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过氧化反应减弱了氧气对分离叶绿体光谱特性的影响。

Peroxidative reactions attenuate oxygen effect on spectroscopic properties of isolated chloroplasts.

作者信息

Garstka M, Jagielski A

机构信息

Department of Metabolism Regulation, Institute of Biochemistry, Faculty of Biology, Warsaw University, Miecznikowa 1, PL-02-096, Warsaw, Poland.

出版信息

J Photochem Photobiol B. 2001 Nov 1;64(1):82-92. doi: 10.1016/s1011-1344(01)00223-8.

Abstract

Steady-state absorption and fluorescence excitation spectra have been measured at 25 degrees C in order to elucidate the differences between isolated chloroplasts from pea (chilling-sensitive plant) and bean (chilling-tolerant plant) and their response to oxygen treatment. A weaker light harvesting in bean in comparison with pea chloroplasts is related to higher free fatty acids level and extended peroxidation activities of bean chloroplasts. Peroxidation of free fatty acids in bean chloroplasts results in an accumulation of oxygenated forms of fatty acids demonstrated by a large negative band around 400 nm in absorption difference spectra, while the excitation spectra are not significantly altered. Similar changes have been observed in the lipase-treated pea chloroplasts. In contrast, in both pea and bean chloroplasts exhibiting no peroxidation due to antimycin A treatment, oxygen induces a pronounced absorbance increase in the regions around 435, 470 and 674 nm indicating the chloroplast swelling. A decline of chlorophyll fluorescence excitation caused by oxygen, may result from a decrease in energy transfer from antennae complexes to chlorophyll species emitting at both 680 and 740 nm. The oxygen-induced changes are partially reversed upon restoration of anaerobic conditions. The presented data show for the first time, that in contrast to pea chloroplasts the peroxidation abolishes an oxygen-induced decrease in light harvesting in bean chloroplasts, i.e., a chilling-sensitive plant.

摘要

为了阐明来自豌豆(冷敏感植物)和菜豆(冷耐受植物)的离体叶绿体之间的差异及其对氧气处理的响应,在25℃下测量了稳态吸收光谱和荧光激发光谱。与豌豆叶绿体相比,菜豆中较弱的光捕获与菜豆叶绿体中较高的游离脂肪酸水平和延长的过氧化活性有关。菜豆叶绿体中游离脂肪酸的过氧化导致脂肪酸氧化形式的积累,这在吸收差光谱中400nm左右的一个大的负带中得到证明,而激发光谱没有明显改变。在经脂肪酶处理的豌豆叶绿体中也观察到了类似的变化。相反,在因抗霉素A处理而未发生过氧化的豌豆和菜豆叶绿体中,氧气会导致435、470和674nm左右区域的吸光度明显增加,表明叶绿体肿胀。氧气引起的叶绿素荧光激发的下降,可能是由于从天线复合体到在680和740nm处发射的叶绿素种类的能量转移减少所致。厌氧条件恢复后,氧气诱导的变化会部分逆转。所呈现的数据首次表明,与豌豆叶绿体相反,过氧化消除了氧气诱导的菜豆叶绿体(即冷敏感植物)中光捕获的减少。

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