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Registro Completo |
Biblioteca(s): |
Embrapa Soja. |
Data corrente: |
17/04/1995 |
Data da última atualização: |
21/02/2007 |
Autoria: |
MENOSSO, O. G.; BARRETO, J. N.; CARRARO, I. M.; HARADA, A.; FONSECA, N.; KAMIKOGA, M. K.; TERESAWA, F.; BOYE, R. |
Afiliação: |
EMBRAPA-CNPSo. Londrina, PR. |
Título: |
Avaliacao final de linhagens de soja para o Estado do Parana. |
Ano de publicação: |
1983 |
Fonte/Imprenta: |
In: EMBRAPA. Centro Nacional de Pesquisa de Soja (Londrina, PR). Resultados de pesquisa de soja 1982/83. Londrina, 1983. |
Páginas: |
p.305-320. |
Idioma: |
Português |
Palavras-Chave: |
Brasil; Line; Parana; Soybean. |
Thesagro: |
Linhagem; Melhoramento; Soja. |
Thesaurus Nal: |
Brazil; breeding. |
Categoria do assunto: |
-- |
Marc: |
LEADER 00833naa a2200313 a 4500 001 1453702 005 2007-02-21 008 1983 bl uuuu u00u1 u #d 100 1 $aMENOSSO, O. G. 245 $aAvaliacao final de linhagens de soja para o Estado do Parana. 260 $c1983 300 $ap.305-320. 650 $aBrazil 650 $abreeding 650 $aLinhagem 650 $aMelhoramento 650 $aSoja 653 $aBrasil 653 $aLine 653 $aParana 653 $aSoybean 700 1 $aBARRETO, J. N. 700 1 $aCARRARO, I. M. 700 1 $aHARADA, A. 700 1 $aFONSECA, N. 700 1 $aKAMIKOGA, M. K. 700 1 $aTERESAWA, F. 700 1 $aBOYE, R. 773 $tIn: EMBRAPA. Centro Nacional de Pesquisa de Soja (Londrina, PR). Resultados de pesquisa de soja 1982/83. Londrina, 1983.
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Embrapa Soja (CNPSO) |
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Registro Completo
Biblioteca(s): |
Embrapa Milho e Sorgo. |
Data corrente: |
23/01/2006 |
Data da última atualização: |
04/06/2018 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Autoria: |
DRUMMOND, R. D.; GUIMARAES, C. T.; FELIX, J.; NINAMANGO-CARDENAS, F. E.; CARNEIRO, N. P.; PAIVA, E; MENOSSI, M. |
Afiliação: |
CLAUDIA TEIXEIRA GUIMARAES, CNPMS; NEWTON PORTILHO CARNEIRO, CNPMS. |
Título: |
Prospecting sugarcane genes involved in aluminum tolerance. |
Ano de publicação: |
2001 |
Fonte/Imprenta: |
Genetics and Molecular Biology, Ribeirão Preto, v. 24, n. 1/4, p. 221-230, 2001. |
Idioma: |
Inglês |
Conteúdo: |
Aluminium is one of the major factors that affect plant development in acid soils, causing a substantial reduction in yield in many crops. In South America, about 66% of the land surface is made up of acid soils where high aluminium saturation is one of the main limiting factors for agriculture. The biochemical and molecular basis of aluminium tolerance in plants is far from being completely understood despite a growing number of studies, and in the specific case of sugarcane there are virtually no reports on the effects of gene regulation on aluminium stress. The objective of the work presented in this paper was to prospect the sugarcane expressed sequence tag (SUCEST) data bank for sugarcane genes related to several biochemical pathways known to be involved in the responses to aluminium toxicity in other plant species and yeast. Sugarcane genes similar to most of these genes were found, including those coding for enzymes that alleviate oxidative stress or combat infection by pathogens and those which code for proteins responsible for the release of organic acids and signal transducers. The role of these genes in aluminium tolerance mechanisms is reviewed. Due to the high level of genomic conservation in related grasses such as maize, barley, sorghum and sugarcane, these genes may be valuable tools which will help us to better understand and to manipulate aluminium tolerance in these species. |
Palavras-Chave: |
Aluminium; biochemical-pathways; gene-expression; heavy-metals; metal-tolerance; nucleotide-sequences. |
Thesaurus NAL: |
genes; sugarcane. |
Categoria do assunto: |
S Ciências Biológicas |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/item/32597/1/Prospecting-sugarcane.pdf
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Marc: |
LEADER 02232naa a2200289 a 4500 001 1489129 005 2018-06-04 008 2001 bl uuuu u00u1 u #d 100 1 $aDRUMMOND, R. D. 245 $aProspecting sugarcane genes involved in aluminum tolerance.$h[electronic resource] 260 $c2001 520 $aAluminium is one of the major factors that affect plant development in acid soils, causing a substantial reduction in yield in many crops. In South America, about 66% of the land surface is made up of acid soils where high aluminium saturation is one of the main limiting factors for agriculture. The biochemical and molecular basis of aluminium tolerance in plants is far from being completely understood despite a growing number of studies, and in the specific case of sugarcane there are virtually no reports on the effects of gene regulation on aluminium stress. The objective of the work presented in this paper was to prospect the sugarcane expressed sequence tag (SUCEST) data bank for sugarcane genes related to several biochemical pathways known to be involved in the responses to aluminium toxicity in other plant species and yeast. Sugarcane genes similar to most of these genes were found, including those coding for enzymes that alleviate oxidative stress or combat infection by pathogens and those which code for proteins responsible for the release of organic acids and signal transducers. The role of these genes in aluminium tolerance mechanisms is reviewed. Due to the high level of genomic conservation in related grasses such as maize, barley, sorghum and sugarcane, these genes may be valuable tools which will help us to better understand and to manipulate aluminium tolerance in these species. 650 $agenes 650 $asugarcane 653 $aAluminium 653 $abiochemical-pathways 653 $agene-expression 653 $aheavy-metals 653 $ametal-tolerance 653 $anucleotide-sequences 700 1 $aGUIMARAES, C. T. 700 1 $aFELIX, J. 700 1 $aNINAMANGO-CARDENAS, F. E. 700 1 $aCARNEIRO, N. P. 700 1 $aPAIVA, E 700 1 $aMENOSSI, M. 773 $tGenetics and Molecular Biology, Ribeirão Preto$gv. 24, n. 1/4, p. 221-230, 2001.
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