Forest-savanna boundaries extend across large parts of the tropics but the variability of photosynthetic capacity in relation to soil and foliar nutrients across these transition zones is poorly understood. For this reason, we compared photosynthetic capacity (maximum rate of carboxylation of Rubisco at 25 C° (Vcmax25), leaf mass, nitrogen (N), phosphorus (P) and potassium (K) per unit leaf area (LMA, Narea, Parea and Karea, respectively), in relation to respective soil nutrients from 89 species at seven sites along forest-savanna ecotones in Ghana and Brazil. Contrary to our expectations, edaphic conditions were not reflected in foliar nutrient concentrations but LMA was slightly higher in lower fertility soils. Overall, each vegetation type within the ecotones demonstrated idiosyncratic and generally weak relationships between Vcmax25 and Narea, Parea and Karea. Species varied significantly in their Vcmax25 ↔ Narea relationship due to reduced investment of total Narea in photosynthetic machinery with increasing LMA. We suggest that studied species in the forest-savanna ecotones do not maximize Vcmax25 per given total Narea due to adaptation to intermittent water availability. Our findings have implications for global modeling of Vcmax25 and forest-savanna ecotone productivity.
Leaf-level photosynthetic capacity dynamics in relation to soil and foliar nutrients along forest–savanna boundaries in Ghana and Brazil
Agne Gvozdevaite,I. Oliveras,T. Domingues,T. Peprah,Mickey Boakye,Lydia Afriyie,Karine da Silva Peixoto,Josenilton de Farias,Edmar Almeida de Oliveira,Cassia Cristina Almeida Farias,N. C. C. dos Santos Prestes,Margot Neyret,S. Moore,Beatriz Schwantes Marimon,Ben Hur Marimon Junior,S. Adu‐Bredu,Y. Malhi
Published 2018 in Tree Physiology
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- Publication year
2018
- Venue
Tree Physiology
- Publication date
2018-11-02
- Fields of study
Biology, Medicine, Environmental Science
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Semantic Scholar, PubMed
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