Soil–climate interactions drive above-ground biomass in the Caatinga, the largest Neotropical seasonally dry tropical forest

Brunello, A. T., Cardoso, D., Moonlight, P. W. et al. (34 more authors) (2025) Soil–climate interactions drive above-ground biomass in the Caatinga, the largest Neotropical seasonally dry tropical forest. Plant and Soil. ISSN: 0032-079X

Metadata

Item Type: Article
Authors/Creators:
  • Brunello, A. T.
  • Cardoso, D.
  • Moonlight, P. W.
  • Coutinho, Í. A. C.
  • Cunha, J.
  • do Espírito Santo, M. M.
  • de Moura, M.S.B.
  • de Queiroz, L.P.
  • dos Santos, R.M.
  • Särkinen, T.
  • Miatto, R.C.
  • de S. Oliveira, T.C.
  • Bezerra, C.
  • Mizushima, M.
  • Aquino, A.C.M.M.
  • Fernandes, M.F.
  • Ramos, D.M.
  • da Silva, V.F.
  • Rodrigues, P.M.S.
  • de O. Silva, J.
  • Castro, A.J.F.
  • Menezes, R.
  • Araújo, F.S.
  • Morellato, P.
  • Borma, L.
  • Almeida, E.R.
  • Nóbrega, R.L.B.
  • Souza, R.M.S.
  • Rodal, M.J.N.
  • Maia, V.A.
  • Verhoef, A.
  • Veenendaal, E.
  • Pennington, R.T.
  • Phillips, O.L. ORCID logo https://orcid.org/0000-0002-8993-6168
  • Quesada, C.A.N.
  • Lloyd, J.
  • Domingues, T.F.
Keywords: Brazilian semi-arid; Carbon stocks; Drylands; Functional traits; Global change; Dryland soils
Dates:
  • Accepted: 14 September 2025
  • Published (online): 24 October 2025
Institution: The University of Leeds
Academic Units: The University of Leeds > Faculty of Environment (Leeds) > School of Geography (Leeds)
Date Deposited: 22 Dec 2025 13:54
Last Modified: 22 Dec 2025 16:11
Published Version: https://link.springer.com/article/10.1007/s11104-0...
Status: Published online
Publisher: Springer
Identification Number: 10.1007/s11104-025-07921-6
Related URLs:
Sustainable Development Goals:
  • Sustainable Development Goals: Goal 14: Life Below Water
  • Sustainable Development Goals: Goal 15: Life on Land
Open Archives Initiative ID (OAI ID):

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