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Showing 1–6 of 6 results
Advanced filters: Author: Simone Matias Reis Clear advanced filters
  • Wood density is a key control on tree biomass, and understanding its spatial variation improves estimates of forest carbon stock. Sullivan et al. measure >900 forest plots to quantify wood density and produce high resolution maps of its variation across South American tropical forests.

    • Martin J. P. Sullivan
    • Oliver L. Phillips
    • Joeri A. Zwerts
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-12
  • The authors analyse tree responses to an extreme heat and drought event across South America to understand long-term climate resistance. While no more sensitive to this than previous lesser events, forests in drier climates showed the greatest impacts and thus vulnerability to climate extremes.

    • Amy C. Bennett
    • Thaiane Rodrigues de Sousa
    • Oliver L. Phillips
    ResearchOpen Access
    Nature Climate Change
    Volume: 13, P: 967-974
  • Tree mortality has been shown to be the dominant control on carbon storage in Amazon forests, but little is known of how and why Amazon forest trees die. Here the authors analyse a large Amazon-wide dataset, finding that fast-growing species face greater mortality risk, but that slower-growing individuals within a species are more likely to die, regardless of size.

    • Adriane Esquivel-Muelbert
    • Oliver L. Phillips
    • David Galbraith
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-11
  • The South American Cerrado has an estimated ~1605 tree species, yet > 2% make up half of all trees. Since 1995, the savanna lost 24 billion trees, threatening its biodiversity. Urgent conservation is needed to prevent irreversible loss.

    • Facundo Alvarez
    • Ben Hur Marimon-Junior
    • Ted R. Feldpausch
    ResearchOpen Access
    Communications Biology
    Volume: 8, P: 1-9
  • A dataset of 16 plant traits sampled from 2,461 individual trees from 74 tropical forest sites around the world is used to show a strong link between climate and plant functional diversity and redundancy, with drier tropical forests likely being less able to respond to declines in water availability.

    • Jesús Aguirre‐Gutiérrez
    • Erika Berenguer
    • Yadvinder Malhi
    Research
    Nature Ecology & Evolution
    Volume: 6, P: 878-889