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Intracellular transport and pathways of carbon flow in plants with crassulacean acid metabolism.

机译:十字花科动物的新陈代谢导致植物胞内运输和碳流途径。

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The massive daily reciprocal transfer of carbon between acids and carbohydrates that is unique to crassulacean acid metabolism (CAM) involves extensive and regulated transport of metabolites between chloroplasts, vacuoles, the cytosol and mitochondria. In this review of the CAM pathways of carbon flow and intracellular transport, we highlight what is known and what has been postulated. For three of the four CAM pathway variants currently known (malic enzyme- or PEP carboxykinase-type decarboxylase, and starch- or soluble sugar-type carbohydrate storage), the mechanisms of intracellular transport are still hypothetical and have yet to be demonstrated experimentally. Even in malic enzyme starch-storing species such as Kalanchoe daigremontiana Hamet et Perr. and Mesembryanthemum crystallinum L., the best-described variants of plants with the second-most common mode of photosynthetic carbon metabolism known, no tonoplast or mitochondrial transporter has been functionally described at a molecular level..
机译:每天的大量碳在酸和碳水化合物之间的相互往来转移是景天树素酸代谢(CAM)所特有的,涉及叶绿体,液泡,细胞质和线粒体之间代谢产物的广泛且受调节的运输。在对碳流量和细胞内运输的CAM途径的综述中,我们重点介绍了已知的和假定的内容。对于目前已知的四个CAM途径变体中的三个(苹果酸酶或PEP羧激酶型脱羧酶,以及淀粉或可溶性糖型碳水化合物贮藏),细胞内转运的机制仍是假设性的,尚未通过实验证明。即使在苹果酸酶中,淀粉储存物种,例如Kalanchoe daigremontiana Hamet等,也存在于Perr中。和Mesembryanthemum crystallinum L.,具有光合作用碳代谢的第二最常见模式的植物的最被描述的变体,在分子水平上尚未描述液泡膜或线粒体转运蛋白。

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