Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Replicated Data for: Nitrogen and potassium limit fine root growth in a humid Afrotropical forest

Domaine:

agricultureenvironment and energy

Type de record:

dataset
Créateur:
ManVan
Éditeur:
Man
Éditeur:
GRO
Hôte:avatar
This data on fine root growth response to nutrient additions was collected as part of the RELIANCE project in Uganda involving an ecosystem-scale full factorial nutrient (N, P, K) manipulation experiment. We established 32 (eight treatments (control, N, P, K, NP, NK, PK, NPK) × four replicates) 40 × 40 m plots, and nutrients were added at 125 kg N ha−1year−1, 50 kg P ha−1year−1 and 50 kg K ha−1year−1. The dataset includes fine root biomass, fine root production, and fine root turnover rate. Abstract: Nutrient limitations play a key regulatory role in plant growth, thereby affecting ecosystem productivity and carbon uptake. Experimental observations identifying the most limiting nutrients are lacking, particularly in Afrotropical forests. We conducted an ecosystem-scale, full factorial nitrogen (N)-phosphorus (P)-potassium (K) addition experiment consisting 32 40 × 40 m plots (eight treatments × four replicates) in Uganda to investigate which (if any) nutrient limits fine root growth. After two years of observations, added N rapidly decreased fine root biomass by up to 36% in the first and second years of the experiment. Added K decreased fine root biomass by 27% and fine root production by 30% in the second year. These rapid reductions in fine root growth highlight a scaled-back carbon investment in the costly maintenance of large fine root network as N and K limitations become alleviated. No fine root growth response to P addition was observed. Fine root turnover rate was not significantly affected by nutrient additions but tended to be higher in N added than non-N added treatments. These results suggest that N and K availability may restrict the ecosystem’s capacity for CO2 assimilation, with implications for ecosystem productivity and resilience to climate change.

Visit

doi.orgdata.goettingen-research-online.de

Tags

Earth and Environmental SciencesFine root growthNutrient limitationTropical forest

Licenses

info:eu-repo/semantics/openAccessCreative Commons Zero v1.0 Universalhttps://creativecommons.org/publicdomain/zero/1.0/legalcode

Similaires

Fine-root traits in tropical old-growth and logged-over forestsFine Root Dynamics in Afromontane Forest and Adjacent Land Uses in the Northwest Ethiopian HighlandsData for "Intra-seasonal rainfall patterns and extremes drive maize productivity and nitrogen use in sub-humid Zimbabwe"Estimation of Soil Nitrogen, Phosphorous and Potassium Using IoT Based SensorReplication Data for: Response of tropical forest productivity to seasonal drought mediated by potassium and phosphorus availabilityData from: Cooperative breeding shapes post-fledging survival in an Afrotropical forest bird

Fine-root traits in tropical old-growth and logged-over forests

This data file contains mean fine-root (< 2 mm in diameter) biomass, architectural and morphologi

Fine Root Dynamics in Afromontane Forest and Adjacent Land Uses in the Northwest Ethiopian Highlands

Fine roots are a major pathway of C input into soils. The aim of this study was to quantify fine roo

Data for "Intra-seasonal rainfall patterns and extremes drive maize productivity and nitrogen use in sub-humid Zimbabwe"

These are the raw data of the paper "Intra-seasonal rainfall patterns and extremes drive maize produ

Estimation of Soil Nitrogen, Phosphorous and Potassium Using IoT Based Sensor

This study developed a sensor system to measure soil Nitrogen (N), Phosphorus (P), and Potassium (K)

Replication Data for: Response of tropical forest productivity to seasonal drought mediated by potassium and phosphorus availability

Abstract: Tropical forest productivity situated on highly weathered soils is increasingly reported t

Data from: Cooperative breeding shapes post-fledging survival in an Afrotropical forest bird

While avian group living typically accrues multiple benefits, it is yet unknown how these benefits