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冷等离子体种子引发通过诱导番茄(Solanum lycopersicum)中的活性物质来调节生长、氧化还原平衡和应激响应。

Cold plasma seed priming modulates growth, redox homeostasis and stress response by inducing reactive species in tomato (Solanum lycopersicum).

机构信息

Plasma Bioscience Research Center, Kwangwoon University, Seoul 01897, South Korea.

Plasma Bioscience Research Center, Kwangwoon University, Seoul 01897, South Korea.

出版信息

Free Radic Biol Med. 2020 Aug 20;156:57-69. doi: 10.1016/j.freeradbiomed.2020.06.003. Epub 2020 Jun 17.

Abstract

Seed germination and vegetative growth are two important plant growing stages that are vulnerable to physical and biological stress. Improvement in crop germination potential and seedling growth rate generally leads to high crop productivity. Cold plasma is a promising technology used to improve seed germination and growth. Structural changes on tomato seed surface exposed with cold air plasma jet for a different time period (1 min, 5 min, 10 min) was examined by SEM. For in-depth study, different physiological parameter such as seed germination and seedling growth, biochemical parameter such as reactive species status, antioxidants and phytohormone, and molecular analysis of various gene expression was also evaluated. Drought stress tolerance potential of cold plasma primed tomato seedling was also examined under 30% PEG stress. Cold plasma seed priming modulates tomato seed coat and improves the germination efficiency. It also induces growth, antioxidants, phytohormone, defense gene expression, and drought stress tolerance potential of tomato seedling. Cold plasma seeds priming augment the reactive species at a molecular level within seedlings, which changes the biochemistry and physiological parameters of plants by inducing different cellular signaling cascades.

摘要

种子萌发和营养生长是两个重要的植物生长阶段,容易受到物理和生物胁迫的影响。提高作物的萌发潜力和幼苗生长速度通常可以带来更高的作物产量。冷等离子体是一种有前途的技术,可用于改善种子萌发和生长。通过扫描电子显微镜(SEM)检查了番茄种子表面在不同时间段(1 分钟、5 分钟和 10 分钟)暴露于冷空气等离子射流后的结构变化。为了进行深入研究,还评估了不同的生理参数,如种子萌发和幼苗生长、生化参数,如活性物质状态、抗氧化剂和植物激素,以及各种基因表达的分子分析。还在 30%PEG 胁迫下检查了冷等离子体引发的番茄幼苗的耐旱潜力。冷等离子体种子引发可以调节番茄种皮,提高萌发效率。它还可以诱导番茄幼苗的生长、抗氧化剂、植物激素、防御基因表达和耐旱潜力。冷等离子体种子引发可以在分子水平上增加活性物质,通过诱导不同的细胞信号级联来改变植物的生化和生理参数。

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