Reproductive and leaf litterfall fluxes in forest ecosystem sites globally (1950-2022)

dc.contributor.authorRachel Ward
dc.contributor.authorH. Zhang
dc.contributor.authorKatharine Abernethy
dc.contributor.authorAdu-Bredu Stephen
dc.contributor.authorLuzmilla Arroyo
dc.contributor.authorAndrew Bailey
dc.contributor.authorJos Barlow
dc.contributor.authorÉrika Berenguer
dc.contributor.authorLiana Chesini Rossi
dc.contributor.authorPercival Cho
dc.coverage.spatialBolivia
dc.date.accessioned2026-03-22T20:57:28Z
dc.date.available2026-03-22T20:57:28Z
dc.date.issued2025
dc.description.abstractForest allocation of net primary productivity (NPP) to reproduction is poorly quantified globally, despite its critical role in forest regeneration and a well-supported trade-off with allocation to growth. Although field measurements of total NPP are rare, our work finds that a proxy for reproductive carbon allocation constructed from leaf (L) and reproductive (R) litterfall fluxes, R/(R+L), is strongly correlated with R/NPP, facilitating analysis across a wide range of sites where biometric estimates of NPP are not available (R² = 0.85; Hanbury-Brown et al., 2022, Ward et al., in prep). To investigate relationships between ecosystem-scale reproductive allocation (RA) and climate, soil fertility, and stand age gradients, we conducted a literature search and synthesized 824 observations of annual average leaf and reproductive litterfall fluxes across forest sites globally. The zip file includes 1) a folder Data/ containing the litterfall data ("GlobalForestRA_data.csv") and metadata ("GlobalForestRA_metadata.doc") files. The data file includes geographic coordinates, long-term mean annual temperature and precipitation (1970-2000, extracted from WorldClim2.1), leaf and reproductive litterfall fluxes, sampling interval and protocols, forest characteristics (dominant leaf morphology, information pertaining to forest age and successional stage, and disturbance history) and soil properties (% sand, %silt, %clay, total phosphorus (P), nitrogen (N), cation exchange capacity (CEC) and pH) extracted from SoilGrids250 and from on-site measurements, where available. The metadata file contains information about each variable reported in the data file, including data sources, processing methods, and all references. The Data folder contains two additional files used to create Figure 1; these are described in greater detail in the README.2) R scripts GloalForestRA_analysis.r and GlobalForestRA_SI.r and a folder /Functions used to produce results, figures, and tables in the manuscript Ward et al. (in press)3) a README file describing how the data and R scripts can be used to reproduce statistical results, figures, and tables found in the manuscript. Ward et al. (in press)This repository can also be found at: https://github.com/r-ward/Global_Analysis_ForestRA.Ward, R.E., Zhang-Zheng, H. Aernethy, K., Adu-Bredu, S., Arroyo, L., Bailey, A. et al. (in press). Forest age rivals climate to explain reproductive allocation patterns in forest ecosystems globally. Ecology Letters. Hanbury-Brown, A.R., Ward, R.E. & Kueppers, L.M. (2022). Forest regeneration within Earth system models: current process representations and ways forward. New Phytol., 235, 20–40.Ward et al. (2025), Forest age rivals climate to explain reproductive allocation patterns in forest ecosystems globally, in prep.
dc.identifier.doi10.15485/2523672
dc.identifier.urihttps://doi.org/10.15485/2523672
dc.identifier.urihttps://andeanlibrary.org/handle/123456789/85079
dc.language.isoen
dc.sourceUniversity of California, Berkeley
dc.subjectPlant litter
dc.subjectEnvironmental science
dc.subjectPrimary production
dc.subjectMetadata
dc.subjectEcology
dc.subjectEcosystem
dc.subjectEcosystem services
dc.subjectForest ecology
dc.subjectForest inventory
dc.subjectBiogeochemical cycle
dc.titleReproductive and leaf litterfall fluxes in forest ecosystem sites globally (1950-2022)
dc.typedataset

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