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Registros recuperados : 22 | |
3. | | MEIR, P.; ROWLAND, L.; COSTA, A. C. L. da; MENCUCCINI, M.; CHRISTOFFERSEN, B.; VASCONCELOS, S.; KRUIJT, B.; FERREIRA, L. Responses to severe drought by tropical forest trees. In: ANNUAL CONFERENCE OF THE SOCIETY FOR TROPICAL ECOLOGY, 2015, Zürich. Resilience of tropical ecosystems - future challenges and opportunities. Zurich: GTO, 2015. p. 159. Biblioteca(s): Embrapa Amazônia Oriental. |
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4. | | MEIR, P.; ROWLAND, L.; COSTA, A. C. L. da; VASCONCELOS, S.; MENCUCCINI, M.; CHRISTOFFERSEN, B.; FERREIRA, L. Resistance and mortality in tropical forest trees during experimental drought. In: ESA ANNUAL MEETING, 100., 2015, Baltimore. Book of Abstracts. [S.l.: s.n.], 2015. Biblioteca(s): Embrapa Amazônia Oriental. |
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5. | | ROWLAND, L.; COSTA, A. da; OLIVEIRA, R.; BINKS, O.; SITCH, S.; VASCONCELOS, S. S.; OLIVEIRA, A.; SALMON, Y.; FERREIRA, L.; MENCUCCINI, M.; MEIR, P. Is sap flow a good indicator of drought-induced mortality risk in tropical rainforest. In: ANNUAL MEETING OF THE ASSOCIATION FOR TROPICAL BIOLOGY AND CONSERVATION, 53., 2016, Montpellier. Tropical ecology and society: reconciling conservation and sustainable use of biodiversity: program & abstracts. [S.l.]: ATBC, 2016. p. 204. Biblioteca(s): Embrapa Amazônia Oriental. |
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6. | | BINKS, O.; MEIR, P.; ROWLAND, L.; COSTA, A. C. L. da; VASCONCELOS, S. S.; OLIVEIRA, A. A. R. de; FERREIRA, L.; MENCUCCINI, M. Limited acclimation in leaf anatomy to experimental drought in tropical rainforest trees. Tree Physiology, v. 36, n. 12, p. 1550-1561, 2016. Biblioteca(s): Embrapa Amazônia Oriental. |
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7. | | ROWLAND, L.; MEIR, P.; MENCUCCINI, M.; COSTA A. da; BINKS, O.; OLIVEIRA, R.; MERCADO, L.; VASCONCELOS, S. S.; OLIVEIRA, A.; CHRISTOFFERSEN, B.; FERREIRA, L.; GRACE, J.; SITCH, S. Does intra-specific variation prevent division of tropical trees into drought sensitive and resistant groups? In: ANNUAL MEETING OF THE ASSOCIATION FOR TROPICAL BIOLOGY AND CONSERVATION, 53., 2016, Montpellier. Tropical ecology and society: reconciling conservation and sustainable use of biodiversity: program & abstracts. [S.l.]: ATBC, 2016. p. 317. Biblioteca(s): Embrapa Amazônia Oriental. |
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8. | | MEIR, P.; ROWLAND, L.; COSTA, A. da; MENCUCCINI, M.; OLIVEIRA, A.; BINKS, O.; CHRISTOFFERSEN, B.; ELIANE, M.; VASCONCELOS, S.; KRUIJT, B.; FERREIRA, L. Drought and tree mortality in tropical rainforest: understanding and differentiating functional responses. In: AGU FALL MEETING, 2014, San Francisco. [Proceedings]. [San Francisco]: AGU, 2014. Biblioteca(s): Embrapa Amazônia Oriental. |
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9. | | MEIR, P.; ROWLAND, L.; COSTA, A. C. L. da; MENCUCCINI, M.; OLIVEIRA, R.; BINKS, O.; VASCONCELOS, S. S.; OLIVEIRA, A. de; SALMON, Y.; FERREIRA, L.; MEIR, P. The effects of drought on respiration in tropical rainforest. In: ANNUAL MEETING OF THE ASSOCIATION FOR TROPICAL BIOLOGY AND CONSERVATION, 53., 2016, Montpellier. Tropical ecology and society: reconciling conservation and sustainable use of biodiversity: program & abstracts. [S.l.]: ATBC, 2016. p. 202. Biblioteca(s): Embrapa Amazônia Oriental. |
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10. | | BINKS, O.; MEIR, P.; ROWLAND, L.; COSTA, A. C. L. da; VASCONCELOS, S. S.; OLIVEIRA, A. A. R. de; FERREIRA, L.; CHRISTOFFERSEN, B.; NARDINI, A.; MENCUCCINI, M. Plasticity in leaf-level water relations of tropical rainforest trees in response to experimental drought. New Phytologist, v. 211, n. 2, p. 477-488, July 2016. Biblioteca(s): Embrapa Amazônia Oriental. |
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11. | | BINKS, O.; MEIR, P.; ROWLAND, L.; COSTA, A. C. L. da; VASCONCELOS, S. S.; OLIVEIRA, A. A. R. de; FERREIRA, L.; CHRISTOFFERSEN, B.; NARDINI, A.; MENCUCCINI, M. Plasticity in the water relations and anatomy of leaves of tropical rainforest trees in response to experimental drought. In: ANNUAL MEETING OF THE ASSOCIATION FOR TROPICAL BIOLOGY AND CONSERVATION, 53., 2016, Montpellier. Tropical ecology and society: reconciling conservation and sustainable use of biodiversity: program & abstracts. [S.l.]: ATBC, 2016. p. 131. Biblioteca(s): Embrapa Amazônia Oriental. |
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12. | | ROWLAND, L.; LOBO-DO-VALE, R. L.; CHRISTOFFERSEN, B. O.; MELÉM, E. A.; KRUIJT, B.; VASCONCELOS, S. S.; DOMINGUES, T.; BINKS, O. J.; OLIVEIRA, A. A. R.; METCALFE, D.; COSTA, A. C. L. da; MENCUCCINI, M.; MEIR, P. After more than a decade of soil moisture deficit tropical rainforest trees maintain photosynthetic capacity, despite increased leaf respiration. Global Change Biology, v. 21, n. 12, p. 4662-4672, Dec. 2015. Biblioteca(s): Embrapa Amazônia Oriental. |
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13. | | COSTA, A. C. L. da; ROWLAND, L.; OLIVEIRA, R. S.; OLIVEIRA, A. A. R.; BINKS, O. J.; SALMON, Y.; VASCONCELOS, S. S.; S. JUNIOR, J. A.; FERREIRA, L. V.; POYATOS, R.; MENCUCCINI, M.; MEIR, P. Stand dynamics modulate water cycling and mortality risk in droughted tropical forest. Global Change Biology, v. 24, n. 1, p. 249-258, Jan. 2018. Biblioteca(s): Embrapa Amazônia Oriental. |
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14. | | ROWLAND, L.; COSTA, A. C. L. da; GALBRAITH, D. R.; OLIVEIRA, R. S.; BINKS, O. J.; OLIVEIRA, A. A. R.; PULLEN, A. M.; DOUGHTY, C. E.; METCALFE, D. B.; VASCONCELOS, S. S.; FERREIRA, L. V.; MALHI, Y.; GRACE, J.; MENCUCCINI, M.; MEIR, P. Death from drought in tropical forests is triggered by hydraulics not carbon starvation. Nature, v. 528, N. 7580, p. 119-122, 3 Dec. 2015. Biblioteca(s): Embrapa Amazônia Oriental. |
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15. | | ROWLAND, L.; COSTA, A. C. L. da; OLIVEIRA, R. S.; BITTENCOURT, P. R. L.; GILES, A. L.; COUGHLIN, I.; COSTA, P. de B.; BARTHOLOMEW, D.; DOMINGUES, T. F.; MIATTO, R. C.; FERREIRA, L. V.; VASCONCELOS, S. S.; S. JUNIOR, J. A.; OLIVEIRA, A. A. R.; MENCUCCINI, M.; MEIR, P. The response of carbon assimilation and storage to long-term drought in tropical trees is dependent on light availability. Functional Ecology, v. 35, n. 1, p. 43-53, Jan. 2021. Publicado online em 29 set. 2020. Biblioteca(s): Embrapa Amazônia Oriental. |
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16. | | ROWLAND, L.; COSTA, A. C. L. da; OLIVEIRA, A. A. R.; OLIVEIRA, R. S.; BITTENCOURT, P. L.; COSTA, P. B.; GILES, A. L.; SOSA, A. I.; COUGHLIN, I.; GODLEE, J. L.; VASCONCELOS, S. S.; S. JUNIOR, J. A.; FERREIRA, L. V.; MENCUCCINI, M.; MEIR, P. Drought stress and tree size determine stem CO2 efflux in a tropical forest. New Phytologist, v. 218, n. 4, p. 1393-1405, June 2018. Biblioteca(s): Embrapa Amazônia Oriental. |
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17. | | ROWLAND, L.; OLIVEIRA, R. S.; BITTENCOURT, P. R. L.; GILES, A. L.; COUGHLIN, I.; COSTA, P. de B.; DOMINGUES, T.; FERREIRA, L. V.; VASCONCELOS, S. S.; S. JUNIOR, J. A.; OLIVEIRA, A. A. R.; COSTA, A. C. L. da; MEIR, P.; MENCUCCINI, M. Plant traits controlling growth change in response to a drier climate. New Phytologist, v. 229, n. 3, p. 1363-1374, Feb. 2021. Publicado Online em 27 set. 2020. Biblioteca(s): Embrapa Amazônia Oriental. |
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18. | | XU, W.; GUO, W.; SERRA-DIAZ, J. M.; SCHRODT, F.; EISERHARDT, W. L.; ENQUIST, B. J.; MAITNER, B. S.; MEROW, C.; VIOLLE, C.; ANAND, M.; BELLUAU, M.; BRUUN, H. H.; BYUN, C.; CATFORD, J. A.; CERABOLINI, B. E.; CHACÓN-MADRIGAL, E.; CICCARELLI, D.; CORNELISSEN, J. H. C.; DANG-LE, A. T.; FRUTOS, A. de; DIAS, A. S.; GIROLDO, A. B.; GUTIÉRREZ, A. G.; HATTINGH, W.; HE, T.; HIETZ, P.; HOUGH-SNEE, N.; JANSEN, S.; KATTGE, J.; KOMAC, B.; KRAFT, N. J.; KRAMER, K.; LAVOREL, S.; LUSK, C. H.; MARTIN, A. R.; MA, K.; MENCUCCINI, M.; MICHALETZ, S. T.; MINDEN, V.; MORI, A. S.; NIINEMETS, Ü.; ONODA, Y.; ONSTEIN, R. E.; PEÑUELAS, J.; PILLAR, V. D.; PISEK, J.; POUND, M. J.; ROBROEK, B. J.; SCHAMP, B.; SLOT, M.; SUN, M.; SOSINSKI, Ê. E.; SOUDZILOVSKAIA, N. A.; THIFFAULT, N.; BODEGOM, P. M. V.; PLAS, F. V. D.; ZHENG, J.; SVENNING, J.; ORDONEZ, A. Global beta-diversity of angiosperm trees is shaped by Quaternary climate change. Science Advances v. 9, n. 14, eadd8553, 2375-2548, 2023. Biblioteca(s): Embrapa Clima Temperado. |
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19. | | GUO, W.-Y.; SERRA-DIAZE, J. M.; SCHRODTF, F.; EISERHARDT, W. L.; MAITNER, B. S.; MEROW, C.; VIOLLEJ, C.; ANAND, M.; BELLUAU, M.; BRUUN, H. H.; BYUN, C.; CATFORD, J. A.; CERABOLINI, B. E. L.; CHACÓN-MADRIGAL, E.; CICCARELLI, D.; CORNELISSEN, J. H. C.; DANG-LE, A. T.; FRUTOS, A. de; DIAS, A. S.; GIROLDO, A. B.; GUO, K.; GUTIÉRREZ, A. G.; HATTINGH, W.; HE, T.; HIETZ, P.; HOUGH-SNEE, N.; JANSEN, S.; KATTGE, J.; KLEIN, T.; KOMAC, B.; KRAFT, N. J. B.; KRAMER, K.; LAVOREL, S.; LUSK, C. H.; MARTIN, A. R.; MENCUCCINI, M.; MICHALETZ, S. T.; MINDENT, V.; MORI, A. S.; NIINEMETS, Ü.; ONODA, Y.; PEÑUELAS, J.; PILLAR, V. D.; PISEK, J.; ROBROEK, B. J. M.; SCHAMP, B.; SLOT, M.; SOSINSKI JUNIOR, E. E.; SOUDZILOVSKAIA, N. A.; THIFFAULT, N.; VAN BODEGOM, P.; VAN DER PLAS, F.; WRIGHT, I. J.; XU, W.-B.; ZHENG, J.; ENQUIST, B. J.; SVENNING, J.-C. High exposure of global tree diversity to human pressure. PNAS, v. 119, n. 25, e2026733119, 2022. 11 p. Proceedings of the National Academy of Sciences of the United States of America. Biblioteca(s): Embrapa Clima Temperado. |
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20. | | TAVARES, J. V.; OLIVEIRA, R. S.; MENCUCCINI, M.; SIGNORI-MÜLLER , C.; PEREIRA, L.; DINIZ, F. C.; GILPIN, M.; ZEVALLOS, M. J. M.; SALAS YUPAYCCANA, C. A.; ACOSTA, M.; PÉREZ MULLISACA, F. M.; BARROS, F. de V.; BITTENCOURT, P.; JANCOSKI, H.; SCALON, M. C.; MARIMON, B. S.; MENOR, I. O.; MARIMON JUNIOR, B. H.; FANCOURT, M.; CHAMBERS-OSTLER, A.; ESQUIVEL-MUELBERT, A.; ROWLAND, L.; MEIR, P.; COSTA, A. C. L. da; NINA, A.; SANCHEZ, J. M. B.; TINTAYA, J. S.; CHINO, R. S. C.; BACA, J.; FERNANDES, L.; CUMAPA, E. R. M.; SANTOS, J. A. R.; TEIXEIRA, R.; TELLO, L.; UGARTECHE, M. T. M.; CUELLAR, G. A.; MARTINEZ, F.; ARAUJO-MURAKAMI, A.; ALMEIDA, E.; CRUZ, W. J. A. da; PASQUEL, J. del A.; ARAGÃO, L.; BAKER, T. R.; CAMARGO, P. B. de; BRIENEN, R.; CASTRO, W.; RIBEIRO, S. C.; SOUZA, F. C. de; COSIO, E. G.; CARDOZO, N. D.; SILVA, R. da C.; DISNEY, M.; ESPEJO, J. S.; FELDPAUSCH, T. R.; FERREIRA, L.; GIACOMIN, L.; HIGUCHI, N.; HIROTA, M.; HONORIO, E.; HUASCO, W. H.; LEWIS, S.; FLORES LLAMPAZO, G.; MALHI, Y.; MONTEAGUDO MENDOZA, A.; MORANDI, P.; MOSCOSO, V. C.; MUSCARELLA, R.; PENHA, D.; ROCHA, M. C.; RODRIGUES, G.; RUSCHEL, A. R.; SALINAS, N.; SCHLICKMANN, M.; SILVEIRA, M.; TALBOT, J.; VÁSQUEZ, R.; VEDOVATO, L.; VIEIRA, S. A.; PHILLIPS, O. L.; GLOOR, E.; GALBRAITH, D. R. Basin-wide variation in tree hydraulic safety margins predicts the carbon balance of Amazon forests. Nature, v. 617, p. 111-117, 2023. Biblioteca(s): Embrapa Amazônia Oriental. |
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Registros recuperados : 22 | |
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Registro Completo
Biblioteca(s): |
Embrapa Amazônia Oriental. |
Data corrente: |
15/05/2018 |
Data da última atualização: |
22/05/2018 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
ROWLAND, L.; COSTA, A. C. L. da; OLIVEIRA, A. A. R.; OLIVEIRA, R. S.; BITTENCOURT, P. L.; COSTA, P. B.; GILES, A. L.; SOSA, A. I.; COUGHLIN, I.; GODLEE, J. L.; VASCONCELOS, S. S.; S. JUNIOR, J. A.; FERREIRA, L. V.; MENCUCCINI, M.; MEIR, P. |
Afiliação: |
Lucy Rowland, University of Exeter; Antonio C. L. da Costa, UFPA; Alex A. R. Oliveira, MPEG; Rafael S. Oliveira, UNICAMP; Paulo L. Bittencourt, UNICAMP; Patricia B. Costa, UNICAMP; Andre L. Giles, UNICAMP; Azul I. Sosa, UNICAMP; Ingrid Coughlin, USP; John L. Godlee, University of Edinburgh; STEEL SILVA VASCONCELOS, CPATU; João A. S. Junior, UFPA; Leandro V. Ferreira, MPEG; Maurizio Mencuccini, CREAF / ICREA; Patrick Meir, University of Edinburgh / Australian National University. |
Título: |
Drought stress and tree size determine stem CO2 efflux in a tropical forest. |
Ano de publicação: |
2018 |
Fonte/Imprenta: |
New Phytologist, v. 218, n. 4, p. 1393-1405, June 2018. |
DOI: |
10.1111/nph.15024 |
Idioma: |
Inglês |
Conteúdo: |
CO2 efflux from stems (CO2_stem) accounts for a substantial fraction of tropical forest gross primary productivity, but the climate sensitivity of this flux remains poorly understood. We present a study of tropical forest CO2_stem from 215 trees across wet and dry seasons, at the world?s longest running tropical forest drought experiment site. We show a 27% increase in wet season CO2_stem in the droughted forest relative to a control forest. This was driven by increasing CO2_stem in trees 10?40 cm diameter. Furthermore, we show that drought increases the proportion of maintenance to growth respiration in trees > 20 cm diameter, including large increases in maintenance respiration in the largest droughted trees, > 40 cm diameter. However, we found no clear taxonomic influence on CO2_stem and were unable to accurately predict how drought sensitivity altered ecosystem scale CO2_stem, due to substantial uncertainty introduced by contrasting methods previously employed to scale CO2_stem fluxes. Our findings indicate that under future scenarios of elevated drought, increases in CO2_stem may augment carbon losses, weakening or potentially reversing the tropical forest carbon sink. However, due to substantial uncertainties in scaling CO2_stem fluxes, stand-scale future estimates of changes in stem CO2 emissions remain highly uncertain. |
Palavras-Chave: |
Estresse hídrico. |
Thesagro: |
Carbono; Floresta; Floresta Tropical. |
Categoria do assunto: |
K Ciência Florestal e Produtos de Origem Vegetal |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/item/176915/1/nph.15024.pdf
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Marc: |
LEADER 02323naa a2200349 a 4500 001 2091469 005 2018-05-22 008 2018 bl uuuu u00u1 u #d 024 7 $a10.1111/nph.15024$2DOI 100 1 $aROWLAND, L. 245 $aDrought stress and tree size determine stem CO2 efflux in a tropical forest.$h[electronic resource] 260 $c2018 520 $aCO2 efflux from stems (CO2_stem) accounts for a substantial fraction of tropical forest gross primary productivity, but the climate sensitivity of this flux remains poorly understood. We present a study of tropical forest CO2_stem from 215 trees across wet and dry seasons, at the world?s longest running tropical forest drought experiment site. We show a 27% increase in wet season CO2_stem in the droughted forest relative to a control forest. This was driven by increasing CO2_stem in trees 10?40 cm diameter. Furthermore, we show that drought increases the proportion of maintenance to growth respiration in trees > 20 cm diameter, including large increases in maintenance respiration in the largest droughted trees, > 40 cm diameter. However, we found no clear taxonomic influence on CO2_stem and were unable to accurately predict how drought sensitivity altered ecosystem scale CO2_stem, due to substantial uncertainty introduced by contrasting methods previously employed to scale CO2_stem fluxes. Our findings indicate that under future scenarios of elevated drought, increases in CO2_stem may augment carbon losses, weakening or potentially reversing the tropical forest carbon sink. However, due to substantial uncertainties in scaling CO2_stem fluxes, stand-scale future estimates of changes in stem CO2 emissions remain highly uncertain. 650 $aCarbono 650 $aFloresta 650 $aFloresta Tropical 653 $aEstresse hídrico 700 1 $aCOSTA, A. C. L. da 700 1 $aOLIVEIRA, A. A. R. 700 1 $aOLIVEIRA, R. S. 700 1 $aBITTENCOURT, P. L. 700 1 $aCOSTA, P. B. 700 1 $aGILES, A. L. 700 1 $aSOSA, A. I. 700 1 $aCOUGHLIN, I. 700 1 $aGODLEE, J. L. 700 1 $aVASCONCELOS, S. S. 700 1 $aS. JUNIOR, J. A. 700 1 $aFERREIRA, L. V. 700 1 $aMENCUCCINI, M. 700 1 $aMEIR, P. 773 $tNew Phytologist$gv. 218, n. 4, p. 1393-1405, June 2018.
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