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Versatile roles of polyamines in improving abiotic stress tolerance of plants

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FRONTIERS IN PLANT SCIENCE
卷 13, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fpls.2022.1003155

关键词

polyamines; abiotic stress; antioxidant system; hormonal regulation; stress tolerance

资金

  1. National Key Research and development Program of China [2016YFD0300208]
  2. National Natural Science Foundation of China [41661070]
  3. Guangxi Key RD program [Guike AB19245039, Guike AB19245040]
  4. Guangxi Key Laboratory of Water Engineering Materials and Structures fund program [GXHRI-WZMS-2020-03]
  5. Key disciplines (construction) of ecology in the 13th Five-Year Plan of Jiangxi Agricultural University

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The article summarizes recent research on enhancing plant tolerance to stress by exogenously applying PAs under extreme environmental conditions, as well as the role of PAs in plant physiological and metabolic processes. It indicates the importance of PAs in improving plant resilience to stress under unfavorable climatic conditions.
In recent years, extreme environmental cues such as abiotic stresses, including frequent droughts with irregular precipitation, salinity, metal contamination, and temperature fluctuations, have been escalating the damage to plants' optimal productivity worldwide. Therefore, yield maintenance under extreme events needs improvement in multiple mechanisms that can minimize the influence of abiotic stresses. Polyamines (PAs) are pivotally necessary for a defensive purpose under adverse abiotic conditions, but their molecular interplay in this remains speculative. The PAs' accretion is one of the most notable metabolic responses of plants under stress challenges. Recent studies reported the beneficial roles of PAs in plant development, including metabolic and physiological processes, unveiling their potential for inducing tolerance against adverse conditions. This review presents an overview of research about the most illustrious and remarkable achievements in strengthening plant tolerance to drought, salt, and temperature stresses by the exogenous application of PAs. The knowledge of underlying processes associated with stress tolerance and PA signaling pathways was also summarized, focusing on up-to-date evidence regarding the metabolic and physiological role of PAs with exogenous applications that protect plants under unfavorable climatic conditions. Conclusively, the literature proposes that PAs impart an imperative role in abiotic stress tolerance in plants. This implies potentially important feedback on PAs and plants' stress tolerance under unfavorable cues.

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