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The commonness of rarity: Global and future distribution of rarity across land plants

A key feature of life’s diversity is that some species are common but many more are rare. Nonetheless, at global scales, we do not know what fraction of biodiversity consists of rare species. Here, we present the largest compilation of global plant diversity to quantify the fraction of Earth’s plant...

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Autores principales: Enquist, Brian J., Feng, Xiao, Boyle, Brad, Maitner, Brian, Newman, Erica A., Jørgensen, Peter Møller, Roehrdanz, Patrick R., Thiers, Barbara M., Burger, Joseph R., Corlett, Richard T., Couvreur, Thomas L. P., Dauby, Gilles, Donoghue, John C., Foden, Wendy, Lovett, Jon C., Marquet, Pablo A., Merow, Cory, Midgley, Guy, Morueta-Holme, Naia, Neves, Danilo M., Oliveira-Filho, Ary T., Kraft, Nathan J. B., Park, Daniel S., Peet, Robert K., Pillet, Michiel, Serra-Diaz, Josep M., Sandel, Brody, Schildhauer, Mark, Šímová, Irena, Violle, Cyrille, Wieringa, Jan J., Wiser, Susan K., Hannah, Lee, Svenning, Jens-Christian, McGill, Brian J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for the Advancement of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6881168/
https://www.ncbi.nlm.nih.gov/pubmed/31807712
http://dx.doi.org/10.1126/sciadv.aaz0414
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author Enquist, Brian J.
Feng, Xiao
Boyle, Brad
Maitner, Brian
Newman, Erica A.
Jørgensen, Peter Møller
Roehrdanz, Patrick R.
Thiers, Barbara M.
Burger, Joseph R.
Corlett, Richard T.
Couvreur, Thomas L. P.
Dauby, Gilles
Donoghue, John C.
Foden, Wendy
Lovett, Jon C.
Marquet, Pablo A.
Merow, Cory
Midgley, Guy
Morueta-Holme, Naia
Neves, Danilo M.
Oliveira-Filho, Ary T.
Kraft, Nathan J. B.
Park, Daniel S.
Peet, Robert K.
Pillet, Michiel
Serra-Diaz, Josep M.
Sandel, Brody
Schildhauer, Mark
Šímová, Irena
Violle, Cyrille
Wieringa, Jan J.
Wiser, Susan K.
Hannah, Lee
Svenning, Jens-Christian
McGill, Brian J.
author_facet Enquist, Brian J.
Feng, Xiao
Boyle, Brad
Maitner, Brian
Newman, Erica A.
Jørgensen, Peter Møller
Roehrdanz, Patrick R.
Thiers, Barbara M.
Burger, Joseph R.
Corlett, Richard T.
Couvreur, Thomas L. P.
Dauby, Gilles
Donoghue, John C.
Foden, Wendy
Lovett, Jon C.
Marquet, Pablo A.
Merow, Cory
Midgley, Guy
Morueta-Holme, Naia
Neves, Danilo M.
Oliveira-Filho, Ary T.
Kraft, Nathan J. B.
Park, Daniel S.
Peet, Robert K.
Pillet, Michiel
Serra-Diaz, Josep M.
Sandel, Brody
Schildhauer, Mark
Šímová, Irena
Violle, Cyrille
Wieringa, Jan J.
Wiser, Susan K.
Hannah, Lee
Svenning, Jens-Christian
McGill, Brian J.
author_sort Enquist, Brian J.
collection PubMed
description A key feature of life’s diversity is that some species are common but many more are rare. Nonetheless, at global scales, we do not know what fraction of biodiversity consists of rare species. Here, we present the largest compilation of global plant diversity to quantify the fraction of Earth’s plant biodiversity that are rare. A large fraction, ~36.5% of Earth’s ~435,000 plant species, are exceedingly rare. Sampling biases and prominent models, such as neutral theory and the k-niche model, cannot account for the observed prevalence of rarity. Our results indicate that (i) climatically more stable regions have harbored rare species and hence a large fraction of Earth’s plant species via reduced extinction risk but that (ii) climate change and human land use are now disproportionately impacting rare species. Estimates of global species abundance distributions have important implications for risk assessments and conservation planning in this era of rapid global change.
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spelling pubmed-68811682019-12-05 The commonness of rarity: Global and future distribution of rarity across land plants Enquist, Brian J. Feng, Xiao Boyle, Brad Maitner, Brian Newman, Erica A. Jørgensen, Peter Møller Roehrdanz, Patrick R. Thiers, Barbara M. Burger, Joseph R. Corlett, Richard T. Couvreur, Thomas L. P. Dauby, Gilles Donoghue, John C. Foden, Wendy Lovett, Jon C. Marquet, Pablo A. Merow, Cory Midgley, Guy Morueta-Holme, Naia Neves, Danilo M. Oliveira-Filho, Ary T. Kraft, Nathan J. B. Park, Daniel S. Peet, Robert K. Pillet, Michiel Serra-Diaz, Josep M. Sandel, Brody Schildhauer, Mark Šímová, Irena Violle, Cyrille Wieringa, Jan J. Wiser, Susan K. Hannah, Lee Svenning, Jens-Christian McGill, Brian J. Sci Adv Research Articles A key feature of life’s diversity is that some species are common but many more are rare. Nonetheless, at global scales, we do not know what fraction of biodiversity consists of rare species. Here, we present the largest compilation of global plant diversity to quantify the fraction of Earth’s plant biodiversity that are rare. A large fraction, ~36.5% of Earth’s ~435,000 plant species, are exceedingly rare. Sampling biases and prominent models, such as neutral theory and the k-niche model, cannot account for the observed prevalence of rarity. Our results indicate that (i) climatically more stable regions have harbored rare species and hence a large fraction of Earth’s plant species via reduced extinction risk but that (ii) climate change and human land use are now disproportionately impacting rare species. Estimates of global species abundance distributions have important implications for risk assessments and conservation planning in this era of rapid global change. American Association for the Advancement of Science 2019-11-27 /pmc/articles/PMC6881168/ /pubmed/31807712 http://dx.doi.org/10.1126/sciadv.aaz0414 Text en Copyright © 2019 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC). http://creativecommons.org/licenses/by-nc/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (http://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited.
spellingShingle Research Articles
Enquist, Brian J.
Feng, Xiao
Boyle, Brad
Maitner, Brian
Newman, Erica A.
Jørgensen, Peter Møller
Roehrdanz, Patrick R.
Thiers, Barbara M.
Burger, Joseph R.
Corlett, Richard T.
Couvreur, Thomas L. P.
Dauby, Gilles
Donoghue, John C.
Foden, Wendy
Lovett, Jon C.
Marquet, Pablo A.
Merow, Cory
Midgley, Guy
Morueta-Holme, Naia
Neves, Danilo M.
Oliveira-Filho, Ary T.
Kraft, Nathan J. B.
Park, Daniel S.
Peet, Robert K.
Pillet, Michiel
Serra-Diaz, Josep M.
Sandel, Brody
Schildhauer, Mark
Šímová, Irena
Violle, Cyrille
Wieringa, Jan J.
Wiser, Susan K.
Hannah, Lee
Svenning, Jens-Christian
McGill, Brian J.
The commonness of rarity: Global and future distribution of rarity across land plants
title The commonness of rarity: Global and future distribution of rarity across land plants
title_full The commonness of rarity: Global and future distribution of rarity across land plants
title_fullStr The commonness of rarity: Global and future distribution of rarity across land plants
title_full_unstemmed The commonness of rarity: Global and future distribution of rarity across land plants
title_short The commonness of rarity: Global and future distribution of rarity across land plants
title_sort commonness of rarity: global and future distribution of rarity across land plants
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6881168/
https://www.ncbi.nlm.nih.gov/pubmed/31807712
http://dx.doi.org/10.1126/sciadv.aaz0414
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