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| Acesso ao texto completo restrito à biblioteca da Embrapa Mandioca e Fruticultura. Para informações adicionais entre em contato com cnpmf.biblioteca@embrapa.br. |
Registro Completo |
Biblioteca(s): |
Embrapa Mandioca e Fruticultura. |
Data corrente: |
17/11/2021 |
Data da última atualização: |
19/11/2021 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Autoria: |
KUHN, J.; ADKINS, S.; AGWANDA, B. R.; KUBRUSLI, R. A.; ALKHOVSKY, S. V.; AMARASINGHE, G. K.; TATJANA, A.-Z.; AYLLÓN, M. A.; BAHL, J.; BALKEMA BUSCHMANN, A.; BALLINGER, M. J.; BASLER, C. F.; BAVARI, S.; BEER, M.; BEJERMAN, N.; BENNETT, A. J.; DBENTE, D. A.; BERGERON, É.; BIRD, B. H.; BLAIR, C. D.; BLASDELL, K. R.; BLYSTAD, D. R.; BOJKO, J.; BORTH, W. B.; BRADFUTE, S.; BREYTA, R.; BRIESE, T.; BROWN, P. A.; BROWN, J. K.; BUCHHOLZ, U. J.; BUCHMEIER, M. J.; ABUKREYEV, A.; BURT, F.; BÜTTNER, C.; CALISHER, C. H.; CAO, M.; CASAS, I.; CHANDRAN, K.; CHARREL, R. N.; CHENG, Q.; CHIAKI, Y.; CHIAPELLO, M.; CHOI, I. R.; CIUFO, M.; CLEGG, J. C. S.; CROZIER, I.; BÓ, E. D.; DE LA TORRE, J. C.; LAMBALLERIE, X. de; SWART, R. L. de; DEBAT, H.; DHEILLY, N. M.; DI CICCO, E.; DI PAOLA, N.; DI SERIO, F.; DIETZGEN, R. G.; DIGIARO, M.; DOLNIK, O.; DREBOT, M. A.; DREXLER, J. F.; DUNDON, W. G.; DUPREX, W. P.; DÜRRWALD, R.; DYE, J. M.; EASTON, A. J.; EBIHARA, H.; ELBEAINO, T.; ERGÜNAY, K.; FERGUSON, H. W.; FOOKS, A. R.; FORGIA, M.; FORMENTY, P. B. H.; FRÁNOVÁ, J.; ASTUA, J. de F.; FU, J.; FÜRL, S.; ZACHERT, S. G.; GĀO, G. F.; GARCÍA, M. L.; SASTRE, A. G.; GARRISON, A. R.; GASKIN, T.; GONZALE, J. P. J.; GRIFTHS, A.; GOLDBERG, T. L.; GROSCHUP, M. H.; GÜNTHER, S.; HALL, R. A.; HAMMOND, J.; HAN, O.; HEPOJOKI, J.; HEWSON, R.; HONG, J.; HONG, N.; HORIE, M.; HU, J. S.; HU, T.; HUGHES, H. R.; HÜTTNER, F.; HYNDMAN, T. H.; ILYAS, M.; JALKANEN, R.; JIĀNG, D.; JONSON, G. J.; JUNGLEN, S.; KADONO, F.; KAUKINEN, K. H.; KAWATE, M.; KLEMPA, B.; KLINGSTRÖM, J.; KOBINGER, G.; KOLONIUK, I.; KONDŌ, H.; KOONIN, V.; KRUPOVIC, M.; KUBOTA, K.; KURATH, G.; LAENEN, L.; LAMBERT, A. J.; LANGEVIN, S. L.; LEE, B.; LEFKOWITZ, E. J.; LI, L.; LEROY, E. M.; LI, S.; LÍ, J.; LIU, H.; LUKASHEVICH, I. S.; MAES, P.; SOUZA, W. M. de; MARKLEWITZ, M.; MARSHALL, S. H.; MARZANO, S. L.; MASSART, S.; MCCAULEY, J. W.; MELZER, M.; MILLER, K. M.; MING, T. J.; MIRAZIMI, A.; MORDECAI, G. J.; MÜHLBACH, H. P.; MÜHLBERGER, E.; NAIDU, R.; NATSUAKI, T.; NAVARRO, J. A.; NETESOV, S. Y V.; NEUMANN, G.; NOWOTNY, N.; NUNES, M. R. T.; VELARDE, A. O.; PALACIOS, G.; PALLÁS, V.; PÁLYI, B.; PAPA, A.; PARASKEVOPOULOU, S.; PARK, A. C.; PARRISH, C. R.; PATTERSON, D. A.; CORRÊA, A. P.; PAWESKA, J. T.; PAYNE, S.; PERACCHIO, C.; PÉREZ, D. R.; POSTLER, T. S.; QI, L.; RADOSHITZKY, S. R.; RESENDE, R. O.; REYES, C. A.; RIMA, B. K.; LUNA, G. R.; ROMANOWSKI, V.; ROTA, P.; RUBBENSTROTH, D.; RUBINO, L.; RUNSTADLER, J. A.; SABANADZOVIC, S.; SALL, A. A.; SALVATO, M. S.; SANG, R.; SASAYA, T.; SCHULZE, A. D.; SCHWEMMLE, M.; SHI, M.; SHÍ, X.; SHIMOMOTO, Y.; SHIRAKO, Y.; SIDDELL, S. G.; SIMMONDS, P.; SIRONI, M.; SMAGGHE, G.; SMITHER, S.; SONG, J. W.; SPANN, K.; SPENGLER, J. R.; STENGLEIN, M. D.; STONE, D. M.; SUGANO, J.; TABATA, A.; TAKADA, A.; TAKEUCHI, S.; TCHOUASSI, D. P.; TEFER, A.; TESH, R. B.; THORNBURG, N. J.; TOMITAKA, Y.; TOMONAGA, K.; TORDO, N.; TORTO, B.; TOWNER, J. S.; TSUDA, S.; TU, C.; TURINA, M.; TZANETAKIS, I. E.; UCHIDA, J.; USUGI, T.; VAIRA, A. M.; VALLINO, M.; VAN DEN HOOGEN, B.; VARSANI, A.; VASILAKIS, N.; VERBEEK, M.; BARGEN, S. V.; WADA, J.; WAHL, V.; WALKER, P. J.; WANG, L. F.; WANG, G.; WANG, Y.; WANG, Y.; WAQAS, M.; WÈI, T.; WEN, S.; WHITFELD, A. E.; WILLIAMS, J. V.; WOLF, Y. I.; WU, J.; XU, L.; YANAGISAWA, H.; YANG, C.; YANG, Z.; ZERBINI, F. M.; ZHAI, L.; ZHANG, Y. Z.; ZHANG, O.; ZHANG, J.; ZHANG, Z.; ZHOU, X. |
Afiliação: |
JENS H. KUHN; SCOTT ADKINS; BERNARD R. AGWANDA; RIM AL KUBRUSLI; SERGEY V. ALKHOVSKY; GAYA K. AMARASINGHE; TATJANAAVSICZUPANC; MARÍA A. AYLLÓN; JUSTIN BAHL; ANNE BALKEMA BUSCHMANN; MATTHEW J. BALLINGER; CHRISTOPHER F. BASLER; SINA BAVARI; MARTIN BEER; NICOLAS BEJERMAN; ANDREW J. BENNETT; DENNIS A. BENTE; ÉRIC BERGERON; BRIAN H. BIRD; CAROL D. BLAIR; KIM R. BLASDELL; DAG RAGNAR BLYSTAD; JAMIE BOJKO; WAYNE B. BORTH; STEVEN BRADFUTE; RACHEL BREYTA; THOMAS BRIESE; PAUL A. BROWN; JUDITH K. BROWN; URSULA J. BUCHHOLZ; MICHAEL J. BUCHMEIER; ALEXANDER BUKREYEV; FELICITY BURT; CARMEN BÜTTNER; CHARLES H. CALISHER; MENGJI CAO; INMACULADA CASAS; KARTIK CHANDRAN; RÉMI N. CHARREL; QI CHENG; YUYA CHIAKI; MARCO CHIAPELLO; IL RYONG CHOI; MARINA CIUFO; J. CHRISTOPHER S. CLEGG; IAN CROZIER; ELENA DAL BÓ; JUAN CARLOS DE LA TORRE; XAVIER DE LAMBALLERIE; RIK L. DE SWART; HUMBERTO DEBAT; NOLWENN M. DHEILLY; EMILIANO DI CICCO; NICHOLAS DI PAOLA; FRANCESCO DI SERIO; RALF G. DIETZGEN; MICHELE DIGIARO; OLGA DOLNIK; MICHAEL A. DREBOT; J. FELIX DREXLER; WILLIAM G. DUNDON; W. PAUL DUPREX; RALF DÜRRWALD; JOHN M. DYE; ANDREW J. EASTON; HIDEKI EBIHARA; TOUFC ELBEAINO; KORAY ERGÜNAY; HUGH W. FERGUSON; ANTHONY R. FOOKS; MARCO FORGIA; PIERRE B. H. FORMENTY; JANA FRÁNOVÁ; JULIANA DE FREITAS ASTUA, CNPMF; JINGJING FU; STEPHANIE FÜRL; SELMA GAGO ZACHERT; GEORGE FÚ GĀO; MARÍA LAURA GARCÍA; ADOLFO GARCÍA SASTRE; AURA R. GARRISON; THOMAS GASKIN; JEAN PAUL J. GONZALE; ANTHONY GRIFTHS; TONY L. GOLDBERG; MARTIN H. GROSCHUP; STEPHAN GÜNTHER; ROY A. HALL; JOHN HAMMOND; ONG HAN; JUSSI HEPOJOKI; ROGER HEWSON; JIANG HONG; NI HONG; MASAYUKI HORIE; JOHN S. HU; TAO HU; HOLLY R. HUGHES; FLORIAN HÜTTNER; TIMOTHY H. HYNDMAN; M. ILYAS; RISTO JALKANEN; DÀOHÓNG JIĀNG; GILDA B. JONSON; SANDRA JUNGLEN; FUJIO KADONO; KARIA H. KAUKINEN; MICHAEL KAWATE; BORIS KLEMPA; JONAS KLINGSTRÖM; GARY KOBINGER; IGOR KOLONIUK; HIDEKI; EUGENE V. KOONIN; MART KRUPOVIC; KENJI KUBOTA; GAEL KURATH; LIES LAENEN; AMY J. LAMBERT; STANLEY L. LANGEVIN; BENHUR LEE; ELLIOT J. LEFKOWITZ; LONGHUI LI; ERIC M. LEROY; SHAORONG LI; JIÀNRÓNG LÍ; HUAZHEN LIU; IGOR S. LUKASHEVICH; PIET MAES; WILLIAM MARCIEL DE SOUZA; MARCO MARKLEWITZ; SERGIO H. MARSHALL; SHIN YI L. MARZANO; SEBASTIEN MASSART; JOHN W. MCCAULEY; MICHAEL MELZER; KRISTINA M. MILLER; TOBI J. MING; ALI MIRAZIMI; GIDEON J. MORDECAI; HANS PETER MÜHLBACH; ELKE MÜHLBERGER; RAYAPATI NAIDU; TOMOHIDE NATSUAKI; JOSÉ A. NAVARRO; SERGEY V. NETESOV; GABRIELE NEUMANN; NORBERT NOWOTNY; MÁRCIO R. T. NUNES; ALEJANDRO OLMEDO VELARDE; GUSTAVO PALACIOS; VICENTE PALLÁS; BERNADETT PÁLYI; ANNA PAPA; SOFA PARASKEVOPOULOU; ADAM C. PARK; COLIN R. PARRISH; DAVID A. PATTERSON; ALEX PAUVOLID CORRÊA; JANUSZ T. PAWESKA; SUSAN PAYNE; CARLOTTA PERACCHIO; DANIEL R. PÉREZ; THOMAS S. POSTLER; LIYING QI; SHELI R. RADOSHITZKY; RENATO O. RESENDE; CARINA A. REYES; BERTUS K. RIMA; GABRIEL ROBLES LUNA; VÍCTOR ROMANOWSKI; PAUL ROTA; DENNIS RUBBENSTROTH; LUISA RUBINO; JONATHAN A. RUNSTADLER; SEAD SABANADZOVIC; AMADOU ALPHA SALL; MARIA S. SALVATO; ROSEMARY SANG; TAKAHIDE SASAYA; ANGELA D. SCHULZE; MARTIN SCHWEMMLE; MANG SHI; XIÃOHÓNG SHÍ; YOSHIFUMI SHIMOMOTO; YUKIO SHIRAKO; STUART G. SIDDELL; PETER SIMMONDS; MANUELA SIRONI; GUY SMAGGHE; SOPHIE SMITHER; JIN WON SONG; KIRSTEN SPANN; JESSICA R. SPENGLER; MARK D. STENGLEIN; DAVID M. STONE; JARI SUGANO; AMY TABATA; AYATO TAKADA; SHIGEHARU TAKEUCHI; DAVID P. TCHOUASSI; AMY TEFER; ROBERT B. TESH; NATALIE J. THORNBURG; YASUHIRO TOMITAKA; KEIZO TOMONAGA; NOEL TORDO; BALDWYN TORTO; JONATHAN S. TOWNER; SHINYA TSUDA; CHANGCHUN TU; MASSIMO TURINA; IOANNIS E. TZANETAKIS; JANICE UCHIDA; TOMIO USUGI; ANNA MARIA VAIRA; MARTA VALLINO; BERNADETTE VAN DEN HOOGEN; ARVIND VARSANI; NIKOS VASILAKIS; MARTIN VERBEEK; SUSANNE VON BARGEN; JIRO WADA; VICTORIA WAHL; PETER J. WALKER; LIN FA WANG; GUOPING WANG; YANXIANG WANG; YAQIN WANG; MUHAMMAD WAQAS; TÀIYÚN WÈI; SHAOHUA WEN; ANNA E. WHITFELD; JOHN V. WILLIAMS; YURI I. WOLF; JIANGXIANG WU; LEI XU; HIRONOBU YANAGISAWA; CAIXIA YANG; ZUOKUN YANG; F. MURILO ZERBINI; LIFENG ZHAI; YONG ZHEN ZHANG; ONG ZHANG; JINGUO ZHANG; ZHE ZHANG; XUEPING ZHOU. |
Título: |
2021 Taxonomic update of phylum Negarnaviricota (Riboviria: Orthornavirae), including the large orders Bunyavirales and Mononegavirale. |
Ano de publicação: |
2021 |
Fonte/Imprenta: |
Archives of Virology, August, 2021. |
Idioma: |
Inglês |
Thesagro: |
Taxonomia. |
Categoria do assunto: |
-- |
Marc: |
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Registro original: |
Embrapa Mandioca e Fruticultura (CNPMF) |
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Registro Completo
Biblioteca(s): |
Embrapa Amazônia Oriental. |
Data corrente: |
21/08/2006 |
Data da última atualização: |
28/11/2022 |
Autoria: |
LEWIS, S. L.; PHILLIPS, O. L.; BAKER, T. R.; LLOYD, J.; MALHI, Y.; ALMEIDA, S.; HIGUCHI, N.; LAURANCE, W. F.; NEILL, D. A.; SILVA, J. N. M.; TERBORGH, J.; LEZAMA, A. T.; VÁSQUEZ MARTÍNEZ, R.; BROWN, S.; CHAVE, J.; KUEBLER, C.; NÚÑEZ VARGAS, P.; VINCETI, B. |
Afiliação: |
JOSÉ NATALINO MACEDO SILVA, CPATU. |
Título: |
Concerted changes in tropical forest structure and dynamics: evidence from 50 South American long-term plots. |
Ano de publicação: |
2004 |
Fonte/Imprenta: |
Philippine Transactions of Royal Society of London, B, v. 359, n. 1443, p. 421-436, 2004. |
DOI: |
10.1098/rstb.2003.1431 |
Idioma: |
Inglês |
Conteúdo: |
Several widespread changes in the ecology of old?growth tropical forests have recently been documented for the late twentieth century, in particular an increase in stem turnover (pan?tropical), and an increase in above?ground biomass (neotropical). Whether these changes are synchronous and whether changes in growth are also occurring is not known. We analysed stand?level changes within 50 long?term monitoring plots from across South America spanning 1971?2002. We show that: (i) basal area (BA: sum of the cross?sectional areas of all trees in a plot) increased significantly over time (by 0.10 ±; 0.04 m2 ha−1 yr−1, mean ± 95%CI) as did both (ii) stand?level BA growth rates (sum of the increments of BA of surviving trees and BA of new trees that recruited into a plot); and (iii) stand?level BA mortality rates (sum of the cross?sectional areas of all trees that died in a plot). Similar patterns were observed on a per?stem basis: (i) stem density (number of stems per hectare; 1 hectare is 104 m2) increased significantly over time (0.94 ± 0.63 stems ha−1 yr−1); as did both (ii) stem recruitment rates; and (iii) stem mortality rates. In relative terms, the pools of BA and stem density increased by 0.38 ± 0.15% and 0.18 ± 0.12% yr−1, respectively. The fluxes into and out of these pools?stand?level BA growth, stand?level BA mortality, stem recruitment and stem mortality rates?increased, in relative terms, by an order of magnitude more. The gain terms (BA growth, stem recruitment) consistently exceeded the loss terms (BA loss, stem mortality) throughout the period, suggesting that whatever process is driving these changes was already acting before the plot network was established. Large long?term increases in stand?level BA growth and simultaneous increases in stand BA and stem density imply a continent?wide increase in resource availability which is increasing net primary productivity and altering forest dynamics. Continent?wide changes in incoming solar radiation, and increases in atmospheric concentrations of CO2 and air temperatures may have increased resource supply over recent decades, thus causing accelerated growth and increased dynamism across the world's largest tract of tropical forest. MenosSeveral widespread changes in the ecology of old?growth tropical forests have recently been documented for the late twentieth century, in particular an increase in stem turnover (pan?tropical), and an increase in above?ground biomass (neotropical). Whether these changes are synchronous and whether changes in growth are also occurring is not known. We analysed stand?level changes within 50 long?term monitoring plots from across South America spanning 1971?2002. We show that: (i) basal area (BA: sum of the cross?sectional areas of all trees in a plot) increased significantly over time (by 0.10 ±; 0.04 m2 ha−1 yr−1, mean ± 95%CI) as did both (ii) stand?level BA growth rates (sum of the increments of BA of surviving trees and BA of new trees that recruited into a plot); and (iii) stand?level BA mortality rates (sum of the cross?sectional areas of all trees that died in a plot). Similar patterns were observed on a per?stem basis: (i) stem density (number of stems per hectare; 1 hectare is 104 m2) increased significantly over time (0.94 ± 0.63 stems ha−1 yr−1); as did both (ii) stem recruitment rates; and (iii) stem mortality rates. In relative terms, the pools of BA and stem density increased by 0.38 ± 0.15% and 0.18 ± 0.12% yr−1, respectively. The fluxes into and out of these pools?stand?level BA growth, stand?level BA mortality, stem recruitment and stem mortality rates?increased, in relative terms, by an order of magnitude more. The gain terms (BA... Mostrar Tudo |
Palavras-Chave: |
Brasil. |
Thesagro: |
Biomassa; Carbono; Desenvolvimento Florestal; Floresta Tropical; Mortalidade. |
Thesaurus NAL: |
Amazonia. |
Categoria do assunto: |
-- |
Marc: |
LEADER 03453naa a2200421 a 4500 001 1408525 005 2022-11-28 008 2004 bl uuuu u00u1 u #d 024 7 $a10.1098/rstb.2003.1431$2DOI 100 1 $aLEWIS, S. L. 245 $aConcerted changes in tropical forest structure and dynamics$bevidence from 50 South American long-term plots.$h[electronic resource] 260 $c2004 520 $aSeveral widespread changes in the ecology of old?growth tropical forests have recently been documented for the late twentieth century, in particular an increase in stem turnover (pan?tropical), and an increase in above?ground biomass (neotropical). Whether these changes are synchronous and whether changes in growth are also occurring is not known. We analysed stand?level changes within 50 long?term monitoring plots from across South America spanning 1971?2002. We show that: (i) basal area (BA: sum of the cross?sectional areas of all trees in a plot) increased significantly over time (by 0.10 ±; 0.04 m2 ha−1 yr−1, mean ± 95%CI) as did both (ii) stand?level BA growth rates (sum of the increments of BA of surviving trees and BA of new trees that recruited into a plot); and (iii) stand?level BA mortality rates (sum of the cross?sectional areas of all trees that died in a plot). Similar patterns were observed on a per?stem basis: (i) stem density (number of stems per hectare; 1 hectare is 104 m2) increased significantly over time (0.94 ± 0.63 stems ha−1 yr−1); as did both (ii) stem recruitment rates; and (iii) stem mortality rates. In relative terms, the pools of BA and stem density increased by 0.38 ± 0.15% and 0.18 ± 0.12% yr−1, respectively. The fluxes into and out of these pools?stand?level BA growth, stand?level BA mortality, stem recruitment and stem mortality rates?increased, in relative terms, by an order of magnitude more. The gain terms (BA growth, stem recruitment) consistently exceeded the loss terms (BA loss, stem mortality) throughout the period, suggesting that whatever process is driving these changes was already acting before the plot network was established. Large long?term increases in stand?level BA growth and simultaneous increases in stand BA and stem density imply a continent?wide increase in resource availability which is increasing net primary productivity and altering forest dynamics. Continent?wide changes in incoming solar radiation, and increases in atmospheric concentrations of CO2 and air temperatures may have increased resource supply over recent decades, thus causing accelerated growth and increased dynamism across the world's largest tract of tropical forest. 650 $aAmazonia 650 $aBiomassa 650 $aCarbono 650 $aDesenvolvimento Florestal 650 $aFloresta Tropical 650 $aMortalidade 653 $aBrasil 700 1 $aPHILLIPS, O. L. 700 1 $aBAKER, T. R. 700 1 $aLLOYD, J. 700 1 $aMALHI, Y. 700 1 $aALMEIDA, S. 700 1 $aHIGUCHI, N. 700 1 $aLAURANCE, W. F. 700 1 $aNEILL, D. A. 700 1 $aSILVA, J. N. M. 700 1 $aTERBORGH, J. 700 1 $aLEZAMA, A. T. 700 1 $aVÁSQUEZ MARTÍNEZ, R. 700 1 $aBROWN, S. 700 1 $aCHAVE, J. 700 1 $aKUEBLER, C. 700 1 $aNÚÑEZ VARGAS, P. 700 1 $aVINCETI, B. 773 $tPhilippine Transactions of Royal Society of London, B$gv. 359, n. 1443, p. 421-436, 2004.
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Embrapa Amazônia Oriental (CPATU) |
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