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Landscape dynamics and the Phanerozoic diversification of the biosphere
Salles, T.; Husson, L.; Lorcery, M.; Hadler Boggiani, B. (2023). Landscape dynamics and the Phanerozoic diversification of the biosphere. Nature (Lond.) 624(7990): 115-121. https://dx.doi.org/10.1038/s41586-023-06777-z
In: Nature: International Weekly Journal of Science. Nature Publishing Group: London. ISSN 0028-0836; e-ISSN 1476-4687, meer
Is gerelateerd aan:
Pohl, A. (2023). Landscape’s overlooked role in steering biodiversity. Nature (Lond.) 624(7990): 48-49. https://dx.doi.org/10.1038/d41586-023-03536-y, meer
Peer reviewed article  

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  • Salles, T.
  • Husson, L.
  • Lorcery, M.
  • Hadler Boggiani, B.

Abstract
    The long-term diversification of the biosphere responds to changes in the physical environment. Yet, over the continents, the nearly monotonic expansion of life started later in the early part of the Phanerozoic eon than the expansion in the marine realm, where instead the number of genera waxed and waned over time. A comprehensive evaluation of the changes in the geodynamic and climatic forcing fails to provide a unified theory for the long-term pattern of evolution of life on Earth. Here we couple climate and plate tectonics models to numerically reconstruct the evolution of the Earth’s landscape over the entire Phanerozoic eon, which we then compare to palaeo-diversity datasets from marine animal and land plant genera. Our results indicate that biodiversity is strongly reliant on landscape dynamics, which at all times determine the carrying capacity of both the continental domain and the oceanic domain. In the oceans, diversity closely adjusted to the riverine sedimentary flux that provides nutrients for primary production. On land, plant expansion was hampered by poor edaphic conditions until widespread endorheic basins resurfaced continents with a sedimentary cover that facilitated the development of soil-dependent rooted flora, and the increasing variety of the landscape additionally promoted their development.

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