Ir directamente a la navegación principal Ir directamente a la búsqueda Ir directamente al contenido principal

Latitude, Elevation, and Mean Annual Temperature Predict Peat Organic Matter Chemistry at a Global Scale

  • Brittany A. Verbeke
  • , Louis J. Lamit
  • , Erik A. Lilleskov
  • , Suzanne B. Hodgkins
  • , Nathan Basiliko
  • , Evan S. Kane
  • , Roxane Andersen
  • , Rebekka R.E. Artz
  • , Juan C. Benavides
  • , Brian W. Benscoter
  • , Werner Borken
  • , Luca Bragazza
  • , Stefani M. Brandt
  • , Suzanna L. Bräuer
  • , Michael A. Carson
  • , Dan Charman
  • , Xin Chen
  • , Beverley R. Clarkson
  • , Alexander R. Cobb
  • , Peter Convey
  • Jhon del Águila Pasquel, Andrea S. Enriquez, Howard Griffiths, Samantha P. Grover, Charles F. Harvey, Lorna I. Harris, Christina Hazard, Dominic Hodgson, Alison M. Hoyt, John Hribljan, Jyrki Jauhiainen, Sari Juutinen, Klaus Holger Knorr, Randall K. Kolka, Mari Könönen, Tuula Larmola, Carmody K. McCalley, James McLaughlin, Tim R. Moore, Nadia Mykytczuk, Anna E. Normand, Virginia Rich, Nigel Roulet, Jessica Royles, Jasmine Rutherford, David S. Smith, Mette M. Svenning, Leho Tedersoo, Pham Q. Thu, Carl C. Trettin, Eeva Stiina Tuittila, Zuzana Urbanová, Ruth K. Varner, Meng Wang, Zheng Wang, Matt Warren, Magdalena M. Wiedermann, Shanay Williams, Joseph B. Yavitt, Zhi Guo Yu, Zicheng Yu, Jeffrey P. Chanton
  • Florida State University
  • Syracuse University
  • USDA Forest Service
  • Ohio State University
  • Laurentian University
  • Michigan Technological University
  • University of the Highlands and Islands
  • The James Hutton Institute
  • Florida Atlantic University
  • Office of Science
  • University of Bayreuth
  • Research Division Plant Production Systems
  • California State Polytechnic University, Humboldt
  • Appalachian State University
  • University of Exeter
  • Zhejiang University
  • Manaaki Whenua - Landcare Research
  • Singapore-MIT Alliance for Research and Technology
  • British Antarctic Survey
  • Instituto de Investigaciones de la Amazonía Peruana
  • Instituto de Investigaciones Forestales y Agropecuarias (CONICET-INTA)
  • University of Cambridge
  • Royal Melbourne Institute of Technology University
  • Massachusetts Institute of Technology
  • University of Alberta
  • McGill University
  • École centrale de Lyon
  • Max Planck Institute for Biogeochemistry
  • University of Nebraska Omaha
  • University of Helsinki
  • Natural Resources Institute Finland (Luke)
  • University of Münster
  • University of Eastern Finland
  • Rochester Institute of Technology
  • Ontario Forest Research Institute
  • University of Florida
  • Conservation and Attractions
  • California State University San Bernardino
  • University of Tromsø – The Arctic University of Norway
  • University of Tartu
  • King Saud University
  • Vietnamese Academy of Forest Sciences
  • University of South Bohemia
  • University of New Hampshire
  • Northeast Normal University
  • Hebei Agricultural University
  • Earth Innovation Institute
  • University of Cincinnati
  • University of Saskatchewan
  • Cornell University
  • Nanjing University of Information Science & Technology
  • Lehigh University

Producción: Contribución a una revistaArtículorevisión exhaustiva

37 Citas (Scopus)

Resumen

Peatlands contain a significant fraction of global soil carbon, but how these reservoirs will respond to the changing climate is still relatively unknown. A global picture of the variations in peat organic matter chemistry will aid our ability to gauge peatland soil response to climate. The goal of this research is to test the hypotheses that (a) peat carbohydrate content, an indicator of soil organic matter reactivity, will increase with latitude and decrease with mean annual temperatures, (b) while peat aromatic content, an indicator of recalcitrance, will vary inversely, and (c) elevation will have a similar effect to latitude. We used Fourier Transform Infrared Spectroscopy to examine variations in the organic matter functional groups of 1034 peat samples collected from 10 to 20, 30–40, and 60–70 cm depths at 165 individual sites across a latitudinal gradient of 79°N–65°S and from elevations of 0–4,773 m. Carbohydrate contents of high latitude peat were significantly greater than peat originating near the equator, while aromatic content showed the opposite trend. For peat from similar latitudes but different elevations, the carbohydrate content was greater and aromatic content was lower at higher elevations. Higher carbohydrate content at higher latitudes indicates a greater potential for mineralization, whereas the chemical composition of low latitude peat is consistent with their apparent relative stability in the face of warmer temperatures. The combination of low carbohydrates and high aromatics at warmer locations near the equator suggests the mineralization of high latitude peat until reaching recalcitrance under a new temperature regime.

Idioma originalInglés
Número de artículoe2021GB007057
PublicaciónGlobal Biogeochemical Cycles
Volumen36
N.º2
DOI
EstadoPublicada - feb 2022

ODS de las Naciones Unidas

Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

  1. ODS 13: Acción por el clima
    ODS 13: Acción por el clima

Huella

Profundice en los temas de investigación de 'Latitude, Elevation, and Mean Annual Temperature Predict Peat Organic Matter Chemistry at a Global Scale'. En conjunto forman una huella única.

Citar esto