Unlike C plants, Crassulacean acid metabolism (CAM) plants fix CO in the dark using phosphopyruvate carboxylase (PPC; EC 4.1.1.31). PPC combines phosphopyruvate with CO (as HCO ), forming oxaloacetate. The oxaloacetate is converted to malate, leading to malic acid accumulation in the vacuole, which peaks at dawn. During the light period, malate decarboxylation concentrates CO around Rubisco for secondary fixation. CAM mutants lacking PPC have not been described. Here, we employed RNA interference to silence the CAM isogene in Line lacked transcripts, PPC activity, dark period CO fixation, and nocturnal malate accumulation. Light period stomatal closure was also perturbed, and the plants displayed reduced but detectable dark period stomatal conductance and arrhythmia of the CAM CO fixation circadian rhythm under constant light and temperature free-running conditions. By contrast, the rhythm of delayed fluorescence was enhanced in plants lacking Furthermore, a subset of gene transcripts within the central circadian oscillator was upregulated and oscillated robustly in this line. The regulation of guard cell genes involved in controlling stomatal movements was also perturbed in These findings provide direct evidence that the regulatory patterns of key guard cell signaling genes are linked with the characteristic inverse pattern of stomatal opening and closing during CAM.
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http://dx.doi.org/10.1105/tpc.19.00481 | DOI Listing |
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King Saud Bin Abdulaziz University for Health Sciences (KSAU-HS), College of Medicine, Riyadh, Saudi Arabia.
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National Amyloidosis Centre, Division of Medicine, University College London, Royal Free Hospital, London, United Kingdom.
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Plant Cell Environ
January 2025
College of Bioengineering and Biotechnology, Tianshui Normal University, Tianshui, China.
A key feature of stress responses [closely relative to the phytohormone abscisic acid (ABA)] and associated acclimation in plants is the dynamic adjustments and related optimisation of carbohydrate content between sink and source organs. The production of stomata, which consist of a pore between two adjacent guard cells, are central to plant adaptation to changing environment conditions. In this context, ABA is a core modulator of environmentally determined stomatal development.
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