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Title: Root biomass and traits across four lowland Panamanian forests from 0 - 1.2 m soil depths

Abstract

Fine roots are key to ecosystem-scale nutrient, carbon (C), and water cycling, yet our understanding of fine root traits variation within and among tropical forests, one of Earth’s most C-rich ecosystems, is limited. We characterized root biomass, morphology, nutrient content, and arbuscular mycorrhizal fungal (AMF) colonization in 10 cm increments to 1.2 m depth across four distinct lowland Panamanian forests. The datasets provided include a .xlsx file for fine root characteristics across 10 cm increment depths to 1.2 m collected from late 2017 to 2018 across four different forests. Root characteristics include live fine root biomass, dead fine root biomass, coarse root biomass, specific root length, root diameter, root tissue density, specific root area, arbuscular mycorrhizal fungi colonization, root chemistry (e.g., organic chemistry), root %N, root %C, root C/N ratio, and root radiocarbon content. This .xlsx file contain four tabs with 1) Dataset; 2) Metadata with information about each column in the dataset; 3) The sampling methods summarized; 4) Sites information. We also provided csv files for each of these tabs. Additionally, a .kml file is provided with coordinates for all 32 plots included in the study across four forests (n = 8 plots per site/forest). This dataset serves asmore » baseline data before a throughfall exclusion experiment, Panama Rainforest Changes with Experimental Drying (PARCHED), was implemented. No special software is needed to open these files.« less

Authors:
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  1. Ecosystem Science and Sustainability Department, Colorado State University, Fort Collins, Colorado, USA; Ecosystem Science and Sustainability Department, Colorado State University, Fort Collins, Colorado, USA
  2. Ecosystem Science and Sustainability Department, Colorado State University, Fort Collins, Colorado, USA
  3. Haverford College, Department of Biology, Haverford, PA
  4. Baylor University, Department of Geosciences, Waco, TX, USA
  5. Center for Accelerator Mass Spectrometry, Lawrence Livermore National Laboratory, Livermore, California, USA.
  6. Geography Department, University of California Los Angeles, Los Angeles, CA, USA
  7. Smithsonian Tropical Research Institute, Panama
Publication Date:
DOE Contract Number:  
SC0015898
Research Org.:
Environmental System Science Data Infrastructure for a Virtual Ecosystem; Consequences of Plant Nutrient Uptake for Soil Carbon Stabilization
Sponsoring Org.:
U.S. DOE > Office of Science > Biological and Environmental Research (BER)
Subject:
54 ENVIRONMENTAL SCIENCES; Arbuscular mycorrhiza fungi (AMF) colonization on roots; EARTH SCIENCE > BIOLOGICAL CLASSIFICATION > PLANTS; EARTH SCIENCE > LAND SURFACE > SOILS; Root %C; Root %N; Root C/N ratio; Root biomass; Root diameter; Root organic chemistry (NMR); Root tissue density (RTD); Specific root area (SRA); Specific root length (SRL)
OSTI Identifier:
2446720
DOI:
https://doi.org/10.15485/2446720

Citation Formats

Cordeiro, Amanda L., Cusack, Daniela F., Dietterich, Lee H., Hockaday, William C., McFarlane, Karis J., Sivapalan, Vinothan, Hedgpeth, Alexandra, Neupane, Avishesh, Colburn, Lily, Konwent, Weronika, Oppler, Gabriel, Reu, Jackie, Valdes, Eric, and Wright, S. Joseph. Root biomass and traits across four lowland Panamanian forests from 0 - 1.2 m soil depths. United States: N. p., 2024. Web. doi:10.15485/2446720.
Cordeiro, Amanda L., Cusack, Daniela F., Dietterich, Lee H., Hockaday, William C., McFarlane, Karis J., Sivapalan, Vinothan, Hedgpeth, Alexandra, Neupane, Avishesh, Colburn, Lily, Konwent, Weronika, Oppler, Gabriel, Reu, Jackie, Valdes, Eric, & Wright, S. Joseph. Root biomass and traits across four lowland Panamanian forests from 0 - 1.2 m soil depths. United States. doi:https://doi.org/10.15485/2446720
Cordeiro, Amanda L., Cusack, Daniela F., Dietterich, Lee H., Hockaday, William C., McFarlane, Karis J., Sivapalan, Vinothan, Hedgpeth, Alexandra, Neupane, Avishesh, Colburn, Lily, Konwent, Weronika, Oppler, Gabriel, Reu, Jackie, Valdes, Eric, and Wright, S. Joseph. 2024. "Root biomass and traits across four lowland Panamanian forests from 0 - 1.2 m soil depths". United States. doi:https://doi.org/10.15485/2446720. https://www.osti.gov/servlets/purl/2446720. Pub date:Mon Jan 01 04:00:00 UTC 2024
@article{osti_2446720,
title = {Root biomass and traits across four lowland Panamanian forests from 0 - 1.2 m soil depths},
author = {Cordeiro, Amanda L. and Cusack, Daniela F. and Dietterich, Lee H. and Hockaday, William C. and McFarlane, Karis J. and Sivapalan, Vinothan and Hedgpeth, Alexandra and Neupane, Avishesh and Colburn, Lily and Konwent, Weronika and Oppler, Gabriel and Reu, Jackie and Valdes, Eric and Wright, S. Joseph},
abstractNote = {Fine roots are key to ecosystem-scale nutrient, carbon (C), and water cycling, yet our understanding of fine root traits variation within and among tropical forests, one of Earth’s most C-rich ecosystems, is limited. We characterized root biomass, morphology, nutrient content, and arbuscular mycorrhizal fungal (AMF) colonization in 10 cm increments to 1.2 m depth across four distinct lowland Panamanian forests. The datasets provided include a .xlsx file for fine root characteristics across 10 cm increment depths to 1.2 m collected from late 2017 to 2018 across four different forests. Root characteristics include live fine root biomass, dead fine root biomass, coarse root biomass, specific root length, root diameter, root tissue density, specific root area, arbuscular mycorrhizal fungi colonization, root chemistry (e.g., organic chemistry), root %N, root %C, root C/N ratio, and root radiocarbon content. This .xlsx file contain four tabs with 1) Dataset; 2) Metadata with information about each column in the dataset; 3) The sampling methods summarized; 4) Sites information. We also provided csv files for each of these tabs. Additionally, a .kml file is provided with coordinates for all 32 plots included in the study across four forests (n = 8 plots per site/forest). This dataset serves as baseline data before a throughfall exclusion experiment, Panama Rainforest Changes with Experimental Drying (PARCHED), was implemented. No special software is needed to open these files.},
doi = {10.15485/2446720},
journal = {},
number = ,
volume = ,
place = {United States},
year = {Mon Jan 01 04:00:00 UTC 2024},
month = {Mon Jan 01 04:00:00 UTC 2024}
}