2021
DOI: 10.1111/nph.17790
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CAM photosynthesis: the acid test

Abstract: There is currently considerable interest in the prospects for bioengineering crassulacean acid metabolism (CAM) photosynthesisor key elements associated with it, such as increased water-use efficiencyinto C 3 plants. Resolving how CAM photosynthesis evolved from the ancestral C 3 pathway could provide valuable insights into the targets for such bioengineering efforts. It has been proposed that the ability to accumulate organic acids at night may be common among C 3 plants, and that the transition to CAM might … Show more

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Cited by 63 publications
(59 citation statements)
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“…CAM plants can be characterized by displaying a nocturnal acidification, a feature not found in C3 plants (Winter and Smith, 2022). In this study we were able to detect different levels of nocturnal leaf acidification in C. longiscapa plants collected from different sites and to associate these differences with the development of an abiotic stress response.…”
Section: Discussionmentioning
confidence: 99%
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“…CAM plants can be characterized by displaying a nocturnal acidification, a feature not found in C3 plants (Winter and Smith, 2022). In this study we were able to detect different levels of nocturnal leaf acidification in C. longiscapa plants collected from different sites and to associate these differences with the development of an abiotic stress response.…”
Section: Discussionmentioning
confidence: 99%
“…A fine temporal and spatial regulation of metabolites and gases flow is required in CAM to avoid futile cycles, to favor the proper metabolites storage and to overcome the obstacles imposed by the succulent CAM plants leaf architecture. However, there are still several transporters that are unknown and are key for a CAM plant operation (Winter and Smith, 2022). Among the many transporters with a differential expression at dawn in S1 plants, we found several clearly related to the CAM metabolism: Dicarboxylate transporter (DiT1) and an aluminum-activated malate transporter (ALMT1) could be involved in the export of malic acid from the vacuole at dawn (Wai et al ., 2019, Ceusters et al ., 2021).…”
Section: Discussionmentioning
confidence: 99%
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