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Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity

Many global environmental agendas, including halting biodiversity loss, reversing land degradation, and limiting climate change, depend upon retaining forests with high ecological integrity, yet the scale and degree of forest modification remain poorly quantified and mapped. By integrating data on o...

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Autores principales: Grantham, H. S., Duncan, A., Evans, T. D., Jones, K. R., Beyer, H. L., Schuster, R., Walston, J., Ray, J. C., Robinson, J. G., Callow, M., Clements, T., Costa, H. M., DeGemmis, A., Elsen, P. R., Ervin, J., Franco, P., Goldman, E., Goetz, S., Hansen, A., Hofsvang, E., Jantz, P., Jupiter, S., Kang, A., Langhammer, P., Laurance, W. F., Lieberman, S., Linkie, M., Malhi, Y., Maxwell, S., Mendez, M., Mittermeier, R., Murray, N. J., Possingham, H., Radachowsky, J., Saatchi, S., Samper, C., Silverman, J., Shapiro, A., Strassburg, B., Stevens, T., Stokes, E., Taylor, R., Tear, T., Tizard, R., Venter, O., Visconti, P., Wang, S., Watson, J. E. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7723057/
https://www.ncbi.nlm.nih.gov/pubmed/33293507
http://dx.doi.org/10.1038/s41467-020-19493-3
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author Grantham, H. S.
Duncan, A.
Evans, T. D.
Jones, K. R.
Beyer, H. L.
Schuster, R.
Walston, J.
Ray, J. C.
Robinson, J. G.
Callow, M.
Clements, T.
Costa, H. M.
DeGemmis, A.
Elsen, P. R.
Ervin, J.
Franco, P.
Goldman, E.
Goetz, S.
Hansen, A.
Hofsvang, E.
Jantz, P.
Jupiter, S.
Kang, A.
Langhammer, P.
Laurance, W. F.
Lieberman, S.
Linkie, M.
Malhi, Y.
Maxwell, S.
Mendez, M.
Mittermeier, R.
Murray, N. J.
Possingham, H.
Radachowsky, J.
Saatchi, S.
Samper, C.
Silverman, J.
Shapiro, A.
Strassburg, B.
Stevens, T.
Stokes, E.
Taylor, R.
Tear, T.
Tizard, R.
Venter, O.
Visconti, P.
Wang, S.
Watson, J. E. M.
author_facet Grantham, H. S.
Duncan, A.
Evans, T. D.
Jones, K. R.
Beyer, H. L.
Schuster, R.
Walston, J.
Ray, J. C.
Robinson, J. G.
Callow, M.
Clements, T.
Costa, H. M.
DeGemmis, A.
Elsen, P. R.
Ervin, J.
Franco, P.
Goldman, E.
Goetz, S.
Hansen, A.
Hofsvang, E.
Jantz, P.
Jupiter, S.
Kang, A.
Langhammer, P.
Laurance, W. F.
Lieberman, S.
Linkie, M.
Malhi, Y.
Maxwell, S.
Mendez, M.
Mittermeier, R.
Murray, N. J.
Possingham, H.
Radachowsky, J.
Saatchi, S.
Samper, C.
Silverman, J.
Shapiro, A.
Strassburg, B.
Stevens, T.
Stokes, E.
Taylor, R.
Tear, T.
Tizard, R.
Venter, O.
Visconti, P.
Wang, S.
Watson, J. E. M.
author_sort Grantham, H. S.
collection PubMed
description Many global environmental agendas, including halting biodiversity loss, reversing land degradation, and limiting climate change, depend upon retaining forests with high ecological integrity, yet the scale and degree of forest modification remain poorly quantified and mapped. By integrating data on observed and inferred human pressures and an index of lost connectivity, we generate a globally consistent, continuous index of forest condition as determined by the degree of anthropogenic modification. Globally, only 17.4 million km(2) of forest (40.5%) has high landscape-level integrity (mostly found in Canada, Russia, the Amazon, Central Africa, and New Guinea) and only 27% of this area is found in nationally designated protected areas. Of the forest inside protected areas, only 56% has high landscape-level integrity. Ambitious policies that prioritize the retention of forest integrity, especially in the most intact areas, are now urgently needed alongside current efforts aimed at halting deforestation and restoring the integrity of forests globally.
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spelling pubmed-77230572020-12-11 Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity Grantham, H. S. Duncan, A. Evans, T. D. Jones, K. R. Beyer, H. L. Schuster, R. Walston, J. Ray, J. C. Robinson, J. G. Callow, M. Clements, T. Costa, H. M. DeGemmis, A. Elsen, P. R. Ervin, J. Franco, P. Goldman, E. Goetz, S. Hansen, A. Hofsvang, E. Jantz, P. Jupiter, S. Kang, A. Langhammer, P. Laurance, W. F. Lieberman, S. Linkie, M. Malhi, Y. Maxwell, S. Mendez, M. Mittermeier, R. Murray, N. J. Possingham, H. Radachowsky, J. Saatchi, S. Samper, C. Silverman, J. Shapiro, A. Strassburg, B. Stevens, T. Stokes, E. Taylor, R. Tear, T. Tizard, R. Venter, O. Visconti, P. Wang, S. Watson, J. E. M. Nat Commun Article Many global environmental agendas, including halting biodiversity loss, reversing land degradation, and limiting climate change, depend upon retaining forests with high ecological integrity, yet the scale and degree of forest modification remain poorly quantified and mapped. By integrating data on observed and inferred human pressures and an index of lost connectivity, we generate a globally consistent, continuous index of forest condition as determined by the degree of anthropogenic modification. Globally, only 17.4 million km(2) of forest (40.5%) has high landscape-level integrity (mostly found in Canada, Russia, the Amazon, Central Africa, and New Guinea) and only 27% of this area is found in nationally designated protected areas. Of the forest inside protected areas, only 56% has high landscape-level integrity. Ambitious policies that prioritize the retention of forest integrity, especially in the most intact areas, are now urgently needed alongside current efforts aimed at halting deforestation and restoring the integrity of forests globally. Nature Publishing Group UK 2020-12-08 /pmc/articles/PMC7723057/ /pubmed/33293507 http://dx.doi.org/10.1038/s41467-020-19493-3 Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Grantham, H. S.
Duncan, A.
Evans, T. D.
Jones, K. R.
Beyer, H. L.
Schuster, R.
Walston, J.
Ray, J. C.
Robinson, J. G.
Callow, M.
Clements, T.
Costa, H. M.
DeGemmis, A.
Elsen, P. R.
Ervin, J.
Franco, P.
Goldman, E.
Goetz, S.
Hansen, A.
Hofsvang, E.
Jantz, P.
Jupiter, S.
Kang, A.
Langhammer, P.
Laurance, W. F.
Lieberman, S.
Linkie, M.
Malhi, Y.
Maxwell, S.
Mendez, M.
Mittermeier, R.
Murray, N. J.
Possingham, H.
Radachowsky, J.
Saatchi, S.
Samper, C.
Silverman, J.
Shapiro, A.
Strassburg, B.
Stevens, T.
Stokes, E.
Taylor, R.
Tear, T.
Tizard, R.
Venter, O.
Visconti, P.
Wang, S.
Watson, J. E. M.
Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
title Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
title_full Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
title_fullStr Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
title_full_unstemmed Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
title_short Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
title_sort anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7723057/
https://www.ncbi.nlm.nih.gov/pubmed/33293507
http://dx.doi.org/10.1038/s41467-020-19493-3
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