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  5. Evolutionary history of CAM photosynthesis in Neotropical Clusia : insights from genomics, anatomy, physiology and climate.

Evolutionary history of CAM photosynthesis in Neotropical Clusia : insights from genomics, anatomy, physiology and climate.

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Resource type
Journal article
Creator (person)
Luján, Manuel
ORCIDORCID logo
Oleas, Nora H.
ORCIDORCID logo
Winter, Klaus
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Date published
December 4, 2021
Abstract
Clusia is a remarkable genus of Neotropical woody plants as its members engage in either C3 photosynthesis or employ, to varying degrees, crassulacean acid metabolism (CAM) photosynthesis. Information about the evolutionary history of CAM in Clusia is scarce. Restriction site-associated sequencing of 64 species (20% of the genus) provided strong support for most of the previously recognized nine lineages. Ancestral reconstruction using maximum parsimony or maximum likelihood under a one-rate model suggested that CAM evolved at least four times independently from a most recent common ancestor (MRCA) with C3, whereas a maximum likelihood two-rate model suggested that CAM was already present in the MRCA followed by reversions to C3 in several lineages. Phylogenetic generalized least square analysis assessed variation in seven leaf anatomical traits and CAM activity measured as δ 13C. Results indicate that CAM is highly correlated with palisade mesophyll layer thickness and cell size. In addition, correlation between 19 bioclimatic variables and δ 13C was evaluated. It was found that CAM is positively correlated with habitats with a more severe dry season and greater precipitation seasonality. Since CAM is weakly and/or only periodically expressed in many Clusia spp., and thus not readily reflected in δ 13C, future analysis of phylogenetically-informed CAM expression in Clusia must include physiological measurements such as CO2 exchange and/or diel changes in leaf acidity for each species under investigation.
Funder
Funder nameAwards
National Science Foundation, United States
1355138 - 1354963 - Doctoral Dissertation Improvement Grant number 1702085
Smithsonian Tropical Research Institute, United States
Short-term Fellowship
Garden Club of America, United States
Award in Tropical Botany
Journal title
Botanical Journal of the Linnean Society
Article number
boab075
Publisher
Oxford University Press (OUP)
Place of publication
Oxford, UK
ISSN
0024-4074
eISSN
1095-8339
Date accepted
September 30, 2021
Official URL
https://academic.oup.com/botlinnean/advance-article/doi/10.1093/botlinnean/boab075/6449315
Related URL
https://doi.org/10.1093/botlinnean/boab075
Rights statement
In Copyright
DOI
10.1093/botlinnean/boab075
Keywords
Biochemistry
Phylogenetics
Evolution
Systematics
Anatomy
Morphology
Photosynthesis
Character reconstruction,
Neotropics
Character analysis
Leaf
Geography
Genetics
Molecular phylogenetic analysis
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