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钒在棕褐小球藻和高等植物光合作用中的作用

Vanadium in photosynthesis of Chlorella fusca and higher plants.

作者信息

Meisch H U, Becker L J

出版信息

Biochim Biophys Acta. 1981 Jun 12;636(1):119-25. doi: 10.1016/0005-2728(81)90083-9.

Abstract

The influence of vanadium compounds (vanadate, vanadyl citrate) on photosynthesis in Chlorella fusca and in algal and spinach chloroplasts has been investigated. It was found that: 1. At moderately high concentrations (at least 0.1 mM) both vanadate and vanadyl citrate enhance photosynthetic O2 production in intact C. fusca cells. At lower V concentration (about 2 microM) only vanadate stimulates photosynthesis. The increase is dependent on culture conditions and on light intensity. 2. Up to 1 mM V, neither vanadium compound influences PS II activity, either in intact cells or in algal or spinach chloroplasts. 3. The PS I reaction in algal and spinach chloroplasts is maximally enhanced (3-fold) in presence of vanadium (20 microM). The increase is independent of light intensity. 4. Cr(VI), Mo(VI), and W(VI) (1 mM) stimulate photosynthesis in intact C. fusca cells, but do not influence the photosystems of isolated chloroplasts. Vanadium is suggested to act as a redox catalyst in the electron transport from PS II to PS I.

摘要

研究了钒化合物(钒酸盐、柠檬酸氧钒)对褐球藻以及藻类和菠菜叶绿体光合作用的影响。结果发现:1. 在中等高浓度(至少0.1 mM)时,钒酸盐和柠檬酸氧钒均可增强完整褐球藻细胞的光合产氧。在较低钒浓度(约2 microM)时,只有钒酸盐能刺激光合作用。这种增加取决于培养条件和光照强度。2. 高达1 mM的钒,两种钒化合物对完整细胞、藻类或菠菜叶绿体中的PS II活性均无影响。3. 在钒(20 microM)存在下,藻类和菠菜叶绿体中的PS I反应得到最大增强(3倍)。这种增加与光照强度无关。4. Cr(VI)、Mo(VI)和W(VI)(1 mM)可刺激完整褐球藻细胞的光合作用,但不影响分离叶绿体的光合系统。钒被认为在从PS II到PS I的电子传递中起氧化还原催化剂的作用。

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