homeostasis/metabolism rather than PA-mediated molecular/cellular signaling cascades. In this study, to advance our understanding of PA biological actions important for plant stress acclimation, we gathered some significant research data to succinctly describe and discuss, in general, PA synthesis/catabolism, as well as PA as an internal ameliorator to regulate stress adaptions. Particularly, for the recently uncovered phenomenon of urea-antagonized NH(4)(+)-stress, from a molecular and physiological perspective, we rationally proposed the possibility of the existence of PA-facilitated signal transduction pathways in plant tolerance to NH(4)(+)-stress. This may be a more interesting issue for in-depth understanding of PA-involved growth acclimation to miscellaneous stresses in future studies. Frontiers Media S.A. 2022-03-23 /pmc/articles/PMC8988247/ /pubmed/35401587 http://dx.doi.org/10.3389/fpls.2022.783597 Text en Copyright © 2022 Sheng, Wu, Xiang, Pu, Duan, Huang, Cheng, Gong, Liang and Liu. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Sheng, Song
Wu, Changzheng
Xiang, Yucheng
Pu, Wenxuan
Duan, Shuhui
Huang, Pingjun
Cheng, Xiaoyuan
Gong, Yuanyong
Liang, Yilong
Liu, Laihua
Polyamine: A Potent Ameliorator for Plant Growth Response and Adaption to Abiotic Stresses Particularly the Ammonium Stress Antagonized by Urea
title Polyamine: A Potent Ameliorator for Plant Growth Response and Adaption to Abiotic Stresses Particularly the Ammonium Stress Antagonized by Urea
title_full Polyamine: A Potent Ameliorator for Plant Growth Response and Adaption to Abiotic Stresses Particularly the Ammonium Stress Antagonized by Urea
title_fullStr Polyamine: A Potent Ameliorator for Plant Growth Response and Adaption to Abiotic Stresses Particularly the Ammonium Stress Antagonized by Urea
title_full_unstemmed Polyamine: A Potent Ameliorator for Plant Growth Response and Adaption to Abiotic Stresses Particularly the Ammonium Stress Antagonized by Urea
title_short Polyamine: A Potent Ameliorator for Plant Growth Response and Adaption to Abiotic Stresses Particularly the Ammonium Stress Antagonized by Urea
title_sort polyamine: a potent ameliorator for plant growth response and adaption to abiotic stresses particularly the ammonium stress antagonized by urea
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8988247/
https://www.ncbi.nlm.nih.gov/pubmed/35401587
http://dx.doi.org/10.3389/fpls.2022.783597
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