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具有景天酸代谢的植物中代谢过程的同步化。

Synchronization of metabolic processes in plants with Crassulacean acid metabolism.

作者信息

Borland Anne M, Taybi Tahar

机构信息

Environmental and Molecular Plant Physiology, School of Biology, King George VI Building, University of Newcastle, Newcastle Upon Tyne NE1 7RU, UK.

出版信息

J Exp Bot. 2004 May;55(400):1255-65. doi: 10.1093/jxb/erh105. Epub 2004 Apr 8.

Abstract

In plants with Crassulacean acid metabolism, a diel separation of carboxylation processes mediated by phosphoenolpyruvate carboxylase (PEPC) and Rubisco optimizes photosynthetic performance and carbon gain in potentially limiting environments. This review considers the mechanisms that synchronize the supply and demand for carbon whilst maintaining photosynthetic plasticity over the 24 h CAM cycle. The circadian clock plays a central role in controlling many of the metabolic, transport and physiological components of CAM. The level of control exerted by the clock can range from transcriptional through to post-translational regulation, depending on the genes, proteins, and even plant species under consideration. A further layer of control is provided by metabolites, including organic acids and carbohydrates, which show substantial reciprocal fluctuations in content over the diel cycle. Mechanisms responsible for the sensing of metabolite contents are discussed, together with signalling requirements for the co-ordination of carbon fluxes. Evolutionary implications are considered in terms of how circadian and metabolic control of the CAM cycle may have been derived from C3 plants.

摘要

在具有景天酸代谢的植物中,由磷酸烯醇式丙酮酸羧化酶(PEPC)和核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)介导的羧化过程在昼夜之间分离,可在潜在的受限环境中优化光合性能和碳获取。本综述探讨了在24小时景天酸代谢循环中,使碳的供需同步,同时维持光合可塑性的机制。生物钟在控制景天酸代谢的许多代谢、运输和生理成分方面起着核心作用。根据所考虑的基因、蛋白质甚至植物物种,生物钟施加的控制水平可以从转录调控到翻译后调控。包括有机酸和碳水化合物在内的代谢物提供了另一层控制,它们在昼夜循环中的含量呈现出显著的相互波动。文中讨论了负责感知代谢物含量的机制,以及协调碳通量的信号要求。从景天酸代谢循环的昼夜节律和代谢控制可能如何从C3植物衍生而来的角度,探讨了其进化意义。

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