Half of the world's tree biodiversity is unprotected and is increasingly threatened by human activities
Guo, W.-Y.; Serra-Diaz, J. M.; Schrodt, F.; Eiserhardt, W. L.; Maitner, B. S.; Merow, C.; Violle, C.; Anand, M.; Belluau, M.; Bruun, H. H.; Byun, C.; Catford, J. A.; Cerabolini, B. E. L.; Chacon-Madrigal, E.; Ciccarelli, D.; Cornelissen, J. H. C.; Dang-Le, A. T.; de Frutos, A.; Dias, A. S.; Giroldo, A. B.; Guo, K.; Gutierrez, A. G.; Hattingh, W.; He, T.; Hietz, P.; Hough-Snee, N.; Jansen, S.; Kattge, J.; Klein, T.; Komac, B.; Kraft, N.; Kramer, K.; Lavorel, S.; Lusk, C. H.; Martin, A. R.; Mencuccini, M.; Michaletz, S. T.; Minden, V.; Mori, A. S.; Niinemets, U.; Onoda, Y.; Onstein, R. E.; Penue
Show abstract
Although trees are key to ecosystem functioning, many forests and tree species across the globe face strong threats. Preserving areas of high biodiversity is a core priority for conservation; however, different dimensions of biodiversity and varied conservation targets make it difficult to respond effectively to this challenge. Here, we (i) identify priority areas for global tree conservation using comprehensive coverage of tree diversity based on taxonomy, phylogeny, and functional traits; and (ii) compare these findings to existing protected areas and global biodiversity conservation frameworks. We find that ca. 51% of the top-priority areas for tree biodiversity are located in current protected areas. The remaining half top-priority areas are subject to moderate to high human pressures, indicating conservation actions are needed to mitigate these human impacts. Our findings emphasize the effectiveness of using tree conservation priority areas for future global conservation planning.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Freezing and water availability structure the evolutionary diversity of trees across the Americas 95%
- Elusive tropical forest canopy diversity revealed through environmental DNA contained in rainwater 93%
- Impact of Holocene environmental change on the evolutionary ecology of an Arctic top predator 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.