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BASF 13.338 处理的小麦幼苗类囊体中结构和功能的阳离子调节变化。

Changes in the Cationic Regulation of Structure and Function in Thylakoids Isolated from Wheat Seedlings Treated with BASF 13.338.

机构信息

School of Biological Sciences, Madurai Kamaraj University, Madurai 625021, India.

出版信息

Plant Physiol. 1987 Sep;85(1):17-9. doi: 10.1104/pp.85.1.17.

Abstract

When wheat seedlings (Triticum vulgare cf HD 2189) were grown in the presence of BASF 13.338 (4-chloro-5-[dimethylamino]-2-phenyl-3[2H]-pyridazinone), there was a decrease in the ratio of linolenic acid to linoleic acid in the thylakoid membrane lipids (JB St John 1976 Plant Physiol 57: 38) and an increase in the ratio of photosystem II to photosystem I (RM Mannan, S Bose 1984 Photochem Photobiol 41: 63). Accompanying these gross structural changes were alterations in the cationic regulation of structure and functioning of the thylakoid membranes: (a) Mg(2+)-induced increase in the room temperature fluorescence was totally absent; (b) Mg(2+)-induced increase in absorbance at 560 nm, indicative of granal stacking, was slightly higher in thylakoids isolated from the BASF 13.338 treated plants suggesting an increased degree of stacking; and (c) absorption changes in the red and Soret regions of the absorption spectrum, normally resulting from the addition of divalent cation or alkyl anion, or from osmotic shrinkage were almost totally absent in thylakoid membranes isolated from BASF 13.338 treated plants. These observations have been interpreted in terms of: (a) significant alterations in the lipid matrix of the thylakoids from treated plants, (b) absence of cation-induced reorganization of the pigment-protein complexes in the horizontal plane of the treated thylakoid membranes suspended in low salt medium, and (c) absence of dynamic changes even within the individual pigment-protein complexes of treated thylakoids.

摘要

当 BASF 13.338(4-氯-5-[二甲基氨基]-2-苯基-3[2H]-哒嗪酮)存在于小麦幼苗(Triticum vulgare cf HD 2189)生长环境中时,类囊体膜脂质中亚麻酸与亚油酸的比例降低(JB St John 1976 Plant Physiol 57: 38),并且光系统 II 与光系统 I 的比例增加(RM Mannan,S Bose 1984 Photochem Photobiol 41: 63)。这些宏观结构变化伴随着类囊体膜结构和功能的阳离子调节变化:(a)Mg(2+)诱导的室温荧光增加完全缺失;(b)Mg(2+)诱导的 560nm 处吸光度增加,表明粒层堆叠稍高,这表明 BASF 13.338 处理植物的类囊体中堆叠程度增加;(c)吸收光谱的红区和 Soret 区的吸收变化,通常是由于二价阳离子或烷基阴离子的添加,或由于渗透压收缩而产生,在 BASF 13.338 处理植物的类囊体中几乎完全缺失。这些观察结果可以从以下几个方面来解释:(a)处理植物的类囊体脂质基质发生了重大变化;(b)在低盐介质中悬浮的处理类囊体膜中,在水平面上,由于阳离子诱导的色素-蛋白复合物的重新排列不存在;(c)甚至在处理类囊体的单个色素-蛋白复合物内,也不存在动态变化。

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