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Decrease of Nitrate Reductase Activity in Spinach Leaves during a Light-Dark Transition

机译:光-暗过渡过程中菠菜叶片硝酸还原酶活性的降低

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摘要

In leaves of spinach plants (Spinacia oleracea L.) performing CO2 and NO3 assimilation, at the time of sudden darkening, which eliminates photosystem I-dependent nitrite reduction, only a minor temporary increase of the leaf nitrite content is observed. Because nitrate reduction does not depend on redox equivalents generated by photosystem I activity, a continuation of nitrate reduction after darkening would result in a large accumulation of nitrite in the leaves within a very short time, which is not observed. Measurements of the extractable nitrate reductase activity from spinach leaves assayed under standard conditions showed that in these leaves the nitrate reductase activity decreased during darkening to 15% of the control value with a half-time of only 2 minutes. Apparently, in these leaves nitrate reductase is very rapidly inactivated at sudden darkness avoiding an accumulation of the toxic nitrite in the cells.
机译:在菠菜植物(Spinacia oleracea L.)的叶片中,在突然变黑时进行CO2和NO3 -同化作用,这消除了光系统依赖I的亚硝酸盐还原,仅使叶片亚硝酸盐暂时增加内容被观察到。因为硝酸盐的还原不依赖于光系统I活性产生的氧化还原当量,所以变黑后硝酸盐还原的持续进行将导致在很短的时间内在叶片中大量亚硝酸盐积累,这是没有观察到的。在标准条件下测定的菠菜叶中可提取的硝酸还原酶活性的测量结果表明,在这些叶片中,硝酸盐还原酶活性在变黑期间降低至对照值的15%,而半衰期仅为2分钟。显然,在这些叶片中,硝酸盐还原酶在突然的黑暗中迅速失活,从而避免了有毒亚硝酸盐在细胞中的积累。

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