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首页> 外文期刊>Physiologia plantarum >Regulation of leaf photosynthetic rate correlating with leaf carbohydrate status and activation state of Rubisco under a variety of photosynthetic source/sink balances
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Regulation of leaf photosynthetic rate correlating with leaf carbohydrate status and activation state of Rubisco under a variety of photosynthetic source/sink balances

机译:在多种光合源/库平衡下,叶片光合速率与叶片糖状态和Rubisco活化状态相关的调控

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There is evidence suggesting that in plants changes in the photosynthetic source/sink balance are an important factor that regulates leaf photosynthetic rate through affects on the leaf carbohydrate status. However, to resolve the regulatory mechanism of leaf photosynthetic rate associated with photosynthetic source/sink balance, information, particularly on mutual relationships of experimental data that are linked with a variety of photosynthetic source/sink balances, seems to be still limited. Thus, a variety of manipulations altering the plant source/sink ratio were carried out with soybean plants, and the mutual relationships of various characteristics such as leaf photosynthetic rate, carbohydrate content and the source/sink ratio were analyzed in manipulated and non-manipulated control plants. The manipulations were removal of one-half or all pods, removal of one-third or two-third leaves, and shading of one-third or one-half leaves with soybean plants grown for 8 weeks under 10 h light (24pC) and 14 h darkness (17pC). It was shown that there were significant negative correlations between source/sink ratio (dry weight ratio of attached leaves to other all organs) and leaf photosynthetic rate; source/sink ratio and activation ratio (percentage of initial activity to total activity) of Rubisco in leaf extract; leaf carbohydrate (sucrose or starch) content and photosynthetic rate; carbohydrate (sucrose or starch) content and activation ratio of Rubisco; amount of protein-bound ribulose-1,5-bisphosphate (RuBP) in leaf extract and leaf photosynthetic rate; and the amount of protein-bound RuBP and activation ratio of Rubisco. In addition, there were significant positive correlations between source/sink ratio and leaf carbohydrate (sucrose or starch) content; source/sink ratio and the amount of protein-bound RuBP; carbohydrate (sucrose or starch) content and amount of protein-bound RuBP and the activation ratio of Rubisco and leaf photosynthetic rate. The plant water content, leaf chlorophyll and Rubisco contents were not affected significantly by the manipulations. There is a previous report in Arabidopsis thaliana that the amount of protein-bound RuBP in leaf extract correlates negatively with the activation ratio of Rubisco in the leaf extract. Therefore, the results obtained from the manipulation experiments indicate that there is a regulatory mechanism for the leaf photosynthetic rate that correlates negatively with leaf carbohydrate (sucrose and starch) status and positively with the activation state of Rubisco under a variety of photosynthetic source/sink balances.
机译:有证据表明,植物中光合源/库平衡的变化是通过影响叶片碳水化合物状态来调节叶片光合速率的重要因素。然而,为了解决与光合源/库平衡相关的叶片光合速率调节机制,信息,特别是与各种光合源/库平衡相关的实验数据相互关系的信息似乎仍然有限。因此,对大豆植株进行了多种改变植物源/库比的操作,并分析了在非对照条件下叶片光合速率,碳水化合物含量和源/库比等各种特性的相互关系。植物。操作是用在10 h光照(24pC)和14下生长8周的大豆植物去除一半或全部豆荚,去除三分之一或三分之一的叶子以及遮蔽三分之一或一半的叶子的阴影h黑暗(17pC)。结果表明,源/库比(附着叶片与其他所有器官的干重比)与叶片光合速率之间存在显着的负相关。叶提取物中Rubisco的来源/吸收比和活化比(初始活性相对于总活性的百分比);叶片碳水化合物(蔗糖或淀粉)的含量和光合速率; Rubisco的碳水化合物(蔗糖或淀粉)含量和活化率;叶片提取物中结合蛋白的1,5-双磷酸核糖(RuBP)的量和叶片的光合速率;蛋白质结合RuBP的量和Rubisco的活化率。此外,源/汇比与叶片碳水化合物(蔗糖或淀粉)含量之间存在显着的正相关关系。源/库比和蛋白质结合的RuBP量;碳水化合物(蔗糖或淀粉)的含量和与蛋白质结合的RuBP的量以及Rubisco的活化率和叶片的光合速率。操作不会显着影响植物的水分,叶绿素和Rubisco含量。拟南芥中有以前的报道,叶提取物中蛋白质结合的RuBP的量与叶提取物中Rubisco的活化率负相关。因此,从操纵实验获得的结果表明,在多种光合源/库平衡下,叶片光合作用的调节机制与叶片碳水化合物(蔗糖和淀粉)的状态呈负相关,与Rubisco的活化状态呈正相关。 。

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