Performance of an automated conservation status assessment for the megadiverse vascular flora of Brazil
Tài liệu tham khảo
Alves-Pinto, 2022, The role of different governance regimes in reducing native vegetation conversion and promoting regrowth in the Brazilian Amazon, Biological Conservation, 267, 10.1016/j.biocon.2022.109473
BFG – Brazilian Flora Group. (2015). Growing knowledge: an overview of Seed Plant diversity in Brazil. Rodriguésia 66(4): 1085-1113. 2015 https://doi.org/10.1590/2175-7860201566411.
BFG – Brazilian Flora Group, 2021, Brazilian Flora 2020: Leveraging the power of a collaborative scientific network, Taxon
Brummitt, 2015, Green plants in the red: A baseline global assessment for the IUCN sampled Red List Index for plants, PloS one, 10, 10.1371/journal.pone.0135152
Carvalho, G. flora: Tools for Interacting with the Brazilian Flora 2020, available at https://github.com/gustavobio/flora.
CDB - Convention on Biological Diversity. (2010). Global strategy for plant conservation: Technical rationale, justification for updating and suggested milestones and indicators. Tenth meeting of the Conference of the Parties to the Convention on Biological Diversity, 18–29 October 2010, Nagoya, Aichi Prefecture, Japan. In Conference of the Parties to the Convention on Biological Diversity, Nagoya, Japan, 18–29 October 2010. Available at: https://www.cbd.int/doc/meetings/cop/cop-10/official/cop-10-19-en.pdf.
CNC Flora – Centro Nacional de Conservação da Flora. Apresentação. Available at: http://cncflora.jbrj.gov.br/portal, access on Feb. 8th 2022.
Dauby, 2017, ConR: An R package to assist large-scale multispecies preliminary conservation assessments using distribution data, Ecology and Evolution, 7, 11292, 10.1002/ece3.3704
Fernandes-Filho, 2022, The unique and endangered Campo Rupestre vegetation and protected areas in the Iron Quadrangle, Minas Gerais, Brazil, Journal for Nature Conservation, 126131
Fernandes, 2017, Dismantling Brazil's science threatens global biodiversity heritage, Perspectives in Ecology and Conservation, 15, 239, 10.1016/j.pecon.2017.07.004
Giam, 2010, Relative need for conservation assessments of vascular plant species among ecoregions, Journal of Biogeography, 38, 55, 10.1111/j.1365-2699.2010.02383.x
Hayward, 2015, Ambiguity in guideline definitions introduces assessor bias and influences consistency in IUCN Red List status assessments, Frontiers in Ecology and Evolution, 3, 87, 10.3389/fevo.2015.00087
Diele-Viegas, Luisa Maria and Sales, Lilian P. and Hipólito, Juliana and Amorim, Claudjane and Pereira, Eder J. A. L. and Ferreira, Paulo and folta, cody and Ferrante, Lucas and Fearnside, Philip and Malhado, Ana Claudia and Rocha, Carlos Frederico Duarte and Vale, Mariana M. (2022) Fire Regimes in Brazil are Not Explained by Climate Change Alone. https://doi.org/10.2139/ssrn.4009695.
Hijmans, R.J, Phillips, S., Leathwick, J. and Elith, J. (2011), Package ‘dismo’. Available online at: http://cran.r-project.org/web/packages/dismo/index.html.
INPE – Instituto Nacional de Pesquisas Espaciais. Coordenação Geral de Observação da Terra. Programa de monitoramento da Amazônia e demais biomas. Disponível em: http://terrabrasilis.dpi.inpe.br/downloads/. Acessed in: Jan 14th. 2022.
IUCN Standards and Petitions Committee. 2022. Guidelines for Using the IUCN Red List Categories and Criteria. Version 15. Prepared by the Standards and Petitions Committee. Downloadable from https://www.iucnredlist.org/documents/RedListGuidelines.pdf.
IUCN. 2021. The IUCN Red List of Threatened Species. Version 2021-3. https://www.iucnredlist.org. Accessed on [08 Feb 2022].
Kougioumoutzis, 2021, Extinction risk assessment of the Greek endemic flora, Biology, 10, 195, 10.3390/biology10030195
Lahsen, M., Bustamante, M. M., & Dalla-Nora, E. L. (2016). Undervaluing and overexploiting the Brazilian Cerrado at our peril. Environment: science and policy for sustainable development. https://doi.org/10.1080/00139157.2016.1229537.
Leão, 2021, Projected impacts of climate and land use changes on the habitat of Atlantic Forest plants in Brazil, Global Ecology and Biogeography, 30, 2016, 10.1111/geb.13365
Le Breton, 2019, Using IUCN criteria to perform rapid assessments of at-risk taxa, Biodiversity and Conservation, 28, 863, 10.1007/s10531-019-01697-9
Le Roux, 2019, Recent anthropogenic plant extinctions differ in biodiversity hotspots and coldspots, Current Biology, 29, 2912, 10.1016/j.cub.2019.07.063
Levin, 2022, Using publicly available data to conduct rapid assessments of extinction risk, Conservation Science and Practice, e12628
Lima, 2021, plantR: An R package and workflow for managing species records from biological collections, Methods in Ecology and Evolution
Martinelli, G. & Moraes, M.A. (2013) Livro Vermelho da flora do Brasil. Instituto de Pesquisa Jardim Botânico, Rio de Janeiro, Brazil. .
Martins, 2018, Brazilian efforts towards achieving a comprehensive extinction risk assessment for its known flora, Rodriguésia, 69, 1529, 10.1590/2175-7860201869403
Myers, 2000, Biodiversity hotspots for conservation priorities, Nature, 403, 853, 10.1038/35002501
Názaro, 2021, Preliminary assessment of the conservation status of timber species in the threatened piedmont dry forest of northwestern Argentina, Journal for Nature Conservation, 59, 10.1016/j.jnc.2020.125947
Nic Lughadha, 2020, Extinction risk and threats to plants and fungi, Plants, People, Planet, 2, 389, 10.1002/ppp3.10146
Polizel, 2021, Analysing the dynamics of land use in the context of current conservation policies and land tenure in the Cerrado–MATOPIBA region (Brazil), Land Use Policy, 109, 10.1016/j.landusepol.2021.105713
Pompeu, 2022, Legal deforestation can jeopardize plant diversity conservation in an agricultural frontier in the brazilian Cerrado: A spatial explicit contribution to Santana and Simon (2022), Biodiversity and Conservation, 10.1007/s10531-022-02455-0
Pompeu, 2022, Spatial records of the endemic vascular plants from Brazil, Mendeley Data, V1
Ramos, E., Nuvoloni, F. M., & do Nascimento Lopes, E. R. (2022). Landscape Transformations and loss of Atlantic Forests: challenges for conservation. Journal for Nature Conservation, 66, 126152. .
Ribeiro, 2018, The effectiveness of protected areas and indigenous lands in representing threatened plant species in Brazil, Rodriguésia, 69, 1539, 10.1590/2175-7860201869404
Ribeiro, M. C., Metzger, J. P., Martensen, A. C., Ponzoni, F. J., & Hirota, M. M. (2009). The Brazilian Atlantic Forest: How much is left, and how is the remaining forest distributed? Implications for conservation. Biological conservation, 142 (6), 1141-1153. https://doi.org/10.1016/j.biocon.2009.02.021.
Rodrigues, 2006, The value of the IUCN Red List for conservation, Trends in ecology & evolution, 21, 71, 10.1016/j.tree.2005.10.010
Salariato, 2021, Threat patterns and conservation status of endemic vascular flora in Argentina: A quantitative perspective, Phytotaxa, 520, 21, 10.11646/phytotaxa.520.1.2
Schulz, 2021, Applied pesticide toxicity shifts toward plants and invertebrates, even in GM crops, Science, 372, 81, 10.1126/science.abe1148
Sonter, 2018, Mining and biodiversity: Key issues and research needs in conservation science, Proceedings of the Royal Society B, 285, 20181926, 10.1098/rspb.2018.1926
Souza, 2019, Geographic distribution of the threatened palm Euterpe edulis mart. In the atlantic forest: Implications for conservation, Oecologia Australis, 23, 10.4257/oeco.2019.2303.19
Souza, C. M., Z Shimbo, J., Rosa, M. R., Parente, L. L., A Alencar, A., Rudorff, B. F., .. & Azevedo, T. (2020). Reconstructing three decades of land use and land cover changes in brazilian biomes with landsat archive and earth engine. Remote Sensing, 12(17), 2735. .
Stévart, 2019, A third of the tropical African flora is potentially threatened with extinction, Science Advances, 5, eaax9444, 10.1126/sciadv.aax9444
Strassburg, 2017, Moment of truth for the Cerrado hotspot, Nature Ecology & Evolution, 1, 1, 10.1038/s41559-017-0099
Walker, Barnaby E., Tarciso C. Leão, Steven P. Bachman, Eve Lucas, and Eimear N. Lughadha. 2021. Evidence-based Guidelines for Developing Automated Conservation Assessment Methods. EcoEvoRxiv. June 4. https://doi.org/10.32942/osf.io/zxq6s.