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豌豆植株局部刺激诱导的电活动、光合活动以及植物激素含量的时空动态

Spatial and Temporal Dynamics of Electrical and Photosynthetic Activity and the Content of Phytohormones Induced by Local Stimulation of Pea Plants.

作者信息

Ladeynova Maria, Mudrilov Maxim, Berezina Ekaterina, Kior Dmitry, Grinberg Marina, Brilkina Anna, Sukhov Vladimir, Vodeneev Vladimir

机构信息

Department of Biophysics, National Research Lobachevsky State University of Nizhny Novgorod, 23 Gagarin Avenue, 603950 Nizhny Novgorod, Russia.

Earth's Electromagnetic Environment Laboratory, Institute of Applied Physics, 46 Ulyanova Street, 603950 Nizhny Novgorod, Russia.

出版信息

Plants (Basel). 2020 Oct 15;9(10):1364. doi: 10.3390/plants9101364.

Abstract

A local leaf burning causes variation potential (VP) propagation, a decrease in photosynthesis activity, and changes in the content of phytohormones in unstimulated leaves in pea plants. The VP-induced photosynthesis response develops in two phases: fast inactivation and long-term inactivation. Along with a decrease in photosynthetic activity, there is a transpiration suppression in unstimulated pea leaves, which corresponds to the long-term phase of photosynthesis response. Phytohormone level analysis showed an increase in the concentration of jasmonic acid (JA) preceding a transpiration suppression and a long-term phase of the photosynthesis response. Analysis of the spatial and temporal dynamics of electrical signals, phytohormone levels, photosynthesis, and transpiration activity showed the most pronounced changes in the more distant leaf from the area of local stimulation. The established features are related to the architecture of the vascular bundles in the pea stem.

摘要

局部叶片燃烧会导致豌豆植株中未受刺激的叶片产生变异电位(VP)传播、光合作用活性降低以及植物激素含量变化。VP诱导的光合作用反应分两个阶段发展:快速失活和长期失活。随着光合作用活性的降低,未受刺激的豌豆叶片蒸腾作用受到抑制,这与光合作用反应的长期阶段相对应。植物激素水平分析表明,在蒸腾作用抑制和光合作用反应的长期阶段之前,茉莉酸(JA)浓度会升高。对电信号、植物激素水平、光合作用和蒸腾作用活性的时空动态分析表明,在距离局部刺激区域较远的叶片中变化最为明显。所确定的这些特征与豌豆茎中维管束的结构有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca05/7602463/c9979a2b20c6/plants-09-01364-g001.jpg

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