School of Natural and Environmental Sciences, Newcastle University, Newcastle upon Tyne NE1 7RU, UK.
School of Life Sciences, University of Essex, Wivenhoe Park, Colchester CO4 3SQ, UK.
Ann Bot. 2023 Nov 25;132(4):855-867. doi: 10.1093/aob/mcad119.
Crassulacean acid metabolism (CAM) is a metabolic adaptation that has evolved convergently in 38 plant families to aid survival in water-limited niches. Whilst primarily considered a photosynthetic adaptation, CAM also has substantial consequences for nocturnal respiratory metabolism. Here, we outline the history, current state and future of nocturnal respiration research in CAM plants, with a particular focus on the energetics of nocturnal respiratory oxygen consumption. Throughout the 20th century, research interest in nocturnal respiration occurred alongside initial discoveries of CAM, although the energetic and mechanistic implications of nocturnal oxygen consumption and links to the operation of the CAM cycle were not fully understood. Recent flux balance analysis (FBA) models have provided new insights into the role that mitochondria play in the CAM cycle. Several FBA models have predicted that CAM requires elevated nocturnal respiratory rates, compared to C3 species, to power vacuolar malic acid accumulation. We provide physiological data, from the genus Clusia, to corroborate these modelling predictions, thereby reinforcing the importance of elevated nocturnal respiratory rates for CAM. Finally, we outline five unanswered questions pertaining to nocturnal respiration which must be addressed if we are to fully understand and utilize CAM plants in a hotter, drier world.
景天酸代谢(CAM)是一种代谢适应,已经在 38 个植物科中趋同进化,以帮助在水分受限的小生境中生存。虽然 CAM 主要被认为是一种光合作用适应,但它对夜间呼吸代谢也有重大影响。在这里,我们概述了 CAM 植物夜间呼吸研究的历史、现状和未来,特别关注夜间呼吸耗氧量的能量学。在整个 20 世纪,尽管夜间耗氧量与 CAM 循环的运作之间的能量和机制联系尚未完全理解,但夜间呼吸的研究兴趣与 CAM 的最初发现同时发生。最近的通量平衡分析(FBA)模型为线粒体在 CAM 循环中的作用提供了新的见解。几个 FBA 模型预测,与 C3 物种相比,CAM 需要更高的夜间呼吸速率来为液泡苹果酸积累提供动力。我们提供了来自 Clusia 属的生理学数据来证实这些模型预测,从而强调了夜间呼吸速率升高对 CAM 的重要性。最后,我们概述了五个与夜间呼吸有关的未解决的问题,如果我们要在更热、更干燥的世界中充分理解和利用 CAM 植物,就必须解决这些问题。