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不同刺激诱发变异电位特异性的机制分析。

Analysis of the Mechanisms Underlying the Specificity of the Variation Potential Induced by Different Stimuli.

作者信息

Mudrilov Maxim, Ladeynova Maria, Vetrova Yana, Vodeneev Vladimir

机构信息

Department of Biophysics, National Research Lobachevsky State University of Nizhny Novgorod, 23 Gagarin Avenue, 603022 Nizhny Novgorod, Russia.

出版信息

Plants (Basel). 2024 Oct 16;13(20):2896. doi: 10.3390/plants13202896.

Abstract

Plants are able to perceive diverse environmental factors and form an appropriate systemic functional response. Systemic responses are induced by stimulus-specific long-distance signals that carry information about the stimulus. Variation potential is proposed as a candidate for the role of such a signal. Here, we focus on the mechanisms that determine the specificity of the variation potential under the action of different local stimuli. Local stimuli such as heating, burning and wounding cause variation potential, the parameters of which differ depending on the type of stimulus. It was found that the stimulus-specific features of the hydraulic signal monitored by changes in leaf thickness and variation potential, such as a greater amplitude upon heating and burning and a significant amplitude decrement upon burning and wounding, were similar. The main features of these signals are the greater amplitude upon heating and burning, and a significant amplitude decrement upon burning and wounding. Together with the temporal correspondence of signal propagation, this evidence indicates a role for the hydraulic signal in the induction of stimulus-specific variation potential. Experiments using mechanosensitive channel inhibitors have demonstrated that the hydraulic signal contributes more to the induction of the variation potential in the case of rapidly growing stimuli, such as burning and wounding, than in the case of gradual heating. For thermal stimuli (gradual heating and burning), a greater contribution, compared to wounding, of the chemical signal related to reactive oxygen species to the induction of the variation potential was demonstrated. Thus, the specificity of the parameters of the variation potential is determined by the different contributions of hydraulic and chemical signals.

摘要

植物能够感知多种环境因素并形成适当的系统性功能反应。系统性反应由携带有关刺激信息的刺激特异性长距离信号诱导产生。变异电位被认为是这种信号作用的候选者。在此,我们关注在不同局部刺激作用下决定变异电位特异性的机制。诸如加热、灼烧和创伤等局部刺激会引发变异电位,其参数因刺激类型而异。研究发现,通过叶片厚度变化和变异电位监测的液压信号的刺激特异性特征是相似的,例如加热和灼烧时幅度更大,而灼烧和创伤时幅度显著减小。这些信号的主要特征是加热和灼烧时幅度更大,灼烧和创伤时幅度显著减小。连同信号传播的时间对应关系,这一证据表明液压信号在诱导刺激特异性变异电位中发挥作用。使用机械敏感通道抑制剂的实验表明,与逐渐加热相比,对于快速生长的刺激(如灼烧和创伤),液压信号对变异电位诱导的贡献更大。对于热刺激(逐渐加热和灼烧),与创伤相比,与活性氧相关的化学信号对变异电位诱导的贡献更大。因此,变异电位参数的特异性由液压信号和化学信号的不同贡献决定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f44/11511009/7cf3c71ffc16/plants-13-02896-g001.jpg

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