Yudina Lyubov, Sherstneva Oksana, Sukhova Ekaterina, Grinberg Marina, Mysyagin Sergey, Vodeneev Vladimir, Sukhov Vladimir
Department of Biophysics, N.I. Lobachevsky State University of Nizhny Novgorod, 603950 Nizhny Novgorod, Russia.
Plants (Basel). 2020 Nov 16;9(11):1585. doi: 10.3390/plants9111585.
Local damage (e.g., burning, heating, or crushing) causes the generation and propagation of a variation potential (VP), which is a unique electrical signal in higher plants. A VP influences numerous physiological processes, with photosynthesis and respiration being important targets. VP generation is based on transient inactivation of H-ATPase in plasma membrane. In this work, we investigated the participation of this inactivation in the development of VP-induced photosynthetic and respiratory responses. Two- to three-week-old pea seedlings ( L.) and their protoplasts were investigated. Photosynthesis and respiration in intact seedlings were measured using a GFS-3000 gas analyzer, Dual-PAM-100 Pulse-Amplitude-Modulation (PAM)-fluorometer, and a Dual-PAM gas-exchange Cuvette 3010-Dual. Electrical activity was measured using extracellular electrodes. The parameters of photosynthetic light reactions in protoplasts were measured using the Dual-PAM-100; photosynthesis- and respiration-related changes in O exchange rate were measured using an Oxygraph Plus System. We found that preliminary changes in the activity of H-ATPase in the plasma membrane (its inactivation by sodium orthovanadate or activation by fusicoccin) influenced the amplitudes and magnitudes of VP-induced photosynthetic and respiratory responses in intact seedlings. Decreases in H-ATPase activity (sodium orthovanadate treatment) induced fast decreases in photosynthetic activity and increases in respiration in protoplasts. Thus, our results support the effect of H-ATPase inactivation on VP-induced photosynthetic and respiratory responses.
局部损伤(如灼烧、加热或挤压)会导致变异电位(VP)的产生和传播,变异电位是高等植物中一种独特的电信号。变异电位会影响众多生理过程,光合作用和呼吸作用是重要的作用对象。变异电位的产生基于质膜中H-ATP酶的瞬时失活。在本研究中,我们调查了这种失活在变异电位诱导的光合和呼吸反应发展过程中的作用。我们研究了两到三周龄的豌豆幼苗(L.)及其原生质体。使用GFS-3000气体分析仪、双调制叶绿素荧光仪(Dual-PAM-100)和双调制气体交换比色皿3010-Dual测量完整幼苗的光合作用和呼吸作用。使用细胞外电极测量电活动。使用双调制叶绿素荧光仪(Dual-PAM-100)测量原生质体光合光反应的参数;使用氧电极系统(Oxygraph Plus System)测量光合作用和呼吸作用相关的氧交换率变化。我们发现,质膜中H-ATP酶活性的初步变化(通过原钒酸钠使其失活或通过壳梭孢菌素使其激活)会影响完整幼苗中变异电位诱导的光合和呼吸反应的幅度和大小。H-ATP酶活性的降低(原钒酸钠处理)会导致光合活性快速下降,并使原生质体中的呼吸作用增强。因此,我们的结果支持了H-ATP酶失活对变异电位诱导的光合和呼吸反应的影响。