Trees adjust nutrient acquisition strategies across tropical forest secondary succession.

Sarah A Batterman, Lars O Hedin, S Joseph Wright, Nina Wurzburger, Michelle Y Wong, Jefferson S Hall, Wenguang Tang, Kristin Saltonstall, Michiel van Breugel

Journal: The New phytologist 2024;243(1):132-144

PMID: 38742309

Abstract

Nutrient limitation may constrain the ability of recovering and mature tropical forests to serve as a carbon sink. However, it is unclear to what extent trees can utilize nutrient acquisition strategies - especially root phosphatase enzymes and mycorrhizal symbioses - to overcome low nutrient availability across secondary succession. Using a large-scale, full factorial nitrogen and phosphorus fertilization experiment of 76 plots along a secondary successional gradient in lowland wet tropical forests of Panama, we tested the extent to which root phosphatase enzyme activity and mycorrhizal colonization are flexible, and if investment shifts over succession, reflective of changing nutrient limitation. We also conducted a meta-analysis to test how tropical trees adjust these strategies in response to nutrient additions and across succession. We find that tropical trees are dynamic, adjusting investment in strategies - particularly root phosphatase - in response to changing nutrient conditions through succession. These changes reflect a shift from strong nitrogen to weak phosphorus limitation over succession. Our meta-analysis findings were consistent with our field study; we found more predictable responses of root phosphatase than mycorrhizal colonization to nutrient availability. Our findings suggest that nutrient acquisition strategies respond to nutrient availability and demand in tropical forests, likely critical for alleviating nutrient limitation.

© 2024 The Authors. New Phytologist © 2024 New Phytologist Foundation.

Address: Cary Institute of Ecosystem Studies, Millbrook, NY, 12545, USA.; Department of Ecology and Evolutionary Biology, Yale University, New Haven, CT, 06520, USA.; Odum School of Ecology, University of Georgia, Athens, GA, 30602, USA.; ForestGEO, Smithsonian Tropical Research Institute, Ancón, 0843-03092, Panama, Panama.; Smithsonian Tropical Research Institute, Apartado, 0843-03092, Balboa, Panama.; School of Geography and Priestley International Centre for Climate, University of Leeds, Leeds, LS2, UK.; Department of Ecology and Evolutionary Biology, Princeton University, Princeton, NJ, 08544, USA.; ForestGEO, Smithsonian Tropical Research Institute, Ancón, 0843-03092, Panama, Panama.; Department of Geography, National University of Singapore, Singapore, 119077, Singapore.; Yale-NUS College, Singapore, 138527, Singapore.; Cary Institute of Ecosystem Studies, Millbrook, NY, 12545, USA.; Smithsonian Tropical Research Institute, Apartado, 0843-03092, Balboa, Panama.; School of Geography and Priestley International Centre for Climate, University of Leeds, Leeds, LS2, UK.
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