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Showing 1–8 of 8 results
Advanced filters: Author: Juan M. Dupuy Clear advanced filters
  • Trees come in all shapes and size, but what drives this incredible variation in tree form remains poorly understood. Using a global dataset, the authors show that a combination of climate, competition, disturbance and evolutionary history shape the crown architecture of the world’s trees and thereby constrain the 3D structure of woody ecosystems.

    • Tommaso Jucker
    • Fabian Jörg Fischer
    • Niklaus E. Zimmermann
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-16
  • Data from 42 chronosequence sites show a geater abundance of legumes in seasonally dry forests than in wet forests, particularly during early secondary succession, probably owing to legumes’ nitrogen-fixing ability and reduced leaflet size.

    • Maga Gei
    • Danaë M. A. Rozendaal
    • Jennifer S. Powers
    Research
    Nature Ecology & Evolution
    Volume: 2, P: 1104-1111
  • Neotropical tree community composition shows opposing successional pathways for wet and dry forests, but as vegetation cover increases over time, trends converge. Selecting species that have similar wood density to early successional communities could improve reforestation prospects.

    • Lourens Poorter
    • Danaë M. A. Rozendaal
    • Mark Westoby
    Research
    Nature Ecology & Evolution
    Volume: 3, P: 928-934
  • An analysis of above-ground biomass recovery during secondary succession in forest sites and plots, covering the major environmental gradients in the Neotropics.

    • Lourens Poorter
    • Frans Bongers
    • Danaë M. A. Rozendaal
    Research
    Nature
    Volume: 530, P: 211-214
  • Bouyer et al. report that the new permeation pathways (NPP), responsible of modulating erythrocyte permeability to diverse solutes and considered only to be in pathogenic asexual stages of P. falciparum, are also active in erythrocytes infected with immature gametocytes and this activity declines with gametocyte maturation. NPPs are regulated by the cAMP signalling cascade, and the decrease in cAMP levels in mature stages slows NPP activity.

    • Guillaume Bouyer
    • Daniela Barbieri
    • Catherine Lavazec
    ResearchOpen Access
    Communications Biology
    Volume: 3, P: 1-10