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1. Identificação
Tipo de ReferênciaArtigo em Revista Científica (Journal Article)
Sitemtc-m21b.sid.inpe.br
Código do Detentorisadg {BR SPINPE} ibi 8JMKD3MGPCW/3DT298S
Identificador8JMKD3MGP5W34M/3FA44QP
Repositóriosid.inpe.br/mtc-m21b/2013/11.26.16.47.27   (acesso restrito)
Última Atualização2013:12.27.17.44.18 (UTC) administrator
Repositório de Metadadossid.inpe.br/mtc-m21b/2013/11.26.16.47.28
Última Atualização dos Metadados2018:06.04.03.14.08 (UTC) administrator
DOI10.1007/s10021-012-9628-x
ISSN0167-8809
Rótuloscopus 2013-11
Chave de CitaçãoAnderson-TeixeiraMaBlZeHuBeDe:2013:AlBeCa
TítuloAltered Belowground Carbon Cycling Following Land-Use Change to Perennial Bioenergy Crops
Ano2013
Data de Acesso18 maio 2024
Tipo de Trabalhojournal article
Tipo SecundárioPRE PI
Número de Arquivos1
Tamanho748 KiB
2. Contextualização
Autor1 Anderson-Teixeira, K. J.
2 Masters, M. D.
3 Black, C. K.
4 Zeri, Luis Marcelo de Mattos
5 Hussain, M. Z.
6 Bernacchi, C. J.
7 DeLucia, E. H.
Grupo1
2
3
4 CPT-CPT-INPE-MCTI-GOV-BR
Afiliação1 Institute of Genomic Biology, University of Illinois, Urbana, IL, United States; Energy Bioscience Institute, University of Illinois, Urbana, IL, United States; Smithsonian Institution, Center for Tropical Forest Science-Smithsonian Institution Global Earth Observatory, Smithsonian Conservation Biology Institute, 1500 Remount Rd., Front Royal, VA, 22630, United States
2 Institute of Genomic Biology, University of Illinois, Urbana, IL, United States; Energy Bioscience Institute, University of Illinois, Urbana, IL, United States
3 Institute of Genomic Biology, University of Illinois, Urbana, IL, United States; Energy Bioscience Institute, University of Illinois, Urbana, IL, United States; Department of Plant Biology, University of Illinois, Urbana, IL, United States
4 Instituto Nacional de Pesquisas Espaciais (INPE)
5 Institute of Genomic Biology, University of Illinois, Urbana, IL, United States
6 Institute of Genomic Biology, University of Illinois, Urbana, IL, United States; Energy Bioscience Institute, University of Illinois, Urbana, IL, United States; Department of Plant Biology, University of Illinois, Urbana, IL, United States; Photosynthesis Research Unit, US Department of Agriculture, University of Illinois, Urbana, IL, United States
7 Institute of Genomic Biology, University of Illinois, Urbana, IL, United States; Energy Bioscience Institute, University of Illinois, Urbana, IL, United States; Department of Plant Biology, University of Illinois, Urbana, IL, United States
Endereço de e-Mail do Autor1
2
3
4 zeri@cptec.inpe.br
Endereço de e-Mailmarcelo.pazos@inpe.br
RevistaEcosystems
Volume16
Número3
Páginas508-520
Nota SecundáriaA1 A1 A1 A1 A1 A2 A2 B1 B1
Histórico (UTC)2018-06-04 03:14:08 :: administrator -> marcelo.pazos@inpe.br :: 2013
3. Conteúdo e estrutura
É a matriz ou uma cópia?é a matriz
Estágio do Conteúdoconcluido
Transferível1
Tipo do ConteúdoExternal Contribution
Tipo de Versãopublisher
Palavras-Chavebioenergy
biofuel
biogeochemistry
biomass allocation
carbon cycle
carbon sequestration
crop rotation
energy crop
grass
harvesting
land use change
perennial plant
soil carbon
soil organic matter
Miscanthus
Panicum virgatum
Poaceae
Zea mays
ResumoBelowground carbon (C) dynamics of terrestrial ecosystems play an important role in the global C cycle and thereby in climate regulation. Globally, land-use change is a major driver of changes in belowground C storage. The emerging bioenergy industry is likely to drive widespread land-use changes, including the replacement of annually tilled croplands with perennial bioenergy crops, and thereby to impact the climate system through alteration of belowground C dynamics. Mechanistic understanding of how land-use changes impact belowground C storage requires elucidation of changes in belowground C flows; however, altered belowground C dynamics following land-use change have yet to be thoroughly quantified through field measurements. Here, we show that belowground C cycling pathways of establishing perennial bioenergy crops (0- to 3. 5-year-old miscanthus, switchgrass, and a native prairie mix) were substantially altered relative to row crop agriculture (corn-soy rotation); specifically, there were substantial increases in belowground C allocation (>400%), belowground biomass (400-750%), root-associated respiration (up to 2,500%), moderate reductions in litter inputs (20-40%), and respiration in root-free soil (up to 50%). This more active root-associated C cycling of perennial vegetation provides a mechanism for observed net C sequestration by these perennial ecosystems, as well as commonly observed increases in soil C under perennial bioenergy crops throughout the world. The more active root-associated belowground C cycle of perennial vegetation implies a climate benefit of grassland maintenance or restoration, even if biomass is harvested annually for bioenergy production. © 2013 Springer Science+Business Media New York.
ÁreaCST
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Conteúdo da Pasta docacessar
Conteúdo da Pasta sourcenão têm arquivos
Conteúdo da Pasta agreementnão têm arquivos
4. Condições de acesso e uso
Idiomaen
Arquivo AlvoAnderson-Teixeira_Altered.pdf
Grupo de Usuáriosadministrator
marcelo.pazos@inpe.br
self-uploading-INPE-MCTI-GOV-BR
Grupo de Leitoresadministrator
marcelo.pazos@inpe.br
Visibilidadeshown
Política de Arquivamentodenypublisher denyfinaldraft24
Permissão de Leituradeny from all and allow from 150.163
Permissão de Atualizaçãonão transferida
5. Fontes relacionadas
Repositório Espelhoiconet.com.br/banon/2006/11.26.21.31
Unidades Imediatamente Superiores8JMKD3MGPCW/3EUPEJL
Lista de Itens Citandosid.inpe.br/bibdigital/2013/10.06.18.03 5
DivulgaçãoWEBSCI; PORTALCAPES; SCOPUS.
Acervo Hospedeirosid.inpe.br/mtc-m21b/2013/09.26.14.25.20
6. Notas
Campos Vaziosalternatejournal archivist callnumber copyholder copyright creatorhistory descriptionlevel format isbn lineage mark month nextedition notes orcid parameterlist parentrepositories previousedition previouslowerunit progress project resumeid rightsholder schedulinginformation secondarydate secondarykey session shorttitle sponsor subject tertiarymark tertiarytype url
7. Controle da descrição
e-Mail (login)marcelo.pazos@inpe.br
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