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Salt Requirement for Crassulacean Acid Metabolism in the Annual Succulent Mesembryanthemum crystallinum

机译:一年生肉质结晶膜中的岩腊酸代谢所需的盐

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摘要

In experiments with the facultative Crassulacean acid metabolism (CAM) species, Mesembryanthemum crystallinum, only plants which received high levels of inorganic salts fixed substantial amounts of CO2 by the CAM pathway. Equivalent osmolarities of polyethylene glycol 6000 did not yield any CAM fixation. Plant water potential and turgor pressure had no detectable influence on the amount of CAM fixation. These observations rule out the possibility that the inorganic ions were acting as osmotic agents.Carbon dioxide and water exchange analysis showed that when water supply was not limiting, salt-deprived plants sustained higher reductive pentose phosphate cycle carbon fixation rates than salt-treated plants. Under water stress conditions, salt-deprived plants using only the reductive pentose phosphate cycle pathway assimilated less carbon and were less efficient in their water use than salt-treated plants using predominately the CAM pathway. These results support the hypothesis that the ability to use the CAM pathway reduces the capacity for reductive pentose phosphate cycle fixation but permits higher productivity in water-limited environments.
机译:在兼收型十字绣果酸代谢(CAM)物种(Mesembryanthemum crystallinum)的实验中,只有接受高水平无机盐的植物才能通过CAM途径固定大量的CO2。聚乙二醇6000的当量摩尔渗透压浓度没有产生任何CAM固定。植物水势和膨胀压力对CAM固定量没有可检测的影响。这些观察结果排除了无机离子作为渗透剂的可能性。二氧化碳和水交换分析表明,当供水不受限制时,缺盐植物比盐处理植物具有更高的还原性戊糖磷酸循环碳固定率。在水分胁迫条件下,仅使用还原性戊糖磷酸循环途径的缺盐植物与主要使用CAM途径的盐处理植物相比,吸收的碳更少,水分利用效率也更低。这些结果支持以下假设:使用CAM途径的能力降低了还原性戊糖磷酸循环固定的能力,但在水受限的环境中允许更高的生产率。

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