Climate change increases threat to plant diversity in tropical forests of Central America and southern Mexico.
Global biodiversity is negatively affected by anthropogenic climate change. As species distributions shift due to increasing temperatures and precipitation fluctuations, many species face the risk of extinction. In this study, we explore the expected trend for plant species distributions in Central...
| Published in: | PLoS ONE |
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| Language: | English |
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Public Library of Science (PLoS)
2024-01-01
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| Online Access: | https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0297840&type=printable |
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| author | Miguel A Ortega Luis Cayuela Daniel M Griffith Angélica Camacho Indiana M Coronado Rafael F Del Castillo Blanca L Figueroa-Rangel William Fonseca Cristina Garibaldi Daniel L Kelly Susan G Letcher Jorge A Meave Luis Merino-Martín Víctor H Meza Susana Ochoa-Gaona Miguel Olvera-Vargas Neptalí Ramírez-Marcial Fernando J Tun-Dzul Mirna Valdez-Hernández Eduardo Velázquez David A White Guadalupe Williams-Linera Rakan A Zahawi Jesús Muñoz |
| author_facet | Miguel A Ortega Luis Cayuela Daniel M Griffith Angélica Camacho Indiana M Coronado Rafael F Del Castillo Blanca L Figueroa-Rangel William Fonseca Cristina Garibaldi Daniel L Kelly Susan G Letcher Jorge A Meave Luis Merino-Martín Víctor H Meza Susana Ochoa-Gaona Miguel Olvera-Vargas Neptalí Ramírez-Marcial Fernando J Tun-Dzul Mirna Valdez-Hernández Eduardo Velázquez David A White Guadalupe Williams-Linera Rakan A Zahawi Jesús Muñoz |
| author_sort | Miguel A Ortega |
| collection | DOAJ |
| container_title | PLoS ONE |
| description | Global biodiversity is negatively affected by anthropogenic climate change. As species distributions shift due to increasing temperatures and precipitation fluctuations, many species face the risk of extinction. In this study, we explore the expected trend for plant species distributions in Central America and southern Mexico under two alternative Representative Concentration Pathways (RCPs) portraying moderate (RCP4.5) and severe (RCP8.5) increases in greenhouse gas emissions, combined with two species dispersal assumptions (limited and unlimited), for the 2061-2080 climate forecast. Using an ensemble approach employing three techniques to generate species distribution models, we classified 1924 plant species from the region's (sub)tropical forests according to IUCN Red List categories. To infer the spatial and taxonomic distribution of species' vulnerability under each scenario, we calculated the proportion of species in a threat category (Vulnerable, Endangered, Critically Endangered) at a pixel resolution of 30 arc seconds and by family. Our results show a high proportion (58-67%) of threatened species among the four experimental scenarios, with the highest proportion under RCP8.5 and limited dispersal. Threatened species were concentrated in montane areas and avoided lowland areas where conditions are likely to be increasingly inhospitable. Annual precipitation and diurnal temperature range were the main drivers of species' relative vulnerability. Our approach identifies strategic montane areas and taxa of conservation concern that merit urgent inclusion in management plans to improve climatic resilience in the Mesoamerican biodiversity hotspot. Such information is necessary to develop policies that prioritize vulnerable elements and mitigate threats to biodiversity under climate change. |
| format | Article |
| id | doaj-art-e2ee62307fbd4e9aaa736aec80026bda |
| institution | Directory of Open Access Journals |
| issn | 1932-6203 |
| language | English |
| publishDate | 2024-01-01 |
| publisher | Public Library of Science (PLoS) |
| record_format | Article |
| spelling | doaj-art-e2ee62307fbd4e9aaa736aec80026bda2025-08-19T23:59:45ZengPublic Library of Science (PLoS)PLoS ONE1932-62032024-01-01192e029784010.1371/journal.pone.0297840Climate change increases threat to plant diversity in tropical forests of Central America and southern Mexico.Miguel A OrtegaLuis CayuelaDaniel M GriffithAngélica CamachoIndiana M CoronadoRafael F Del CastilloBlanca L Figueroa-RangelWilliam FonsecaCristina GaribaldiDaniel L KellySusan G LetcherJorge A MeaveLuis Merino-MartínVíctor H MezaSusana Ochoa-GaonaMiguel Olvera-VargasNeptalí Ramírez-MarcialFernando J Tun-DzulMirna Valdez-HernándezEduardo VelázquezDavid A WhiteGuadalupe Williams-LineraRakan A ZahawiJesús MuñozGlobal biodiversity is negatively affected by anthropogenic climate change. As species distributions shift due to increasing temperatures and precipitation fluctuations, many species face the risk of extinction. In this study, we explore the expected trend for plant species distributions in Central America and southern Mexico under two alternative Representative Concentration Pathways (RCPs) portraying moderate (RCP4.5) and severe (RCP8.5) increases in greenhouse gas emissions, combined with two species dispersal assumptions (limited and unlimited), for the 2061-2080 climate forecast. Using an ensemble approach employing three techniques to generate species distribution models, we classified 1924 plant species from the region's (sub)tropical forests according to IUCN Red List categories. To infer the spatial and taxonomic distribution of species' vulnerability under each scenario, we calculated the proportion of species in a threat category (Vulnerable, Endangered, Critically Endangered) at a pixel resolution of 30 arc seconds and by family. Our results show a high proportion (58-67%) of threatened species among the four experimental scenarios, with the highest proportion under RCP8.5 and limited dispersal. Threatened species were concentrated in montane areas and avoided lowland areas where conditions are likely to be increasingly inhospitable. Annual precipitation and diurnal temperature range were the main drivers of species' relative vulnerability. Our approach identifies strategic montane areas and taxa of conservation concern that merit urgent inclusion in management plans to improve climatic resilience in the Mesoamerican biodiversity hotspot. Such information is necessary to develop policies that prioritize vulnerable elements and mitigate threats to biodiversity under climate change.https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0297840&type=printable |
| spellingShingle | Miguel A Ortega Luis Cayuela Daniel M Griffith Angélica Camacho Indiana M Coronado Rafael F Del Castillo Blanca L Figueroa-Rangel William Fonseca Cristina Garibaldi Daniel L Kelly Susan G Letcher Jorge A Meave Luis Merino-Martín Víctor H Meza Susana Ochoa-Gaona Miguel Olvera-Vargas Neptalí Ramírez-Marcial Fernando J Tun-Dzul Mirna Valdez-Hernández Eduardo Velázquez David A White Guadalupe Williams-Linera Rakan A Zahawi Jesús Muñoz Climate change increases threat to plant diversity in tropical forests of Central America and southern Mexico. |
| title | Climate change increases threat to plant diversity in tropical forests of Central America and southern Mexico. |
| title_full | Climate change increases threat to plant diversity in tropical forests of Central America and southern Mexico. |
| title_fullStr | Climate change increases threat to plant diversity in tropical forests of Central America and southern Mexico. |
| title_full_unstemmed | Climate change increases threat to plant diversity in tropical forests of Central America and southern Mexico. |
| title_short | Climate change increases threat to plant diversity in tropical forests of Central America and southern Mexico. |
| title_sort | climate change increases threat to plant diversity in tropical forests of central america and southern mexico |
| url | https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0297840&type=printable |
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