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Fractionation of the thylakoid membrane from Dunaliella salina – heterogeneity is found in Photosystem I over a broad range of growth irradiance

机译:来自Dunaliella salina的类囊体膜的分馏 - 异质性在光系统I中在广泛的生长辐照度中发现

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摘要

Thylakoids from the green alga, Dunaliella salina, were fragmented by sonication and the appressed grasna membranes separated from stroma lamellae by partitioning in aqueous two-phase systems. The concentration and antenna size of Photosystem I in the two membrane domains were determined for cultures grown at three different light intensities. Although the antenna size of both PS is decreased with increasing growth irradiance, the antenna size of Photosystem I in the grana was approximately 25-30% greater than the antenna size of Photosystem I in the stroma lamellae. Counter-current distribution analysis of sonicated thylakoids revealed that the amount of stroma lamellae increased whereas the amount of the stacked membranes decreased at higher growth irradiance. The overall decrease in the antenna size of PS I, in D. salina, at higher light intensities can therefore be explained by the combined effect of a decrease in the antenna size of Photosystem I, both in the grana and the stroma lamellae, and a relative increase in the amount of stroma lamellae which has smaller Photosystem I antennae than the Photosystem I centers found in the grana. Light-induced protein phosphorylation increased the relative amount of the stroma lamella fraction. This is interpreted as a result of partial unstacking of the grana. It is suggested that this may be a mechanism for increasing the cyclic electron transport around Photosystem I.
机译:通过超声破碎来自绿藻类杜氏藻的类囊体,并通过在水相两相系统中分配,将分离的格拉斯纳膜与基质层分离。对于在三种不同光强度下生长的培养物,确定了两个膜域中光系统I的浓度和天线尺寸。尽管两种PS的天线尺寸都随着生长辐照度的增加而减小,但在晶状体中Photosystem I的天线尺寸比基质基质中Photosystem I的天线尺寸大约大25-30%。超声处理的类囊体的逆流分布分析表明,在较高的生长辐照度下,基质层的数量增加,而堆叠膜的数量减少。因此,D。salina在较高光强度下PS I天线尺寸的总体减小,可以通过减小格拉娜和基质层中Photosystem I的天线尺寸以及相较于在谷物中发现的光系统I中心,具有较小的光系统I触角的基质层数量相对增加。光诱导的蛋白质磷酸化增加了基质层部分的相对量。这被解释为是部分散堆的谷物。建议这可能是增加光电子系统I周围循环电子传输的一种机制。

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