Effect of low-dose ionizing radiation on spatiotemporal parameters of functional responses induced by electrical signals in tobacco plants.

IF 2.9 3区 生物学 Q2 PLANT SCIENCES Photosynthesis Research Pub Date : 2023-09-01 Epub Date: 2023-05-21 DOI:10.1007/s11120-023-01027-9
Marina Grinberg, Yuliya Nemtsova, Maria Ageyeva, Anna Brilkina, Vladimir Vodeneev
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引用次数: 2

Abstract

Plants growing under an increased radiation background may be exposed to additional stressors. Plant acclimatization is formed with the participation of stress signals that cause systemic responses-a change in the activity of physiological processes. In this work, we studied the mechanisms of the effect of ionizing radiation (IR) on the systemic functional responses induced by electrical signals. Chronic β-irradiation (31.3 μGy/h) have a positive effect on the morphometric parameters and photosynthetic activity of tobacco plants (Nicotiana tabacum L.) at rest. An additional stressor causes an electrical signal, which, when propagated, causes a temporary change in chlorophyll fluorescence parameters, reflecting a decrease in photosynthesis activity. Irradiation did not significantly affect the electrical signals. At the same time, more pronounced photosynthesis responses are observed in irradiated plants: both the amplitude and the leaf area covered by the reaction increase. The formation of such responses is associated with changes in pH and stomatal conductance, the role of which was analyzed under IR. Using tobacco plants expressing the fluorescent pH-sensitive protein Pt-GFP, it was shown that IR enhances signal-induced cytoplasmic acidification. It was noted that irradiation also disrupts the correlation between the amplitudes of the electrical signal, pH shifts, changes in chlorophyll fluorescence parameters. Also stronger inhibition of stomatal conductance by the signal was shown in irradiated plants. It was concluded that the effect of IR on the systemic response induced by the electrical signal is mainly due to its effect on the stage of signal transformation into the response.

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低剂量电离辐射对烟草植物电信号诱导的功能反应时空参数的影响。
在增加的辐射背景下生长的植物可能会受到额外的压力。植物驯化是在胁迫信号的参与下形成的,这些信号会引起系统反应——生理过程的活动发生变化。在这项工作中,我们研究了电离辐射(IR)对电信号诱导的系统功能反应的影响机制。慢性β辐射(31.3μGy/h)对烟草(Nicotiana tabacum L.)静止时的形态参数和光合活性有积极影响。额外的应激源会产生电信号,当传播时,会导致叶绿素荧光参数的暂时变化,反映出光合作用活性的降低。辐照对电信号没有显著影响。同时,在辐照植物中观察到更明显的光合作用反应:反应的幅度和覆盖的叶面积都增加了。这种反应的形成与pH和气孔导度的变化有关,在IR下分析了其作用。使用表达荧光pH敏感蛋白Pt-GFP的烟草植物,表明IR增强了信号诱导的细胞质酸化。据指出,辐射还破坏了电信号振幅、pH值变化和叶绿素荧光参数变化之间的相关性。在辐照植物中,信号对气孔导度的抑制作用也更强。结果表明,IR对电信号诱导的系统反应的影响主要是由于其对信号转化为反应阶段的影响。
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来源期刊
Photosynthesis Research
Photosynthesis Research 生物-植物科学
CiteScore
6.90
自引率
8.10%
发文量
91
审稿时长
4.5 months
期刊介绍: Photosynthesis Research is an international journal open to papers of merit dealing with both basic and applied aspects of photosynthesis. It covers all aspects of photosynthesis research, including, but not limited to, light absorption and emission, excitation energy transfer, primary photochemistry, model systems, membrane components, protein complexes, electron transport, photophosphorylation, carbon assimilation, regulatory phenomena, molecular biology, environmental and ecological aspects, photorespiration, and bacterial and algal photosynthesis.
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