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5 resultados encontrados para: AUTOR: Marco, Paulo de
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1.
- Artículo con arbitraje
Biodiversity recovery of Neotropical secondary forests
Rozendaal, Danaë M. A. (autora) ; Bongers, Frans (coaut.) ; Aide, T. Mitchell (coaut.) ; Álvarez Dávila, Esteban (autor) ; Ascarrunz, Nataly (autora) ; Balvanera, Patricia (autora) ; Becknell, Justin M. (coaut.) ; Bentos, Tony V. (coaut.) ; Brancalion, Pedro H. S. (autor) ; Cabral, George A. L. (coaut.) ; Calvo Rodríguez, Sofía (autora) ; Chave, Jerome (coaut.) ; César, Ricardo G. (autor) ; Chazdon, Robin L. (autor) ; Condit, Richard (autor) ; Dallinga, Jorn S. (coaut.) ; Almeida Cortez, Jarcilene Silva (coaut.) ; De Jong, Bernardus Hendricus Jozeph (autor) ; Oliveira, Alexandre A. de (autor) ; Denslow, Julie S. (autor) ; Dent, Daisy H. (coaut.) ; DeWalt, Saara J. (autora) ; Dupuy, Juan Manuel (autor) ; Durán, Sandra M. (autora) ; Dutrieux, Loïc P. (coaut.) ; Espírito Santo, Mario M. (autor) ; Fandino, María C. (autora) ; Fernandes, G. Wilson (autor) ; Finegan, Bryan (coaut.) ; García, Hernando (autor) ; González Valdivia, Noel Antonio (autor) ; Granda Moser, Vanessa (autora) ; Hall, Jefferson S. (autor) ; Hernández Stefanoni, José Luis (autor) ; Hubbell, Stephen (autor) ; Jakovac, Catarina C. (autora) ; Hernández, Alma Johanna (autora) ; Junqueira, André B. (autor) ; Kennard, Deborah (coaut.) ; Larpin, Denis (autora) ; Letcher, Susan G. (autora) ; Licona, Juan Carlos (autor) ; Lebrija Trejos, Edwin (autor) ; Marín Spiotta, Erika (autora) ; Martínez Ramos, Miguel (autor) ; Massoca, Paulo E. S. (autor) ; Meave, Jorge A. (autor) ; Mesquita, Rita C. G. (autora) ; Mora Ardila, Francisco (autor) ; Müller, Sandra C. (autora) ; Muñoz, Rodrigo (autor) ; Nolasco de Oliveira Neto, Silvio (autor) ; Norden, Natalia (autora) ; Nunes, Yule R. F. (coaut.) ; Ochoa Gaona, Susana (autora) ; Ortiz Malavassi, Edgar (autor) ; Ostertag, Rebecca (autora) ; Peña Claros, Marielos (autor) ; Pérez García, Eduardo A. (autor) ; Piotto, Daniel (autor) ; Powers, Jennifer S. (autora) ; Aguilar Cano, José (autor) ; Rodríguez Buritica, Susana (autora) ; Rodríguez Velázquez, Jorge (autor) ; Romero Romero, Marco Antonio (autor) ; Ruíz, Jorge (autor) ; Sánchez Azofeifa, Gerardo Arturo (autor) ; Silva de Almeida, Arlete (autor) ; Silver, Whendee L. (coaut.) ; Schwartz, Naomi B. (coaut.) ; Thomas, William Wayt (coaut.) ; Toledo, Marisol (autora) ; Uriarte, María (autora) ; Valadares de Sá Sampaio, Everardo (autor) ; van Breugel, Michiel (autor) ; Van Der Wal, Hans (coaut.) ; Martins, Sebastião Venâncio (autor) ; Veloso, María D. M. (autor) ; Vester, Hans F. M. (coaut.) ; Vicentini, Alberto (autor) ; Vieira, Ima C. G. (coaut.) ; Villa, Pedro (autor) ; Williamson, G. Bruce (autor) ; Zanini, Kátia J. (autora) ; Zimmerman, Jess (coaut.) ; Poorter, Lourens (coaut.) ;
Disponible en línea
Contenido en: Science Advances Vol. 5, no. 3, eaau3114 (March 2019), p. 1-10 ISSN: 2375-2548
PDF PDF
Resumen en: Inglés |
Resumen en inglés

Old-growth tropical forests harbor an immense diversity of tree species but are rapidly being cleared, while secondary forests that regrow on abandoned agricultural lands increase in extent. We assess how tree species richness and composition recover during secondary succession across gradients in environmental conditions and anthropogenic disturbance in an unprecedented multisite analysis for the Neotropics. Secondary forests recover remarkably fast in species richness but slowly in species composition. Secondary forests take a median time of five decades to recover the species richness of old-growth forest (80% recovery after 20 years) based on rarefaction analysis. Full recovery of species composition takes centuries (only 34% recovery after 20 years). A dual strategy that maintains both old-growth forests and species-rich secondary forests is therefore crucial for biodiversity conservation in human-modified tropical landscapes.


Resumen en español

El Golfo de México es una región natural privilegiada de gran importancia ecológica. En su zona costera confluyen distintas actividades de importancia comercial, como la extracción de petróleo, las pesquerías, el turismo, entre otras, mismas que requieren de estudios científicos precisos para su adecuado manejo y administración. En este trabajo se presentan los preparativos para la creación de una Red mexicana multinstitucional de radares oceanográficos, los cuales se sumaran a los distintos esfuerzos científicos enfocados a entender mejor la dinámica de las aguas del Golfo de México. La red de radares medirá corrientes superficiales cercanas a la costa (de 0 a 200 km mar adentro) de forma sinóptica y en tiempo real, en todo el litoral del Golfo de México que corresponde al territorio nacional. La Red de Radares entrará en operación durante 2016-2018 y se espera que sea permanente.

Resumen en inglés

The Gulf of Mexico is a privilege natural area of great ecological importance. On its coastal zone, different important economic activities converge, like oil extraction, fisheries, tourism, etc, that require precise scientific studies for its correct management and administration. In this work we present the plans towards the creation of the Mexican Multi-Institutional Radar Network, as part of the scientific efforts focalized to understand better the dynamics of the Gulf of Mexico waters. The Network will allow to synoptically measure the surface currents near the coast (from 0 to 200 km offshore) in real time, covering the whole coasts of the Gulf of Mexico within the Mexican side. The Radar Network will become active during 2016 to 2018 and is expected to be permanent.


3.
- Artículo con arbitraje
*Solicítelo con su bibliotecario/a
The conservation status of the world’s reptiles
Böhm, Monika ; Collen, Ben (coaut.) ; Baillie, Jonathan E. M. (coaut.) ; Bowles, Philip (coaut.) ; Chanson, Janice (coaut.) ; Cox, Neil (coaut.) ; Hammerson, Geoffrey (coaut.) ; Hoffmann, Michael (coaut.) ; Livingstone, Suzanne R. (coaut.) ; Ram, Mala (coaut.) ; Rhodin, Anders G. J. (coaut.) ; Stuart, Simon N. (coaut.) ; van Dijk, Peter Paul (coaut.) ; Young, Bruce E. (coaut.) ; Afuang, Leticia E. (coaut.) ; Aghasyan, Aram (coaut.) ; García, Andrés (coaut.) ; Aguilar, César (coaut.) ; Ajtic, Rastko (coaut.) ; Akarsu, Ferdi (coaut.) ; Alencar, Laura R.V. (coaut.) ; Allison, Allen (coaut.) ; Ananjeva, Natalia (coaut.) ; Anderson, Steve (coaut.) ; Andrén, Claes (coaut.) ; Ariano Sánchez, Daniel (coaut.) ; Arredondo, Juan Camilo (coaut.) ; Auliya, Mark (coaut.) ; Austin, Christopher C. (coaut.) ; Avci, Aziz (coaut.) ; Baker, Patrick J. (coaut.) ; Barreto Lima, André F. (coaut.) ; Barrio Amorós, César L. (coaut.) ; Basu, Dhruvayothi (coaut.) ; Bates, Michael F. (coaut.) ; Batistella, Alexandre (coaut.) ; Bauer, Aaron (coaut.) ; Bennett, Daniel (coaut.) ; Böhme, Wolfgang (coaut.) ; Broadley, Don (coaut.) ; Brown, Rafe (coaut.) ; Burgess, Joseph (coaut.) ; Captain, Ashok (coaut.) ; Carreira, Santiago (coaut.) ; Castañeda, Maria del Rosario (coaut.) ; Castro, Fernando (coaut.) ; Catenazzi, Alessandro (coaut.) ; Cedeño-Vázquez, J.R. (coaut.) ; Chapple, David G. (coaut.) ; Cheylan, Marc (coaut.) ; Cisneros Heredia, Diego F. (coaut.) ; Cogalniceanu, Dan (coaut.) ; Cogger, Hal (coaut.) ; Corti, Claudia (coaut.) ; Costa, Gabriel C. (coaut.) ; Couper, Patrick J. (coaut.) ; Courtney, Tony (coaut.) ; Crnobrnja Isailovic, Jelka (coaut.) ; Crochet, Pierre André (coaut.) ; Crother, Brian (coaut.) ; Cruz, Felix (coaut.) ; Daltry, Jennifer C. (coaut.) ; Ranjit Daniels, R. J. (coaut.) ; Das, Indraneil (coaut.) ; Silva, Anslemde (coaut.) ; Diesmos, Arvin C. (coaut.) ; Dirksen, Lutz (coaut.) ; Doan, Tiffany M. (coaut.) ; Dodd Jr., C. Kenneth (coaut.) ; Doody, J. Sean (coaut.) ; Dorcas, Michael E. (coaut.) ; Barros Filho, Jose Duarte de (coaut.) ; Egan, Vincent T. (coaut.) ; El Mouden, El Hassan (coaut.) ; Embert, Dirk (coaut.) ; Espinoza, Robert E. (coaut.) ; Fallabrino, Alejandro (coaut.) ; Feng, Xie (coaut.) ; Feng, Zhao Jun (coaut.) ; Fitzgerald, Lee (coaut.) ; Flores Villela, Oscar Alberto (coaut.) ; França, Frederico G. R. (coaut.) ; Frost, Darrell (coaut.) ; Gadsden, Hector (coaut.) ; Gamble, Tony (coaut.) ; Ganesh, S. R. (coaut.) ; Garcia, Miguel A. (coaut.) ; García Pérez, Juan E. (coaut.) ; Gatus, Joey (coaut.) ; Gaulke, Maren (coaut.) ; Geniez, Philippe (coaut.) ; Georges, Arthur (coaut.) ; Gerlach, Justin (coaut.) ; Goldberg, Stephen (coaut.) ; T. Gonzalez, Juan Carlos (coaut.) ; Gower, David J. (coaut.) ; Grant, Tandora (coaut.) ; Greenbaum, Eli (coaut.) ; Grieco, Cristina (coaut.) ; Guo, Peng (coaut.) ; Hamilton, Alison M. (coaut.) ; Hare, Kelly (coaut.) ; Blair Hedges, S. (coaut.) ; Heideman, Neil (coaut.) ; Hilton Taylor, Craig (coaut.) ; Hitchmough, Rod (coaut.) ; Hollingsworth, Bradford (coaut.) ; Hutchinson, Mark (coaut.) ; Ineich, Ivan (coaut.) ; Iverson, John (coaut.) ; Jaksic, Fabian M. (coaut.) ; Jenkins, Richard (coaut.) ; Joger, Ulrich (coaut.) ; Jose, Reizl (coaut.) ; Kaska, Yakup (coaut.) ; Kaya, Uğur (coaut.) ; Scott Keogh, J. (coaut.) ; Köhler, Gunther (coaut.) ; Kuchling, Gerald (coaut.) ; Kumlutas, Yusuf (coaut.) ; Kwet, Axel (coaut.) ; La Marca, Enrique (coaut.) ; Lamar, William (coaut.) ; Lane, Amanda (coaut.) ; Lardner, Bjorn (coaut.) ; Latta, Craig (coaut.) ; Latta, Gabrielle (coaut.) ; Lau, Michael (coaut.) ; Lavin, Pablo (coaut.) ; Lawson, Dwight (coaut.) ; LeBreton, Matthew (coaut.) ; Lehr, Edgar (coaut.) ; Limpus, Duncan (coaut.) ; Lipczynski, Nicola (coaut.) ; Lobo, Aaron S. (coaut.) ; López Luna, Marco Antonio (coaut.) ; Luiselli, Luca (coaut.) ; Lukoschek, Vimoksalehi (coaut.) ; Lundberg, Mikael (coaut.) ; Lymberakis, Petros (coaut.) ; Macey, Robert (coaut.) ; Magnusson, William E. (coaut.) ; Mahler, D. Luke (coaut.) ; Malhotra, Anita (coaut.) ; Mariaux, Jean (coaut.) ; Maritz, Bryan (coaut.) ; V. Marques, Otavio A. (coaut.) ; Márquez, Rafael (coaut.) ; Martins, Marcio (coaut.) ; Masterson, Gavin (coaut.) ; Mateo, José A. (coaut.) ; Mathew, Rosamma (coaut.) ; Mathews, Nixon (coaut.) ; Mayer, Gregory (coaut.) ; McCranie, James R. (coaut.) ; Measey, G. John (coaut.) ; Mendoza Quijano, Fernando (coaut.) ; Menegon, Michele (coaut.) ; Métrailler, Sébastien (coaut.) ; Milton, David A. (coaut.) ; Montgomery, Chad (coaut.) ; A. Morato, Sérgio A. (coaut.) ; Mott, Tami (coaut.) ; Muñoz Alonso, Luis Antonio (coaut.) ; Murphy, John (coaut.) ; Nguyen, Truong Q. (coaut.) ; Nilson, Göran (coaut.) ; Nogueira, Cristiano (coaut.) ; Núñez, Herman (coaut.) ; Orlov, Nikolai (coaut.) ; Ota, Hidetoshi (coaut.) ; Ottenwalder, José (coaut.) ; Papenfuss, Theodore (coaut.) ; Pasachnik, Stesha (coaut.) ; Passos, Paulo (coaut.) ; G. Pauwels, Olivier S. (coaut.) ; Pérez Buitrago, Néstor (coaut.) ; Pérez Mellado, Valentín (coaut.) ; Pianka, Eric R. (coaut.) ; Pleguezuelos, Juan (coaut.) ; Pollock, Caroline (coaut.) ; Ponce Campos, Paulino (coaut.) ; Powell, Robert (coaut.) (1948-) ; Pupin, Fabio (coaut.) ; Quintero Díaz, Gustavo Ernesto (coaut.) ; Radder, Raju (coaut.) ; Ramer, Jan (coaut.) ; Rasmussen, Arne R. (coaut.) ; Raxworthy, Chris (coaut.) ; Reynolds, Robert (coaut.) ; Richman, Nadia (coaut.) ; Rico, Edmund L. (coaut.) ; Riservato, Elisa (coaut.) ; Rivas, Gilson (coaut.) ; da Rocha, Pedro L.B. (coaut.) ; Rödel, Mark Oliver (coaut.) ; Rodríguez Schettino, Lourdes (coaut.) ; Roosenburg, Willem M. (coaut.) ; Ross, James Perran (coaut.) ; Sadek, Riyad (coaut.) ; Sanders, Kate (coaut.) ; Santos Barrera, Georgina (coaut.) ; Schleich, Hermann H. (coaut.) ; Schmidt, Benedikt R. (coaut.) ; Schmitz, Andreas (coaut.) ; Sharifi, Mozafar (coaut.) ; Shea, Glenn (coaut.) ; Shi, Hai Tao (coaut.) ; Shine, Richard (coaut.) ; Sindaco, Roberto (coaut.) ; Slimani, Tahar (coaut.) ; Somaweera, Ruchira (coaut.) ; Spawls, Steve (coaut.) ; Stafford, Peter (coaut.) ; Stuebing, Rob (coaut.) ; Sweet, Sam (coaut.) ; Sy, Emerson (coaut.) ; Temple, Helen J. (coaut.) ; Tognelli, Marcelo F. (coaut.) ; Tolley, Krystal (coaut.) ; Tolson, Peter J. (coaut.) ; Tuniyev, Boris (coaut.) ; Tuniyev, Sako (coaut.) ; Üzüm, Nazan (coaut.) ; van Buurt, Gerard (coaut.) ; Van Sluys, Monique (coaut.) ; Velasco, Alvaro (coaut.) ; Vences, Miguel (coaut.) ; Vesely, Milan (coaut.) ; Vinke, Sabine (coaut.) ; Vinke, Thomas (coaut.) ; Vogel, Gernot (coaut.) ; Vogrin, Milan (coaut.) ; Vogt, Richard C. (coaut.) ; Wearn, Oliver R. (coaut.) ; Werner, Yehudah L. (coaut.) ; Whiting, Martin J. (coaut.) ; Wiewandt, Thomas (coaut.) ; Wilkinson, John (coaut.) ; Wilson, Byron (coaut.) ; Wren, Sally (coaut.) ; Zamin, Tara (coaut.) ; Zhou, Kaiya (coaut.) ; Zug, George (coaut.) ;
Contenido en: Biological Conservation Vol. 157, (January 2013), p. 372–385 ISSN: 0006-3207
Bibliotecas: San Cristóbal
Cerrar
SIBE San Cristóbal
37364-20 (Disponible)
Disponibles para prestamo: 1
Nota: Solicítelo con su bibliotecario/a
Resumen en: Inglés |
Resumen en inglés

Effective and targeted conservation action requires detailed information about species, their distribution, systematics and ecology as well as the distribution of threat processes which affect them. Knowledge of reptilian diversity remains surprisingly disparate, and innovative means of gaining rapid insight into the status of reptiles are needed in order to highlight urgent conservation cases and inform environmental policy with appropriate biodiversity information in a timely manner. We present the first ever global analysis of extinction risk in reptiles, based on a random representative sample of 1500 species (16% of all currently known species). To our knowledge, our results provide the first analysis of the global conservation status and distribution patterns of reptiles and the threats affecting them, highlighting conservation priorities and knowledge gaps which need to be addressed urgently to ensure the continued survival of the world’s reptiles. Nearly one in five reptilian species are threatened with extinction, with another one in five species classed as Data Deficient. The proportion of threatened reptile species is highest in freshwater environments, tropical regions and on oceanic islands, while data deficiency was highest in tropical areas, such as Central Africa and Southeast Asia, and among fossorial reptiles. Our results emphasise the need for research attention to be focussed on tropical areas which are experiencing the most dramatic rates of habitat loss, on fossorial reptiles for which there is a chronic lack of data, and on certain taxa such as snakes for which extinction risk may currently be underestimated due to lack of population information. Conservation actions specifically need to mitigate the effects of human-induced habitat loss and harvesting, which are the predominant threats to reptiles.


4.
Artículo
*En hemeroteca, SIBE-Chetumal
Can species distribution modelling provide estimates of population densities?: a case study with jaguars in the neotropics
Tôrres, Natália M. (autora) ; De Marco Júnior, Paulo (autor) ; Santos, Thiago (autor) ; Silveira, Leandro (autor) ;
Contenido en: Diversity and Distribution Vol. 18, no. 5-6 (May-June 2012), p. 615-627 ISSN: 1366-9516
Bibliotecas: Chetumal
Cerrar
SIBE Chetumal
51865-10 (Disponible)
Disponibles para prestamo: 1
Nota: En hemeroteca, SIBE-Chetumal
Resumen en: Inglés |
Resumen en inglés

Aim To test the prediction that environmental suitability derived from species distribution modelling (SDM) could be a surrogate for jaguar local population density estimates. Location Americas. Methods We used 1409 occurrence records of jaguars to model the distribution of the species using 11 SDM methods. We tested whether models’ suitability is linearly correlated with jaguar population densities estimated from 37 different locations. We evaluated whether the relationship between density and suitability forms a constraint envelope, in which higher densities are found mainly in regions with high suitability, whereas low densities can occur in regions with variable suitability. We tested this using heteroscedasticity test and quantile regressions. Results A positive linear relationship between suitability and jaguar density was found only for four methods [bioclimatic envelope (BIOCLIM), genetic algorithm for rule set production (GARP), maximum entropy (Maxent) and generalized boosting models (GBM)], but with weak explanatory power. BIOCLIM showed the strongest relationship.

Variance of suitability for lower densities values was larger than for higher values for many of the SDM models used, but the quantile regression was significantly positive only for BIOCLIM and random forests (RF). RF and GBM provided the most accurate models when measured with the standard SDM evaluation metrics, but possess poor relationship with local density estimates. Main conclusions Results indicate that the relationship between density and suitability could be better described as a triangular constraint envelope than by a straight positive relationship, and some of the SDM methods tested here were able to discriminate regions with high or low local population densities. Low jaguar densities can occur in areas with low or high suitability, whereas high values are restricted to areas where the suitability is greater. In high suitability areas but with low jaguar density estimates, we discuss how extrinsic factors driving abundance could act at local scales and then prevent higher densities that would be expected by the favourable regional environmental conditions.


Resumen en español

A major focus of geographical ecology and macroecology is to understand the causes of spatially structured ecological patterns. However, achieving this understanding can be complicated when using multiple regression, because the relative importance of explanatory variables, as measured by regression coefficients, can shift depending on whether spatially explicit or non-spatial modeling is used. However, the extent to which coefficients may shift and why shifts occur are unclear. Here, we analyze the relationship between environmental predictors and the geographical distribution of species richness, body size, range size and abundance in 97 multi-factorial data sets. Our goal was to compare standardized partial regression coefficients of non-spatial ordinary least squares regressions (i.e. models fitted using ordinary least squares without taking autocorrelation into account; ‘‘OLS models’’ hereafter) and eight spatial methods to evaluate the frequency of coefficient shifts and identify characteristics of data that might predict when shifts are likely. We generated three metrics of coefficient shifts and eight characteristics of the data sets as predictors of shifts.

Typical of ecological data, spatial autocorrelation in the residuals of OLS models was found in most data sets. The spatial models varied in the extent to which they minimized residual spatial autocorrelation. Patterns of coefficient shifts also varied among methods and datasets, although the magnitudes of shifts tended to be small in all cases. We were unable to identify strong predictors of shifts, including the levels of autocorrelation in either explanatory variables or model residuals. Thus, changes in coefficients between spatial and non-spatial methods depend on the method used and are largely idiosyncratic, making it difficult to predict when or why shifts occur. We conclude that the ecological importance of regression coefficients cannot be evaluated with confidence irrespective of whether spatially explicit modelling is used or not. Researchers may have little choice but to be more explicit about the uncertainty of models and more cautious in their interpretation.