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分离的菠菜叶绿体中伴随温度跃升的电场形成

Formation of electrical field accompanying temperature jump in isolated spinach chloroplasts.

作者信息

Shimizu M, Nishimura M

出版信息

Biochim Biophys Acta. 1977 Mar 11;459(3):412-7. doi: 10.1016/0005-2728(77)90042-1.

Abstract

Temperature-jump-induced absorbance changes of spinach chloroplasts in the dark were studied. After the temperature rise, a fast absorbance decrease and a succeeding slow absorbance increase were observed at the wavelength of 515 nm. The spectrum of the fast phase had positive maxima (increase in absorbance) at 430, 470 and 673 nm and a negative maxima (decrease in absorbance) at 525 nm. Permeant ions, tetraphenylboron-, tetraphenylarsonium+, and tetraphenylphosphonium+, decreased the extent of the fast absorbance change and increased the rate of slow recovery. Additions of inorganic potassium salts had a similar effect. Valinomycin, added in the presence of potassium ion, also increased the rate of slow recovery. These ions and ionophore had a parallel effect also on the recovery of flash-induced 515-nm absorbance change in chloroplasts. Electroneutral nigerericin did not affect the temperature-jump-induced absorbanc change. These results suggest the formation of electrical field across the thylakoid membrane in the dark accompanying the temperature rise. A possible involvement of the movement of water molecules (thermo-osmosis) in the observed absorbance changes is also discussed.

摘要

研究了菠菜叶绿体在黑暗中温度跃变引起的吸光度变化。温度升高后,在515 nm波长处观察到吸光度快速下降,随后缓慢上升。快速相的光谱在430、470和673 nm处有正峰(吸光度增加),在525 nm处有负峰(吸光度下降)。渗透性离子、四苯基硼、四苯基砷离子和四苯基磷离子降低了快速吸光度变化的程度,并提高了缓慢恢复的速率。添加无机钾盐也有类似的效果。在钾离子存在下添加缬氨霉素也提高了缓慢恢复的速率。这些离子和离子载体对叶绿体中闪光诱导的515 nm吸光度变化的恢复也有类似的作用。电中性的尼日利亚菌素不影响温度跃变引起的吸光度变化。这些结果表明,在黑暗中伴随着温度升高,类囊体膜上形成了电场。还讨论了水分子运动(热渗透)可能参与观察到的吸光度变化。

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