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缓解植物生长早期作物胁迫的新兴等离子体技术:综述

Emerging Plasma Technology That Alleviates Crop Stress During the Early Growth Stages of Plants: A Review.

作者信息

Song Jong-Seok, Kim Seong Bong, Ryu Seungmin, Oh Jaesung, Kim Do-Soon

机构信息

Plasma Technology Research Center, National Fusion Research Institute, Gunsan, South Korea.

Department of Plant Science, Research Institute of Agriculture and Life Sciences, College of Agriculture and Life Sciences, Seoul National University, Seoul, South Korea.

出版信息

Front Plant Sci. 2020 Jul 15;11:988. doi: 10.3389/fpls.2020.00988. eCollection 2020.

Abstract

Crops during their early growth stages are vulnerable to a wide range of environmental stressors; thus, earlier seed invigoration and seedling establishment are essential in crop production. As an alternative to synthetic chemical treatments, plasma technology could be one of the emerging technologies to enhance seed germination and seedling vigor by managing environmental stressors. Recent studies have shown its beneficial effects in various stress conditions, suggesting that plasma treatment can be used for early crop stress management. This paper reviewed the effects of different types of plasma treatments on plant responses in terms of the seed surface environment (seed scarification and pathogen inactivation) and physiological processes (an enhanced antioxidant system and activated defense response) during the early growth stages of plants. As a result, plasma treatment can enhance seed invigoration and seedling establishment by alleviating the adverse effects of environmental stressors such as drought, salinity, and pathogen infection. More information on plasma applications and their mechanisms against a broad range of stressors is required to establish a better plasma technology for early crop stress management.

摘要

作物在其早期生长阶段易受多种环境压力因素的影响;因此,早期种子活力提升和幼苗建立在作物生产中至关重要。作为合成化学处理的替代方法,等离子体技术可能是通过应对环境压力因素来提高种子发芽率和幼苗活力的新兴技术之一。最近的研究表明了其在各种胁迫条件下的有益效果,这表明等离子体处理可用于作物早期胁迫管理。本文从种子表面环境(种子划痕和病原体灭活)以及植物早期生长阶段的生理过程(增强的抗氧化系统和激活的防御反应)方面,综述了不同类型等离子体处理对植物反应的影响。结果表明,等离子体处理可以通过减轻干旱、盐碱化和病原体感染等环境压力因素的不利影响来增强种子活力和幼苗建立。为建立更好的用于作物早期胁迫管理的等离子体技术,需要更多关于等离子体应用及其应对广泛压力因素机制的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37db/7373780/ba1313a9fda8/fpls-11-00988-g001.jpg

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