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The global abundance of tree palms

Publication ,  Journal Article
Muscarella, R; Emilio, T; Phillips, OL; Lewis, SL; Slik, F; Baker, WJ; Couvreur, TLP; Eiserhardt, WL; Svenning, JC; Affum-Baffoe, K; Aiba, SI ...
Published in: Global Ecology and Biogeography
September 1, 2020

Aim: Palms are an iconic, diverse and often abundant component of tropical ecosystems that provide many ecosystem services. Being monocots, tree palms are evolutionarily, morphologically and physiologically distinct from other trees, and these differences have important consequences for ecosystem services (e.g., carbon sequestration and storage) and in terms of responses to climate change. We quantified global patterns of tree palm relative abundance to help improve understanding of tropical forests and reduce uncertainty about these ecosystems under climate change. Location: Tropical and subtropical moist forests. Time period: Current. Major taxa studied: Palms (Arecaceae). Methods: We assembled a pantropical dataset of 2,548 forest plots (covering 1,191 ha) and quantified tree palm (i.e., ≥10 cm diameter at breast height) abundance relative to co-occurring non-palm trees. We compared the relative abundance of tree palms across biogeographical realms and tested for associations with palaeoclimate stability, current climate, edaphic conditions and metrics of forest structure. Results: On average, the relative abundance of tree palms was more than five times larger between Neotropical locations and other biogeographical realms. Tree palms were absent in most locations outside the Neotropics but present in >80% of Neotropical locations. The relative abundance of tree palms was more strongly associated with local conditions (e.g., higher mean annual precipitation, lower soil fertility, shallower water table and lower plot mean wood density) than metrics of long-term climate stability. Life-form diversity also influenced the patterns; palm assemblages outside the Neotropics comprise many non-tree (e.g., climbing) palms. Finally, we show that tree palms can influence estimates of above-ground biomass, but the magnitude and direction of the effect require additional work. Conclusions: Tree palms are not only quintessentially tropical, but they are also overwhelmingly Neotropical. Future work to understand the contributions of tree palms to biomass estimates and carbon cycling will be particularly crucial in Neotropical forests.

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Published In

Global Ecology and Biogeography

DOI

EISSN

1466-8238

ISSN

1466-822X

Publication Date

September 1, 2020

Volume

29

Issue

9

Start / End Page

1495 / 1514

Related Subject Headings

  • Ecology
  • 4104 Environmental management
  • 4102 Ecological applications
  • 3103 Ecology
  • 0602 Ecology
  • 0501 Ecological Applications
  • 0406 Physical Geography and Environmental Geoscience
 

Citation

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Muscarella, R., Emilio, T., Phillips, O. L., Lewis, S. L., Slik, F., Baker, W. J., … Killeen, T. J. (2020). The global abundance of tree palms. Global Ecology and Biogeography, 29(9), 1495–1514. https://doi.org/10.1111/geb.13123
Muscarella, R., T. Emilio, O. L. Phillips, S. L. Lewis, F. Slik, W. J. Baker, T. L. P. Couvreur, et al. “The global abundance of tree palms.” Global Ecology and Biogeography 29, no. 9 (September 1, 2020): 1495–1514. https://doi.org/10.1111/geb.13123.
Muscarella R, Emilio T, Phillips OL, Lewis SL, Slik F, Baker WJ, et al. The global abundance of tree palms. Global Ecology and Biogeography. 2020 Sep 1;29(9):1495–514.
Muscarella, R., et al. “The global abundance of tree palms.” Global Ecology and Biogeography, vol. 29, no. 9, Sept. 2020, pp. 1495–514. Scopus, doi:10.1111/geb.13123.
Muscarella R, Emilio T, Phillips OL, Lewis SL, Slik F, Baker WJ, Couvreur TLP, Eiserhardt WL, Svenning JC, Affum-Baffoe K, Aiba SI, de Almeida EC, de Almeida SS, de Oliveira EA, Álvarez-Dávila E, Alves LF, Alvez-Valles CM, Carvalho FA, Guarin FA, Andrade A, Aragão LEOC, Murakami AA, Arroyo L, Ashton PS, Corredor GAA, Baker TR, de Camargo PB, Barlow J, Bastin JF, Bengone NN, Berenguer E, Berry N, Blanc L, Böhning-Gaese K, Bonal D, Bongers F, Bradford M, Brambach F, Brearley FQ, Brewer SW, Camargo JLC, Campbell DG, Castilho CV, Castro W, Catchpole D, Cerón Martínez CE, Chen S, Chhang P, Cho P, Chutipong W, Clark C, Collins M, Comiskey JA, Medina MNC, Costa FRC, Culmsee H, David-Higuita H, Davidar P, del Aguila-Pasquel J, Derroire G, Di Fiore A, Van Do T, Doucet JL, Dourdain A, Drake DR, Ensslin A, Erwin T, Ewango CEN, Ewers RM, Fauset S, Feldpausch TR, Ferreira J, Ferreira LV, Fischer M, Franklin J, Fredriksson GM, Gillespie TW, Gilpin M, Gonmadje C, Gunatilleke AUN, Hakeem KR, Hall JS, Hamer KC, Harris DJ, Harrison RD, Hector A, Hemp A, Herault B, Pizango CGH, Coronado ENH, Hubau W, Hussain MS, Ibrahim FH, Imai N, Joly CA, Joseph S, Anitha K, Kartawinata K, Kassi J, Killeen TJ. The global abundance of tree palms. Global Ecology and Biogeography. 2020 Sep 1;29(9):1495–1514.
Journal cover image

Published In

Global Ecology and Biogeography

DOI

EISSN

1466-8238

ISSN

1466-822X

Publication Date

September 1, 2020

Volume

29

Issue

9

Start / End Page

1495 / 1514

Related Subject Headings

  • Ecology
  • 4104 Environmental management
  • 4102 Ecological applications
  • 3103 Ecology
  • 0602 Ecology
  • 0501 Ecological Applications
  • 0406 Physical Geography and Environmental Geoscience