|
|
Registros recuperados : 54 | |
21. | | YAMANAKA, N.; BENEVENTI, M. A.; POLIZEL, A.; STOLF, R.; PAIVA, A. A. R.; SALINET, L. H.; LEMOS, N. G.; MARIN, S. R. R.; SILVEIRA, C. A.; TOBITA, S.; NAKASHIMA, K.; YAMAGUCHI-SHINOZAKI, K.; FARIAS, J. R. B.; NEPOMUCENO, A. L. Development of transgenic soybean tolerant tos drought stress. In: SUENAGA, K.; KUDO, H.; OSHIO, S. (Ed.). Comprehensive studies on the development of sustainable soybean production technology in South America. Tsukuba: JIRCAS, 2007. p. 21-26. (JIRCAS Working Report, 51). Biblioteca(s): Embrapa Soja. |
| |
22. | | BENEVENTI, M.; MARIN, S.; SILVEIRA, C.; FUGANTI, R.; POLIZEL, A.; NEPOMUCENO, A. L.; YAMAGUCHI-SHINOZAKI, K.; ROLLA, A.; SALINET, L.; STOLF, R.; NAKASHIMA, K.; YAMANAKA, N.; BINNECK, E.; FARIAS, J. R.; OLIVEIRA, M. C.; NEUMAIER, N.; ABDELNOOR, R.; MARCELINO, F. Drought stress tolerance induced in soybean by AtDREB1A/CBF3 transcription factor regulated by the rd29A stress-inducible promoter. In: WORLD SOYBEAN RESEARCH CONFERENCE, 8., 2009, Beijing. Developing a global soy blueprint for a safe secure and sustainable supply: abstracts. Beijing: Chinese Academy of Agricultural Sciences: Institute of Crop Science, 2009. p. 231-232, ref. P573. WSRC 2009. Editado por Lijuan Qiu, Rongxia Guan, Jian Jin, Qijan Song, Shuntang Guo, Wenbin Li, Yuanchao Wang, Tianfu Han, Xiaobing Liu, Deyue Yu, Lianzhou Jiang, Deliang Peng. Biblioteca(s): Embrapa Soja. |
| |
23. | | FUGANTI-PAGLIARINI, R.; MARIN, S. R. R.; MOLINARI, M. D. C.; BARBOSA, D. de A.; MOLINARI, H. B. C.; MERTZ-HENNING, L. M.; NEUMAIER, N.; FARIAS, J. R. B.; NAKASHIMA, K.; YAMAGUCHI-SHINOZAKI, K.; NEPOMUCENO, A. L. Drought-tolerant soybean development: evaluation of GM lines under greenhouse and field conditions. In: NAKASHIMA, K.; URAO, Takeshi. (Ed.). Development of biotechnologies and biotech crops for stable food production under adverse environments and changing climate conditions. Tsukuba: JIRCAS, 2020. p. 57-88. (JIRCAS Working Report, 91). Biblioteca(s): Embrapa Agroenergia; Embrapa Soja. |
| |
24. | | MOLINARI, M. D. C.; KANAMORI, N.; FUGANTI-PAGLIARINI, R.; MARIN, S. R.; MERTZ-HENNING, L. M.; FARIAS, J. R. B.; NEUMAIER, N.; URANO, K.; SHINOZAKI, K.; YAMAGUCHI-SHINOZAKI, K.; NAKASHIMA, K.; NEPOMUCENO, A. L. Obtenção e análise molecular da cultivar de soja BRS 184 geneticamente modificada com a construção SAT6 visando tolerância a seca. In: CONGRESSO BRASILEIRO DE SOJA, 7.; MERCOSOJA, 2015, Florianópolis. Tecnologia e mercado global: perspectivas para soja: anais. Londrina: Embrapa Soja, 2015. 3 p. 1 CD-ROM. Biblioteca(s): Embrapa Soja. |
| |
25. | | ENGELS, C.; FUGANTI, R.; RODRIGUES, F. A.; GIROTTO, L.; LEITE J. P.; ROLLA, A. A. P.; MARIN, S. R. R.; SILVEIRA, C. A.; FARIAS, J. R. B.; MARCELINO, F. C.; ABDELNOOR, R. V.; YAMAGUCHI-SHINOZAKI, K.; NEPOMUCENO, A. L. Obtenção e caracterização de plantas de soja (Glycine max) geneticamente modificadas visando maior tolerância à seca. In: CONGRESSO BRASILEIRO DE SOJA, 5.; MERCOSOJA 2009, Goiânia. Anais... Londrina: Embrapa Soja, 2009. Seção trabalhos, t. 176. 1 CD-ROM. Editado por Adilson de Oliveira Júnior, Odilon Ferreira Saraiva, Clara Beatriz Hoffmann Campo, César de Castro. Biblioteca(s): Embrapa Soja. |
| |
26. | | LEITE, J. P.; KANAMORI, N.; FUGANTI, R.; GIROTTO, L.; ROLLA, A. A. P.; ENGELS, C.; MARINHO, J. P.; FARIAS, J. R. B.; NEUMAIER, N.; ABDELNOOR, R. V.; MARCELINO, F. C.; YAMAGUCHI-SHINOZAKI, K.; NEPOMUCENO, A. L. Obtenção de plantas de soja geneticamente modificadas via Agrobacterium tumefaciens. In: JORNADA ACADÊMICA DA EMBRAPA SOJA, 4., 2009, Londrina. Resumos... Londrina: Embrapa Soja, 2009. p. 130-133. (Embrapa Soja. Documentos, 312). Editado por Odilon Ferreira Saraiva, Paula Geron Saiz Melo. Biblioteca(s): Embrapa Soja. |
| |
27. | | NEUMAIER, N.; CARVALHO, J. F. C.; ROLLA-SANTOS, A. A. P.; ENGELS, C.; FARIAS, J. R. B.; FUGANTI-PAGLIARINI, R.; MARCELINO-GUIMARÃES, F. C.; MARIN, S. R. R.; MIZOI, J.; YAMAGUCHI-SHINOZAKI, K.; NEPOMUCENO, A. L. Testing dreb genetically modified soybean plants for drought tolerance in both greenhouse and field conditions. In: WORLD SOYBEAN RESEARCH CONFERENCE, 9., 2013, Durban. [Proceedings...]. Durban: OPDT: OPOT, 2013. Abst. 216. 1 CD-ROM. WSRC. Biblioteca(s): Embrapa Soja. |
| |
28. | | BENEVENTI, M. A.; NEPOMUCENO, A. L.; YAMANAKA, N.; YAMAGUCHI-SHINOZAKI, K.; NAKASHIMA, K.; BINNECK, E.; FARIAS, J. R. B.; MARIN, S. R. R.; SILVEIRA, C. A.; PAIVA, A. A. R.; ABDELNOOR, R. V.; POLIZEL, A. M.; LUGLE, S. M. Transformação genética em soja pela inserção da construção gênica contendo a região promotora do gene rd29A e a região codante do gene DREB1A de Arabidopsis thaliana, visando tolerância à seca. In: CONGRESSO BRASILEIRO DE SOJA, 4., 2006, Londrina. Resumos... Londrina: Embrapa Soja, 2006. p. 47. Organizado por Odilon Ferreira Saraiva, Simone Ery Grosskopf. Biblioteca(s): Embrapa Soja. |
| |
29. | | NEPOMUCENO, A. L.; BENEVENTI, M. A., YAMAGUCHI-SHINOZAKI, K.; YAMANAKA, N.; NAKASHIMA, K.; BINNECK, E.; FARIAS, J. R. B.; MARIN, S. R. R.; SILVEIRA, C. A.; LUGLE, S. M.; ABDELNOOR, R.; PAIVA, A. A. R.; POLIZEL, A. M. Transformação genética em soja visando tolerância à seca. In: CONGRESO DE SOJA DEL MERCOSUR, 3., 2006, Rosário. Mercosoja 2006: mesas científico-técnicas, resúmenes expandidos / comunicaciones. Rosário: Associación de la Cadena de Soja Argentina, 2006. p. 242-245. Nome correto do décimo primeiro autor ABDELNOOR, R. V. Biblioteca(s): Embrapa Soja. |
| |
30. | | ENGELS, C.; FUGANTI, R.; RODRIGUES, F. A.; KANAMORI, N.; ROLLA, A. A. P.; MARIN, S. R. R.; FARIAS, J. R. B.; NEUMAIER, N.; MARCELINO, F. C.; MIZOI, J.; YAMAGUCHI-SHINOZAKI, K.; NEPOMUCENO, A. L. Transgene copy number quantification by qPCR in GM soybean lines containing the rd29A:AtDREB2A construction. In: CONGRESSO BRASILEIRO DE BIOTECNOLOGIA, 3., 2010, Fortaleza. Programa e resumos. Brasília, DF: SBBiotec, 2010. p. 197. Biblioteca(s): Embrapa Soja. |
| |
31. | | DIAS, B. B. A.; MARTINS, P. K.; RIBEIRO, A. P.; Yamaguchi-Shinozaki, K.; Nakashima, K.; Fujita, Y.; NEPOMUCENO, A. L.; SOUSA, C. A. F. de; KOBAYASHI, A. K.; MOLINARI, H. B. C. Water deficit induced expression of AREB gene in sugarcane. In: GERMPLASM AND BREEDING, 11.; MOLECULAR BIOLOGY ISSCT WORKSHOP, 8., 2015, Saint-Gilles Réunion Island. Pushing the frontiers of sugarcane improvement: abstract. [S.l]: Ercane, 2015. Biblioteca(s): Embrapa Agroenergia. |
| |
32. | | MARINHO, J. P.; KANAMORI, N.; FERREIRA, L. C.; CARVALHO, J. F. C.; FREITAS, R. A.; FUGANTI-PAGLIARINI, R.; MARIN, S. R. R.; RODRIGUES, F. A; HENNING, L. M. M.; FARIAS, J. R. B.; NEUMAIER, N.; MARCELINO-GUIMARÃES, F. C.; YOSHIDA, T.; FUJITA, Y.; YAMAGUCHI-SHINOZAKI, K.; NAKASHIMA, K.; NEPOMUCENO, A. L. Análise da expressão de genes induzidos por déficit hídrico em soja. In: CONGRESSO BRASILEIRO DE SOJA, 7.; MERCOSOJA, 2015, Florianópolis. Tecnologia e mercado global: perspectivas para soja: anais. Londrina: Embrapa Soja, 2015. 3 p. 1 CD-ROM. Biblioteca(s): Embrapa Soja. |
| |
33. | | FUGANTI-PAGLIARINI, R.; CARVALHO, J. F. C.; ROLLA-SANTOS, A. A. P.; ENGELS, C.; MOLINARI, M. D. C.; VASQUEZ, G.; MARIN, S. R. R.; KANAMORI, N.; FARIAS, J. R. B.; NEUMAIER, N.; OLIVEIRA, M. C. N.; YAMAGUCHI-SHINOZAKI, K.; NEPOMUCENO, A. L. Análise fisiológica e agronômica de plantas de soja geneticamente modificadas com os genes AtDREB1A e AtDREB2A sob déficit hídrico em condições experimentais de campo. In: CONGRESO DE LA SOJA DEL MERCOSUR, 5.; FORO DE LA SOJA ASIA, 1., 2011, Rosário. Un grano: un universo. [Rosário: Asociación de la Cadena de la Soja Argentina], 2011. 7 p. 1 CD-ROM. MERCOSOJA 2011. Biblioteca(s): Embrapa Soja. |
| |
34. | | NAKASHIMA, K.; KANAMORI, N.; NAGATOSHI, Y.; FUJITA, Y.; TAKASAKI, H.; URANO, K.; MOGAMI, J.; MIZOI, J.; MERTZ-HENNING, L. M.; NEUMAIER, N.; FARIAS, J. R. B.; FUGANTI-PAGLIARINI, R.; MARIN, S. R. R.; SHINOZAKI, K.; YAMAGUCHI-SHINOZAKI, K.; NEPOMUCENO, A. L. Application of biotechnology to generate drought-tolerant soybean plants in brazil: development of genetic engineering technology of crops with stress tolerance against degradation of global environment. In: KOKUBUN, M.; ASANUMA, S. (Ed.). Crop production under stressful conditions: application of cutting edge Science and technology in developing countries. Singapore: Springer, c2018. p. 111-130. Biblioteca(s): Embrapa Soja. |
| |
35. | | LISEI-DE-SÁ, M. E.; ARRAES, F. B. N.; BRITO, G. G.; BENEVENTI, M. A.; LOURENCO-TESSUTTI, I.; BASSO, A. M. M.; AMORIM, R. M. S.; SILVA, M. C. M.; FAHEEM, M.; OLIVEIRA, N. G.; MIZOI, J.; YAMAGUCHI-SHINOZAKI, K.; GROSSI-DE-SA, M. F. AtDREB2A-CA influences root architecture and increases drought tolerance in transgenic cotton. Agricultural Sciences, v. 8, p. 1195-1225, 2017. Biblioteca(s): Embrapa Clima Temperado; Embrapa Recursos Genéticos e Biotecnologia. |
| |
36. | | MARINHO, J. P.; KANAMORI, N.; FERREIRA, L. C.; FUGANTI-PAGLIARINI, R.; CARVALHO, J. de F. C.; FREITAS, R. A.; MARIN, S. R. R.; RODRIGUES, F. A.; MERTZ-HENNING, L. M.; FARIAS, J. R. B.; NEUMAIER, N.; OLIVEIRA, M. C. N. de; MARCELINO-GUIMARÃES, F. C.; YOSHIDA, T.; FUJITA, Y.; YAMAGUCHI-SHINOZAKI, K.; NAKASHIMA, K.; NEPOMUCENO, A. L. Characterization of molecular and physiological responses under water deficit of genetically modified soybean plants overexpressing the ATAREB1 transcription fator. Plant Molecular Biology Reporter, v. 34, n. 2, p. 410-426, 2016. Biblioteca(s): Embrapa Soja. |
| |
37. | | FUGANTI-PAGLIARINI, R; FERREIRA, L. C.; RODRIGUES, F. A.; MOLINARI, H. B. C.; MARIN, S. R. R.; MOLINARI, M. D. C.; MARCOLINO-GOMES, J.; MERTZ-HENNING, L. M.; FARIAS, J. R. B.; OLIVEIRA, M. C. N. de; NEUMAIER, N.; KANAMORI, N.; FUJITA, Y.; MIZOI, J.; NAKASHIMA, K.; YAMAGUCHI-SHINOZAKI, K.; NEPOMUCENO, A. L. Characterization of soybean genetically modified for drought tolerance in field conditions. Frontiers in Plant Science, v. 8, artigo 448, 2017. Biblioteca(s): Embrapa Agroenergia; Embrapa Soja. |
| |
38. | | NEPOMUCENO, A. L.; FARIAS, J. R. B.; YAMAGUCHI-SHINOZAKI, K.; BENEVENTI, M. A.; NEUMAIER, N.; YAMANAKA, N.; NAKASHIMA, K.; BINNECK, E.; MARIN, S. R. R.; STOLF, R.; FUGANTI, R.; SILVEIRA, C. A. da; OLIVEIRA, M. C. N. de; ABDELNOOR, R. V.; ROLLA, A. A. P.; POLIZEL, A. M. Introdução de genes por biobalística em soja visando tolerância à seca. In: SARAIVA, O. F.; LEITE, R. M. V. B. de C. (Ed.). Resultados de pesquisa da Embrapa Soja 2006. Londrina: Embrapa Soja, 2008. p. 109-124. (Embrapa Soja. Documentos, 308). Biblioteca(s): Embrapa Soja. |
| |
39. | | BENEVENTI, M. A.; NAKASHIMA, K.; YAMANAKA, N.; BINNECK, E.; FARIAS, J. R. B.; OLIVEIRA, M. C. N.; NEUMAIER, N.; ABDELNOOR, R. V.; MARCELINO, F. C.; MARIN, S. R. R.; SILVEIRA, C. A.; FUGANTI R.; STOLF, R.; SALINET, L.; ROLLA, A. A. P.; POLIZEL, A. M.; YAMAGUCHI-SHINOZAKI, K.; NEPOMUCENO, A. L. Introduction of Arabidopsis thaliana DREB1A/CBF3 transcription factor into soybean improves drought stress tolerance. In: INTERNATIONAL CONFERENCE ON INTEGRATED APPROACHES TO IMPROVE CROP PRODUCTION UNDER DROUGHT-PRONE ENVIRONMENTS, 3., 2009, Shangai. Abstracts... Shangai: Shangai Academy of Agricultural Sciences: Shangai Agrobiological Gene Center, 2009. p. 133, ref. P 4.07. INTERDROUGHT 2009. Biblioteca(s): Embrapa Soja. |
| |
40. | | MARTINS, M. T. B.; NEPOMUCENO, A. L.; MARCELlNO, F. C.; FARIAS, J. R. B.; ABDELNOOR, R.; MARIN S. R. R.; SILVEIRA, C. A.; YAMAGUCHI-SHINOZAKI, K.; YAMANAKA, N.; NAKASHIMA K.; PAIVA, A. A. R.; BENEVENTI, M. A.; STOLF, R.; OLIVEIRA, G. B. A. de. Caracterização molecular de eventos transformados com a construção rd29A: DREB1 A. In: JORNADA ACADÊMICA DA EMBRAPA SOJA, 2008, Londrina. Resumos expandidos... Londrina: Embrapa Soja, 2008. p. 125-128 (Embrapa Soja. Documentos, 297). Biblioteca(s): Embrapa Soja. |
| |
Registros recuperados : 54 | |
|
|
| Acesso ao texto completo restrito à biblioteca da Embrapa Soja. Para informações adicionais entre em contato com valeria.cardoso@embrapa.br. |
Registro Completo
Biblioteca(s): |
Embrapa Soja. |
Data corrente: |
08/10/2015 |
Data da última atualização: |
03/11/2017 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 2 |
Autoria: |
MARINHO, J. P.; KANAMORI, N.; FERREIRA, L. C.; FUGANTI-PAGLIARINI, R.; CARVALHO, J. de F. C.; FREITAS, R. A.; MARIN, S. R. R.; RODRIGUES, F. A.; MERTZ-HENNING, L. M.; FARIAS, J. R. B.; NEUMAIER, N.; OLIVEIRA, M. C. N. de; MARCELINO-GUIMARÃES, F. C.; YOSHIDA, T.; FUJITA, Y.; YAMAGUCHI-SHINOZAKI, K.; NAKASHIMA, K.; NEPOMUCENO, A. L. |
Afiliação: |
JULIANE PRELA MARINHO, UEL; NORIHITO KANAMORI, JIRCAS; LEONARDO CESAR FERREIRA, Pós-graduando; RENATA FUGANTI-PAGLIARINI, Pós-graduanda; JOSIRLEY DE FÁTIMA CORRÊA CARVALHO, pós-graduanda; RAFAELA ALVES FREITAS, UENP Campus Luiz Meneghel; SILVANA REGINA ROCKENBACH MARIN, CNPSO; FABIANA APARECIDA RODRIGUES, pós-graduanda; LILIANE MARCIA MERTZ HENNING, CNPSO; JOSE RENATO BOUCAS FARIAS, CNPSO; NORMAN NEUMAIER, CNPSO; MARIA CRISTINA NEVES DE OLIVEIRA, CNPSO; FRANCISMAR CORREA MARCELINO GUIMARAES, CNPSO; TAKUYA YOSHIDA, Tokyo University; YASUNARI FUJITA, JIRCAS; KAZUKO YAMAGUCHI-SHINOZAKI, Tokyo University; KAZUO NAKASHIMA, JIRCAS; ALEXANDRE LIMA NEPOMUCENO, SRI. |
Título: |
Characterization of molecular and physiological responses under water deficit of genetically modified soybean plants overexpressing the ATAREB1 transcription fator. |
Ano de publicação: |
2016 |
Fonte/Imprenta: |
Plant Molecular Biology Reporter, v. 34, n. 2, p. 410-426, 2016. |
ISSN: |
0735-9640 |
DOI: |
10.1007/s11105-015-0928-0 |
Idioma: |
Inglês |
Conteúdo: |
Drought is one of the major factors limiting crop productivity worldwide. Currently, the techniques of genetic engineering are powerful tools for the development of drought-tolerant plants, once they allow for the modification of expression patterns of genes responsive to drought. Within this context, transcription factors recognize specific DNA sequences in the regulatory region of target genes, and thereby regulate their expression. AREB is a transcription factor in the basic leucine zipper family, which binds to the ABRE element in the promoter region of genes induced by abscisic acid and drought. In this study, soybean plants transformed with the 35S:AtAREB1 construct were submitted to drought under greenhouse conditions. AtAREB1 expression was observed in the transgenic lines 1Ea2939 and 1Eb2889, but not in the event 1Ea15 and, under control of the CaMV 35S promoter, did not cause dwarfism and resulted in a higher survival rate of transformed plants after drought and rehydration. Moreover, 1Ea2939 and 1Eb2889 plants presented a greater total number of pods and seeds and increased dry matter content of seeds. The best performance of the transgenic lines 1Ea2939 and 1Eb2889 relative to BR 16 plants (wild type) and to event 1Ea15 might be related to mechanisms of drought prevention through reduced stomatal conductance and leaf transpiration under control conditions. Changes in the expression profile of phosphatases and kinases may also be involved. Such results suggest that the constitutive overexpression of the transcription factor AtAREB1 leads to an improved capacity of the soybean crop to cope with drought with no yield losses. MenosDrought is one of the major factors limiting crop productivity worldwide. Currently, the techniques of genetic engineering are powerful tools for the development of drought-tolerant plants, once they allow for the modification of expression patterns of genes responsive to drought. Within this context, transcription factors recognize specific DNA sequences in the regulatory region of target genes, and thereby regulate their expression. AREB is a transcription factor in the basic leucine zipper family, which binds to the ABRE element in the promoter region of genes induced by abscisic acid and drought. In this study, soybean plants transformed with the 35S:AtAREB1 construct were submitted to drought under greenhouse conditions. AtAREB1 expression was observed in the transgenic lines 1Ea2939 and 1Eb2889, but not in the event 1Ea15 and, under control of the CaMV 35S promoter, did not cause dwarfism and resulted in a higher survival rate of transformed plants after drought and rehydration. Moreover, 1Ea2939 and 1Eb2889 plants presented a greater total number of pods and seeds and increased dry matter content of seeds. The best performance of the transgenic lines 1Ea2939 and 1Eb2889 relative to BR 16 plants (wild type) and to event 1Ea15 might be related to mechanisms of drought prevention through reduced stomatal conductance and leaf transpiration under control conditions. Changes in the expression profile of phosphatases and kinases may also be involved. Such results suggest tha... Mostrar Tudo |
Thesagro: |
Deficiência hídrica; Soja. |
Thesaurus NAL: |
Drying; Soybeans. |
Categoria do assunto: |
F Plantas e Produtos de Origem Vegetal |
Marc: |
LEADER 02891naa a2200397 a 4500 001 2026143 005 2017-11-03 008 2016 bl uuuu u00u1 u #d 022 $a0735-9640 024 7 $a10.1007/s11105-015-0928-0$2DOI 100 1 $aMARINHO, J. P. 245 $aCharacterization of molecular and physiological responses under water deficit of genetically modified soybean plants overexpressing the ATAREB1 transcription fator.$h[electronic resource] 260 $c2016 520 $aDrought is one of the major factors limiting crop productivity worldwide. Currently, the techniques of genetic engineering are powerful tools for the development of drought-tolerant plants, once they allow for the modification of expression patterns of genes responsive to drought. Within this context, transcription factors recognize specific DNA sequences in the regulatory region of target genes, and thereby regulate their expression. AREB is a transcription factor in the basic leucine zipper family, which binds to the ABRE element in the promoter region of genes induced by abscisic acid and drought. In this study, soybean plants transformed with the 35S:AtAREB1 construct were submitted to drought under greenhouse conditions. AtAREB1 expression was observed in the transgenic lines 1Ea2939 and 1Eb2889, but not in the event 1Ea15 and, under control of the CaMV 35S promoter, did not cause dwarfism and resulted in a higher survival rate of transformed plants after drought and rehydration. Moreover, 1Ea2939 and 1Eb2889 plants presented a greater total number of pods and seeds and increased dry matter content of seeds. The best performance of the transgenic lines 1Ea2939 and 1Eb2889 relative to BR 16 plants (wild type) and to event 1Ea15 might be related to mechanisms of drought prevention through reduced stomatal conductance and leaf transpiration under control conditions. Changes in the expression profile of phosphatases and kinases may also be involved. Such results suggest that the constitutive overexpression of the transcription factor AtAREB1 leads to an improved capacity of the soybean crop to cope with drought with no yield losses. 650 $aDrying 650 $aSoybeans 650 $aDeficiência hídrica 650 $aSoja 700 1 $aKANAMORI, N. 700 1 $aFERREIRA, L. C. 700 1 $aFUGANTI-PAGLIARINI, R. 700 1 $aCARVALHO, J. de F. C. 700 1 $aFREITAS, R. A. 700 1 $aMARIN, S. R. R. 700 1 $aRODRIGUES, F. A. 700 1 $aMERTZ-HENNING, L. M. 700 1 $aFARIAS, J. R. B. 700 1 $aNEUMAIER, N. 700 1 $aOLIVEIRA, M. C. N. de 700 1 $aMARCELINO-GUIMARÃES, F. C. 700 1 $aYOSHIDA, T. 700 1 $aFUJITA, Y. 700 1 $aYAMAGUCHI-SHINOZAKI, K. 700 1 $aNAKASHIMA, K. 700 1 $aNEPOMUCENO, A. L. 773 $tPlant Molecular Biology Reporter$gv. 34, n. 2, p. 410-426, 2016.
Download
Esconder MarcMostrar Marc Completo |
Registro original: |
Embrapa Soja (CNPSO) |
|
Biblioteca |
ID |
Origem |
Tipo/Formato |
Classificação |
Cutter |
Registro |
Volume |
Status |
Fechar
|
Nenhum registro encontrado para a expressão de busca informada. |
|
|