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| Acesso ao texto completo restrito à biblioteca da Embrapa Pantanal. Para informações adicionais entre em contato com cpap.biblioteca@embrapa.br. |
Registro Completo |
Biblioteca(s): |
Embrapa Pantanal. |
Data corrente: |
07/03/2016 |
Data da última atualização: |
04/11/2016 |
Tipo da produção científica: |
Capítulo em Livro Técnico-Científico |
Autoria: |
BULLER, L. S.; SILVA, G. B. S. da; ZANETTI, M. R.; ORTEGA, E.; MORAES, A. DE; GOULART, T.; BERGIER, I.; BULLER, L. S. |
Afiliação: |
LUZ SELE BULLER, State University of Campinas; GUSTAVO BAYMA SIQUEIRA DA SILVA, CNPM; MARILIA RIBEIRO ZANETTI; ENRIQUE ORTEGA, State University of Campinas; ANIBAL DE MORAES, FEDERAL UNIVERSITY OF PARANÁ; THIAGO GOULART, AGRICULTURAL COOPERATIVE OF SÃO GABRIEL DO OESTE; IVAN BERGIER TAVARES DE LIMA, CPAP; LUZ SELE BULLER, Satate University of Campinas. |
Título: |
Historical Land-Use Changes in São Gabriel do Oeste at the Upper Taquari River Basin. |
Ano de publicação: |
2016 |
Fonte/Imprenta: |
In: BERGIER, I.; ASSINE, M. L. (Ed.). Dynamics of the Pantanal Wetland in South America. Switzerland: Springer International Publishing, 2016. |
Páginas: |
p. 191-208. |
Série: |
(The Handbook of Environmental Chemistry, 37). |
ISBN: |
978-3-319-18735-8 |
DOI: |
10.1007/698_2015_355 |
Idioma: |
Inglês |
Conteúdo: |
Agricultural expansion in uplands of the Pantanal in recent decades suppressed a large fraction of native vegetation. In the case of the municipality of São Gabriel do Oeste (SGO), located in the Upper Paraguay River Basin, the processing of historical Landsat imagery indicates from 1984 to 2013 a relative land cover increase in soybean/corn cropland from 25% to 30% and pasture from 17% to 41%, whereas a decrease in native forest from 57% to 28%. These land-use changes produced several outstanding economic indexes as the per capita gross domestic product (GDP), 48% higher than that of Brazil. The total GDP increased by 259% from 1999 to 2011. Besides, SGO Human Development Index (HDI) of 0.729 in 2010 was about 2% higher than the Brazil?s HDI average. On the other hand, the agricultural development reflected in alterations of major ecohydrological regulations (carbon and water) at the watershed, notwithstanding the economic concentration. Croplands mostly develop in areas of low vulnerability (55%), while almost all of the pasture areas are preferably in vulnerable areas (42%). Due to climate changes, the promotion of state social inclusive and low-carbon agriculture is necessary to mitigate greenhouse gas (GHG) emissions and to recover important ecohydrological processes at the drainage basin level. In this chapter, we explore a new sustainable design of agroecosystems (integrated crop-livestock and forestry) in the Upper Taquari River Basin, which can maximize and optimize both the sharing of rural productivity and carbon/water regulations at the watershed. MenosAgricultural expansion in uplands of the Pantanal in recent decades suppressed a large fraction of native vegetation. In the case of the municipality of São Gabriel do Oeste (SGO), located in the Upper Paraguay River Basin, the processing of historical Landsat imagery indicates from 1984 to 2013 a relative land cover increase in soybean/corn cropland from 25% to 30% and pasture from 17% to 41%, whereas a decrease in native forest from 57% to 28%. These land-use changes produced several outstanding economic indexes as the per capita gross domestic product (GDP), 48% higher than that of Brazil. The total GDP increased by 259% from 1999 to 2011. Besides, SGO Human Development Index (HDI) of 0.729 in 2010 was about 2% higher than the Brazil?s HDI average. On the other hand, the agricultural development reflected in alterations of major ecohydrological regulations (carbon and water) at the watershed, notwithstanding the economic concentration. Croplands mostly develop in areas of low vulnerability (55%), while almost all of the pasture areas are preferably in vulnerable areas (42%). Due to climate changes, the promotion of state social inclusive and low-carbon agriculture is necessary to mitigate greenhouse gas (GHG) emissions and to recover important ecohydrological processes at the drainage basin level. In this chapter, we explore a new sustainable design of agroecosystems (integrated crop-livestock and forestry) in the Upper Taquari River Basin, which can maximize and optimize... Mostrar Tudo |
Palavras-Chave: |
Integrated agroecosystems. |
Thesagro: |
Agricultura; Desenvolvimento econômico. |
Thesaurus Nal: |
agriculture; Agroecosystems; deforestation; Environmental sustainability; Land use; livestock; Sustainable agriculture. |
Categoria do assunto: |
P Recursos Naturais, Ciências Ambientais e da Terra |
Marc: |
LEADER 02752naa a2200373 a 4500 001 2039968 005 2016-11-04 008 2016 bl uuuu u00u1 u #d 020 $a978-3-319-18735-8 024 7 $a10.1007/698_2015_355$2DOI 100 1 $aBULLER, L. S. 245 $aHistorical Land-Use Changes in São Gabriel do Oeste at the Upper Taquari River Basin. 260 $c2016 300 $ap. 191-208. 490 $a(The Handbook of Environmental Chemistry, 37). 520 $aAgricultural expansion in uplands of the Pantanal in recent decades suppressed a large fraction of native vegetation. In the case of the municipality of São Gabriel do Oeste (SGO), located in the Upper Paraguay River Basin, the processing of historical Landsat imagery indicates from 1984 to 2013 a relative land cover increase in soybean/corn cropland from 25% to 30% and pasture from 17% to 41%, whereas a decrease in native forest from 57% to 28%. These land-use changes produced several outstanding economic indexes as the per capita gross domestic product (GDP), 48% higher than that of Brazil. The total GDP increased by 259% from 1999 to 2011. Besides, SGO Human Development Index (HDI) of 0.729 in 2010 was about 2% higher than the Brazil?s HDI average. On the other hand, the agricultural development reflected in alterations of major ecohydrological regulations (carbon and water) at the watershed, notwithstanding the economic concentration. Croplands mostly develop in areas of low vulnerability (55%), while almost all of the pasture areas are preferably in vulnerable areas (42%). Due to climate changes, the promotion of state social inclusive and low-carbon agriculture is necessary to mitigate greenhouse gas (GHG) emissions and to recover important ecohydrological processes at the drainage basin level. In this chapter, we explore a new sustainable design of agroecosystems (integrated crop-livestock and forestry) in the Upper Taquari River Basin, which can maximize and optimize both the sharing of rural productivity and carbon/water regulations at the watershed. 650 $aagriculture 650 $aAgroecosystems 650 $adeforestation 650 $aEnvironmental sustainability 650 $aLand use 650 $alivestock 650 $aSustainable agriculture 650 $aAgricultura 650 $aDesenvolvimento econômico 653 $aIntegrated agroecosystems 700 1 $aSILVA, G. B. S. da 700 1 $aZANETTI, M. R. 700 1 $aORTEGA, E. 700 1 $aMORAES, A. DE 700 1 $aGOULART, T. 700 1 $aBERGIER, I. 700 1 $aBULLER, L. S. 773 $tIn: BERGIER, I.; ASSINE, M. L. (Ed.). Dynamics of the Pantanal Wetland in South America. Switzerland: Springer International Publishing, 2016.
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Registro Completo
Biblioteca(s): |
Embrapa Mandioca e Fruticultura. |
Data corrente: |
23/04/2019 |
Data da última atualização: |
06/12/2019 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 2 |
Autoria: |
MAES, P.; AMARASINGHE, G. K.; AYLLÓN, M. A.; BASLER, C. F.; SINA, B.; BLASDELL, K. R.; BRIESE, T.; BROWN, P. A.; BUKREYEV, A.; BALKEMA-BUSCHMANN, A.; BUCHHOLZ, U. J.; CHANDRAN, K.; CROZIER, I.; SWART, R. de; DIETZGEN, R. G.; DOLNIK, O.; DOMIER, L. L.; DREXLER, J. F.; DÜRRWALD, R.; DUNDON, W. G.; DUPREX, W. P.; DYE, J. M.; EASTON, A. J.; FOOKS, A. R.; FORMENTY, P. B. H.; FOUCHIER, R. A. M.; ASTUA, J. de F.; GHEDIN, E.; GRIFFITHS, A.; HEWSON, R.; HORIE, M.; HURWITZ, J. L.; HYNDMAN, T. H.; JIANG, D.; KOBINGER, G. P.; KONDO, H.; KURATH, G.; KUZMIN, I. V.; LAMB, R. T A.; LEE, B.; LEROY, E. M.; LI, J.; MARZANO, S. L.; MUHLBERGER, E.; NETESOV, S.; NETESOV, S. V.; PALACIOS, G.; PÁLYI, B.; PAWESKA, J. T.; PAYNE, S. L.; RIMA, B. K.; ROTA, P.; RUBBENSTROTH, D.; SIMMONDS, P.; SMITHER, S. J.; SONG, Q.; SONG, T.; SPANN, K.; STENGLEIN, M. D.; STONE, D. M.; TAKADA, A.; TESH, R. T B.; TOMONAGA, K.; TORDO, N.; TOWNER, J. S.; VAN DEN HOOGEN, B.; VASILAKIS, N.; WAHL, V.; WALKER, P. J.; WANG, D.; WANG, L.-F.; WHITFIELD, A. E.; WILLIAMS, J. V.; YE, G.; ZERBINI, F. M.; ZHANG, Y.-Z.; KUHN, J. H. |
Afiliação: |
PIET MAES; GAYA K. AMARASINGHE; MARÍA A. AYLLÓN; CHRISTOPHER F. BASLER; SINA BAVARI; KIM R. BLASDELL; THOMAS BRIESE; PAUL A. BROWN; ALEXANDER BUKREYEV; ANNE BALKEMA?BUSCHMANN; URSULA J. BUCHHOLZ; KARTIK CHANDRAN; IAN CROZIER; RIK L. DE SWART; RALF G. DIETZGEN; OLGA DOLNIK; LESLIE L. DOMIER; JAN F. DREXLER; RALF DÜRRWALD; WILLIAM G. DUNDON; W. PAUL DUPREX; JOHN M. DYE; ANDREW J. EASTON; ANTHONY R. FOOKS; PIERRE B. H. FORMENTY; RON A. M. FOUCHIER; JULIANA DE FREITAS ASTUA, CNPMF; ELODIE GHEDIN; ANTHONY GRIFFITHS; ROGER HEWSON; MASAYUKI HORIE; JULIA L. HURWITZ; TIMOTHY H. HYNDMAN; DAOHONG JIANG; GARY P. KOBINGER; HIDEKI KONDO; GAEL KURATH; IVAN V. KUZMIN; ROBERT A. LAMB; BENHUR LEE; ERIC M. LEROY; JIANRONG LI; SHIN-YI L. MARZANO; ELKE MUHLBERGER; SERGEY V. NETESOV; SERGEY V. NETESOV; GUSTAVO PALACIOS; BERNADETT PÁLYI; JANUSZ T. PAWESKA; SUSAN L. PAYNE; BERTUS K. RIMA; PAUL ROTA; DENNIS RUBBENSTROTH; PETER SIMMONDS; SOPHIE J. SMITHER; QISHENG SONG; TIMOTHY SONG; KIRSTEN SPANN; MARK D. STENGLEIN; DAVID M. STONE; AYATO TAKADA; ROBERT B. TESH; KEIZO TOMONAGA; NOEL TORDO; JONATHAN S. TOWNER; BERNADETTE VAN DEN HOOGEN; NIKOS VASILAKIS; VICTORIA WAHL; PETER J. WALKER; DAVID WANG; LIN-FA WANG; ANNA E. WHITFIELD; JOHN V. WILLIAMS; GONGYIN YE; F. MURILO ZERBINI; YONG-ZHEN ZHANG; JENS H. KUHN. |
Título: |
Taxonomy of the order Mononegavirales: second update 2018. |
Ano de publicação: |
2019 |
Fonte/Imprenta: |
Archives of Virology, p.1-12, 2019. |
Idioma: |
Inglês |
Conteúdo: |
In October 2018, the order Mononegavirales was amended by the establishment of three new families and three new genera, abolishment of two genera, and creation of 28 novel species. This article presents the updated taxonomy of the order Mononegavirales as now accepted by the International Committee on Taxonomy of Viruses (ICTV). |
Thesaurus NAL: |
Mononegavirales. |
Categoria do assunto: |
-- |
Marc: |
LEADER 02920naa a2201045 a 4500 001 2108425 005 2019-12-06 008 2019 bl uuuu u00u1 u #d 100 1 $aMAES, P. 245 $aTaxonomy of the order Mononegavirales$bsecond update 2018.$h[electronic resource] 260 $c2019 520 $aIn October 2018, the order Mononegavirales was amended by the establishment of three new families and three new genera, abolishment of two genera, and creation of 28 novel species. This article presents the updated taxonomy of the order Mononegavirales as now accepted by the International Committee on Taxonomy of Viruses (ICTV). 650 $aMononegavirales 700 1 $aAMARASINGHE, G. K. 700 1 $aAYLLÓN, M. A. 700 1 $aBASLER, C. F. 700 1 $aSINA, B. 700 1 $aBLASDELL, K. R. 700 1 $aBRIESE, T. 700 1 $aBROWN, P. A. 700 1 $aBUKREYEV, A. 700 1 $aBALKEMA-BUSCHMANN, A. 700 1 $aBUCHHOLZ, U. J. 700 1 $aCHANDRAN, K. 700 1 $aCROZIER, I. 700 1 $aSWART, R. de 700 1 $aDIETZGEN, R. G. 700 1 $aDOLNIK, O. 700 1 $aDOMIER, L. L. 700 1 $aDREXLER, J. F. 700 1 $aDÜRRWALD, R. 700 1 $aDUNDON, W. G. 700 1 $aDUPREX, W. P. 700 1 $aDYE, J. M. 700 1 $aEASTON, A. J. 700 1 $aFOOKS, A. R. 700 1 $aFORMENTY, P. B. H. 700 1 $aFOUCHIER, R. A. M. 700 1 $aASTUA, J. de F. 700 1 $aGHEDIN, E. 700 1 $aGRIFFITHS, A. 700 1 $aHEWSON, R. 700 1 $aHORIE, M. 700 1 $aHURWITZ, J. L. 700 1 $aHYNDMAN, T. H. 700 1 $aJIANG, D. 700 1 $aKOBINGER, G. P. 700 1 $aKONDO, H. 700 1 $aKURATH, G. 700 1 $aKUZMIN, I. V. 700 1 $aLAMB, R. T A. 700 1 $aLEE, B. 700 1 $aLEROY, E. M. 700 1 $aLI, J. 700 1 $aMARZANO, S. L. 700 1 $aMUHLBERGER, E. 700 1 $aNETESOV, S. 700 1 $aNETESOV, S. V. 700 1 $aPALACIOS, G. 700 1 $aPÁLYI, B. 700 1 $aPAWESKA, J. T. 700 1 $aPAYNE, S. L. 700 1 $aRIMA, B. K. 700 1 $aROTA, P. 700 1 $aRUBBENSTROTH, D. 700 1 $aSIMMONDS, P. 700 1 $aSMITHER, S. J. 700 1 $aSONG, Q. 700 1 $aSONG, T. 700 1 $aSPANN, K. 700 1 $aSTENGLEIN, M. D. 700 1 $aSTONE, D. M. 700 1 $aTAKADA, A. 700 1 $aTESH, R. T B. 700 1 $aTOMONAGA, K. 700 1 $aTORDO, N. 700 1 $aTOWNER, J. S. 700 1 $aVAN DEN HOOGEN, B. 700 1 $aVASILAKIS, N. 700 1 $aWAHL, V. 700 1 $aWALKER, P. J. 700 1 $aWANG, D. 700 1 $aWANG, L.-F. 700 1 $aWHITFIELD, A. E. 700 1 $aWILLIAMS, J. V. 700 1 $aYE, G. 700 1 $aZERBINI, F. M. 700 1 $aZHANG, Y.-Z. 700 1 $aKUHN, J. H. 773 $tArchives of Virology, p.1-12, 2019.
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