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Accès ouvert déclaré 2023 article

Bioavailability of Macro and Micronutrients Across Global Topsoils: Main Drivers and Global Change Impacts

25Citations signalées, ce qui n’est pas une note de qualité
65Institutions déclarées
14Pays d’affiliation déclarés

Rattachement africain : es, nl, ch, hk, us, ca, gb, at, no, au, cz, pa, be, de. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

Abstract Understanding the chemical composition of our planet's crust was one of the biggest questions of the 20th century. More than 100 years later, we are still far from understanding the global patterns in the bioavailability and spatial coupling of elements in topsoils worldwide, despite their importance for the productivity and functioning of terrestrial ecosystems. Here, we measured the bioavailability and coupling of thirteen macro‐ and micronutrients and phytotoxic elements in topsoils (3–8 cm) from a range of terrestrial ecosystems across all continents (∼10,000 observations) and in response to global change manipulations (∼5,000 observations). For this, we incubated between 1 and 4 pairs of anionic and cationic exchange membranes per site for a mean period of 53 days. The most bioavailable elements (Ca, Mg, and K) were also amongst the most abundant in the crust. Patterns of bioavailability were biome‐dependent and controlled by soil properties such as pH, organic matter content and texture, plant cover, and climate. However, global change simulations resulted in important alterations in the bioavailability of elements. Elements were highly coupled, and coupling was predictable by the atomic properties of elements, particularly mass, mass to charge ratio, and second ionization energy. Deviations from the predictable coupling‐atomic mass relationship were attributed to global change and agriculture. Our work illustrates the tight links between the bioavailability and coupling of topsoil elements and environmental context, human activities, and atomic properties of elements, thus deeply enhancing our integrated understanding of the biogeochemical connections that underlie the productivity and functioning of terrestrial ecosystems in a changing world.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Bioavailability of Macro and Micronutrients Across Global Topsoils: Main Drivers and Global Change Impacts
Date Crossref
01/06/2023
Éditeur
American Geophysical Union (AGU)
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

Universidad de CádizNetherlands Institute of EcologyInstituto de Recursos Naturales y Agrobiología de SevillaSwiss Federal Institute for Forest, Snow and Landscape ResearchUniversity of Hong KongUnited States Department of AgricultureAgricultural Research Service - Plains AreaUniversité TÉLUQUniversity of OregonJames Hutton InstituteAustrian Academy of SciencesInstituto Pirenaico de EcologíaNorwegian Geotechnical InstituteNorwegian University of Life SciencesLancaster UniversityThe University of SydneyLakehead UniversityArizona State UniversityUniversity of VirginiaUtah State UniversityFiducie de Recherche sur la Forêt des Cantons-de-l’EstUniversity of ReginaUniversity of BristolUniversité LavalNorwegian Institute of Bioeconomy ResearchWildlife Conservation Society CanadaMcGill UniversityMichigan State UniversityCarrington CollegeNorth Dakota State UniversityNorwegian University of Science and TechnologyNorwegian Biodiversity Information CentreUniversity of ArizonaCalifornia State University, Monterey BayMonterey College of LawUniversity of California, DavisChinese University of Hong KongDePaul UniversityUniversity of ConnecticutUniversity of WashingtonIowa State UniversityAgricultural Research ServiceUniversity of New MexicoBjerknes Centre for Climate ResearchUniversity of ManchesterUniversity of BergenUniversity of AlbertaAugustana CollegeAgriculture and Agri-Food CanadaMississippi State UniversityUniversidad de ExtremaduraCzech Academy of Sciences, Institute of BotanyUniversidad Politécnica de MadridInstitute for Culture and EcologyUniversity of Northern British ColumbiaSmithsonian Tropical Research InstituteUniversity of WaterlooUniversity of TorontoTexas Tech UniversityTexas Tech University Health Sciences CenterUniversity of AntwerpMassachusetts Institute of TechnologyAlbrecht von Haller FoundationUniversity of GöttingenMontana State University

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

Les sujets associés

Aquatic Ecosystems and Phytoplankton DynamicsHeavy metals in environmentCoastal wetland ecosystem dynamics

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