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组成型和兼性 CAM 光合作用的生理生态学。

Ecophysiology of constitutive and facultative CAM photosynthesis.

机构信息

Smithsonian Tropical Research Institute, Balboa, Ancón, Republic of Panama.

出版信息

J Exp Bot. 2019 Nov 29;70(22):6495-6508. doi: 10.1093/jxb/erz002.

Abstract

In plants exhibiting crassulacean acid metabolism (CAM), CAM photosynthesis almost always occurs together with C3 photosynthesis, and occasionally with C4 photosynthesis. Depending on species, ontogeny, and environment, CAM input to total carbon gain can vary from values of <1% to 100%. The wide range of CAM phenotypes between and within species is a fascinating example of functional diversity and plasticity, but poses a significant challenge when attempting to define CAM. CO2 gas exchange experiments designed for this review illustrate key patterns of CAM expression and highlight distinguishing features of constitutive and facultative CAM. Furthermore, they help to address frequently recurring questions on CAM terminology. The functional and evolutionary significance of contrasting CAM phenotypes and of intermediate states between extremes is discussed. Results from a study on nocturnal malate accumulation in 50 species of Aizoaceae exposed to drought and salinity stress suggest that facultative CAM is more widespread amongst vascular plants than previously thought.

摘要

在表现景天酸代谢(CAM)的植物中,CAM 光合作用几乎总是与 C3 光合作用同时发生,偶尔也与 C4 光合作用同时发生。根据物种、个体发育和环境的不同,CAM 对总碳获取的输入量可以从<1%到 100%不等。在物种之间和内部,CAM 表型的广泛范围是功能多样性和可塑性的一个迷人例子,但在试图定义 CAM 时,这是一个重大挑战。本综述中设计的 CO2 气体交换实验说明了 CAM 表达的关键模式,并突出了组成型和兼性 CAM 的区别特征。此外,它们有助于解决关于 CAM 术语的常见问题。讨论了不同 CAM 表型和极端之间中间状态的功能和进化意义。对干旱和盐胁迫下 50 种番杏科植物夜间苹果酸积累的研究结果表明,与以前的想法相比,兼性 CAM 在维管植物中的分布更为广泛。

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