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Accès ouvert déclaré 2022 article

Water table depth modulates productivity and biomass across Amazonian forests

50Citations signalées, ce qui n’est pas une note de qualité
82Institutions déclarées
19Pays d’affiliation déclarés

Rattachement africain : br, ve, nl, by, gb, fr, gf, gp, pe, co, bo, gy, ec, us, es, ca, Zimbabwe, au, sr. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

Abstract Aim Water availability is the major driver of tropical forest structure and dynamics. Most research has focused on the impacts of climatic water availability, whereas remarkably little is known about the influence of water table depth and excess soil water on forest processes. Nevertheless, given that plants take up water from the soil, the impacts of climatic water supply on plants are likely to be modulated by soil water conditions. Location Lowland Amazonian forests. Time period 1971–2019. Methods We used 344 long‐term inventory plots distributed across Amazonia to analyse the effects of long‐term climatic and edaphic water supply on forest functioning. We modelled forest structure and dynamics as a function of climatic, soil‐water and edaphic properties. Results Water supplied by both precipitation and groundwater affects forest structure and dynamics, but in different ways. Forests with a shallow water table (depth <5 m) had 18% less above‐ground woody productivity and 23% less biomass stock than forests with a deep water table. Forests in drier climates (maximum cumulative water deficit < −160 mm) had 21% less productivity and 24% less biomass than those in wetter climates. Productivity was affected by the interaction between climatic water deficit and water table depth. On average, in drier climates the forests with a shallow water table had lower productivity than those with a deep water table, with this difference decreasing within wet climates, where lower productivity was confined to a very shallow water table. Main conclusions We show that the two extremes of water availability (excess and deficit) both reduce productivity in Amazon upland (terra‐firme) forests. Biomass and productivity across Amazonia respond not simply to regional climate, but rather to its interaction with water table conditions, exhibiting high local differentiation. Our study disentangles the relative contribution of those factors, helping to improve understanding of the functioning of tropical ecosystems and how they are likely to respond to climate change.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Water table depth modulates productivity and biomass across Amazonian forests
Date Crossref
22/05/2022
Éditeur
Wiley
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Les institutions déclarées

Instituto Nacional de Pesquisas da AmazôniaUniversidade Federal do AmazonasUniversidade Estadual de Campinas (UNICAMP)Instituto Venezolano de Investigaciones CientíficasNaturalis Biodiversity CenterBrazilian Agricultural Research CorporationDepartment of Chemistry and Earth SciencesForest ResearchUniversity of BirminghamUniversity of LeedsInstituto Nacional de Pesquisas EspaciaisInstituto de Pesquisa Ambiental da AmazôniaLancaster UniversityCentre National de la Recherche ScientifiqueCentre de Coopération Internationale en Recherche Agronomique pour le DéveloppementInstitut National de Recherche pour l'Agriculture, l'Alimentation et l'EnvironnementEcologie des Forêts de GuyaneUniversité des AntillesUniversidade Federal do AcreAmazon National University of Madre de DiosUniversidad Nacional de ColombiaGabriel René Moreno Autonomous UniversityMuseo de Historia Natural Noel Kempff MercadoIwokrama International Centre for Rainforest Conservation and DevelopmentUniversidade Federal de RondôniaUniversidad San Francisco de QuitoThe University of Texas at AustinUniversidad de Los AndesUniversity of the AndesUniversidade do Estado de Mato GrossoRoyal Netherlands Meteorological InstituteUniversidad Mayor de San AndrésUniversidad Mayor de San SimónAgroParisTechSilvaEcologie et Ecophysiologie ForestièresUniversité de LorraineUniversidad Estatal AmazónicaUniversity of California, BerkeleyWageningen University & ResearchUniversity of OxfordFundación Con VidaUniversidad Nacional Abierta y a DistanciaInstituto de Investigaciones de la Amazonía PeruanaUniversidade Federal do Oeste do ParáUniversidade de BrasíliaUniversidade Federal do ParáWoodwell Climate Research CenterUniversity of NottinghamUniversidad Dr. José Gregorio HernándezUniversidad Autónoma del BeniMuseu Paraense Emílio GoeldiNational Park ServiceGuyana Forestry CommissionUtrecht UniversityDuke UniversityMarine Conservation InstituteConsejo Superior de Investigaciones CientíficasMuseo Nacional de Ciencias NaturalesForests and SocietiesUniversidad Regional Amazónica IKIAMNational Centre for Earth ObservationUniversity College LondonUniversité de MontpellierInstitut Agro MontpellierUMR Botanique et Modélisation de l’Architecture des Plantes et des végétationsInstitut de Recherche pour le DéveloppementUniversity of CambridgeMcMaster UniversityUniversidade Federal Rural da AmazôniaField Museum of Natural HistoryVan Hall Larenstein University of Applied SciencesForestry CommissionResearch International (United States)University of MichiganUniversity of PlymouthJames Cook UniversityUniversity of ExeterNational Museum of Natural HistoryUniversidad Nacional del OrienteAnton de Kom University of SurinameMulti Electrical System (Suriname)

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Plant Water Relations and Carbon DynamicsForest ecology and managementTree-ring climate responses

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