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Registro Completo |
Biblioteca(s): |
Embrapa Agroenergia; Embrapa Cerrados. |
Data corrente: |
02/07/2020 |
Data da última atualização: |
19/08/2020 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Autoria: |
ROSADO, R. D. S.; ROSADO, T. B.; CRUZ, C. D.; FERRAZ, A. G.; CONCEIÇÃO, L. D. H. C. S. DA; LAVIOLA, B. G. |
Afiliação: |
Renato Domiciano Silva Rosado, Universidade Federal de Viçosa; Tatiana Barbosa Rosado, Universidade de Brasília; Cosme Damião Cruz, Universidade Federal de Viçosa; Alexandre Gomes Ferraz, Universidade Federal de Viçosa; LEO DUC HAA CARSON SCHWARTZHAUPT DA, CPAC; BRUNO GALVEAS LAVIOLA, CNPAE. |
Título: |
Genetic parameters and simultaneous selection for adaptability and stability of macaw palm. |
Ano de publicação: |
2019 |
Fonte/Imprenta: |
Scientia Horticulturae, v. 248, p. 291-296, Apr. 2019. |
DOI: |
https://doi.org/10.1016/j.scienta.2018.12.041 |
Idioma: |
Inglês |
Notas: |
No documento consta: Léu Duc Haa Carson Schwartzhaupt da Conceição. |
Conteúdo: |
Macaw palm is a potential raw material for biodiesel production due to its high oil yield that being able used as aviation biofuels. However, the species is still under domestication in Brazil, which requires accurate selection strategies to obtain superior genotypes. This work aimed to estimate genetic parameters and select macaw palm progenies for yield, adaptability, and stability, via mixed models. Fifteen half-sib progenies of macaw palm were evaluated at the juvenile stage, considering a randomized block design, with five replications and three plants per plot, spaced at 5 x 5 m. The following traits were evaluated: plant height, canopy projection in the row, canopy projection between rows, stem diameter, and fruit yield. The genetic parameters were estimated by the mixed models' methodology (REML/BLUP). The selection of the promising genotypes was based on the HMRPGV method and consisted of three strategies: i) mean performance in all environments (without interaction effect), ii) performance of genotypes in each environment with the mean of the effect of interaction, both based on the predicted genetic value, and (iii) simultaneous selection for yield, stability (HMGV), and adaptability (RPGV). Heritability estimates indicated the possibility of the successful selection of promising genotypes. Progenies CPAC-012, CPAC-01, CPAC-05, CPAC-03, Accession-280, CPAC-07, and EPAMIG-1 stood out, considering si- multaneous selection for yield, stability, and adaptability. The statistics HMGV, RPGV, and HMRPGV presented the same genotype ordering and therefore are promising methodologies for the selection of macaw palm genotypes. MenosMacaw palm is a potential raw material for biodiesel production due to its high oil yield that being able used as aviation biofuels. However, the species is still under domestication in Brazil, which requires accurate selection strategies to obtain superior genotypes. This work aimed to estimate genetic parameters and select macaw palm progenies for yield, adaptability, and stability, via mixed models. Fifteen half-sib progenies of macaw palm were evaluated at the juvenile stage, considering a randomized block design, with five replications and three plants per plot, spaced at 5 x 5 m. The following traits were evaluated: plant height, canopy projection in the row, canopy projection between rows, stem diameter, and fruit yield. The genetic parameters were estimated by the mixed models' methodology (REML/BLUP). The selection of the promising genotypes was based on the HMRPGV method and consisted of three strategies: i) mean performance in all environments (without interaction effect), ii) performance of genotypes in each environment with the mean of the effect of interaction, both based on the predicted genetic value, and (iii) simultaneous selection for yield, stability (HMGV), and adaptability (RPGV). Heritability estimates indicated the possibility of the successful selection of promising genotypes. Progenies CPAC-012, CPAC-01, CPAC-05, CPAC-03, Accession-280, CPAC-07, and EPAMIG-1 stood out, considering si- multaneous selection for yield, stability, and adaptability. The ... Mostrar Tudo |
Thesagro: |
Genética Vegetal; Genótipo; Hereditariedade; Progênie. |
Thesaurus Nal: |
Acrocomia; Genotype; Heritability; Plant breeding; Progeny. |
Categoria do assunto: |
-- |
Marc: |
LEADER 02622naa a2200313 a 4500 001 2124420 005 2020-08-19 008 2019 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.1016/j.scienta.2018.12.041$2DOI 100 1 $aROSADO, R. D. S. 245 $aGenetic parameters and simultaneous selection for adaptability and stability of macaw palm.$h[electronic resource] 260 $c2019 500 $aNo documento consta: Léu Duc Haa Carson Schwartzhaupt da Conceição. 520 $aMacaw palm is a potential raw material for biodiesel production due to its high oil yield that being able used as aviation biofuels. However, the species is still under domestication in Brazil, which requires accurate selection strategies to obtain superior genotypes. This work aimed to estimate genetic parameters and select macaw palm progenies for yield, adaptability, and stability, via mixed models. Fifteen half-sib progenies of macaw palm were evaluated at the juvenile stage, considering a randomized block design, with five replications and three plants per plot, spaced at 5 x 5 m. The following traits were evaluated: plant height, canopy projection in the row, canopy projection between rows, stem diameter, and fruit yield. The genetic parameters were estimated by the mixed models' methodology (REML/BLUP). The selection of the promising genotypes was based on the HMRPGV method and consisted of three strategies: i) mean performance in all environments (without interaction effect), ii) performance of genotypes in each environment with the mean of the effect of interaction, both based on the predicted genetic value, and (iii) simultaneous selection for yield, stability (HMGV), and adaptability (RPGV). Heritability estimates indicated the possibility of the successful selection of promising genotypes. Progenies CPAC-012, CPAC-01, CPAC-05, CPAC-03, Accession-280, CPAC-07, and EPAMIG-1 stood out, considering si- multaneous selection for yield, stability, and adaptability. The statistics HMGV, RPGV, and HMRPGV presented the same genotype ordering and therefore are promising methodologies for the selection of macaw palm genotypes. 650 $aAcrocomia 650 $aGenotype 650 $aHeritability 650 $aPlant breeding 650 $aProgeny 650 $aGenética Vegetal 650 $aGenótipo 650 $aHereditariedade 650 $aProgênie 700 1 $aROSADO, T. B. 700 1 $aCRUZ, C. D. 700 1 $aFERRAZ, A. G. 700 1 $aCONCEIÇÃO, L. D. H. C. S. DA 700 1 $aLAVIOLA, B. G. 773 $tScientia Horticulturae$gv. 248, p. 291-296, Apr. 2019.
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Registro Completo
Biblioteca(s): |
Embrapa Cerrados; Embrapa Soja. |
Data corrente: |
17/11/1997 |
Data da última atualização: |
20/11/1997 |
Tipo da produção científica: |
Circular Técnica |
Autoria: |
HUNGRIA, M.; VARGAS, M. A. T.; CAMPO, R. J. |
Título: |
A inoculacao da soja. |
Ano de publicação: |
1997 |
Fonte/Imprenta: |
Londrina: EMBRAPA-CNPSo, 1997. |
Páginas: |
28P. |
Série: |
(EMBRAPA-CNPSo. Circular Tecnica, 17; EMBRAPA-CPAC. Circular Tecnica, 34). |
Idioma: |
Português |
Conteúdo: |
Como ocorre o processo de fixacao biologica do N2?; Quando e por quanto tempo a soja consegue fixar N2?; Por que e necessario inocular a soja em solos de primeiro cultivo?; Em area tradicionalmente cultivadas, vale a pena reinocular?; Os incrementos no rendimento obtidos pela reinoculacao compensam financeiramente?; Com deve ser o inoculante para a soja?; No campo, quais os principais fatores limitantes a fixacao biologica do N2?; Existem outros inoculantes biologicos para a cultura da soja?; Como saber mais sobre a fixacao biologica do N2?; Consideracoes finais. |
Palavras-Chave: |
Biological fixation; Bradyrhizobium elkanni; Bradyrhizobium elkanu; Brasil; CNPSo; CPAC; EMBRAPA; Fixação biológica; Fixacao biologica de nitrogenio; Fixacao biologica do nitrogenio; Inoculation; Parana. |
Thesagro: |
Bactéria; Bradyrhizobium Japonicum; Fixação de Nitrogênio; Glycine Max; Inoculação; Nitrogênio; Rhizobium; Soja. |
Thesaurus NAL: |
Bradyrhizobium elkanii; Brazil; inoculation methods; nitrogen; nitrogen fixation; soybeans. |
Categoria do assunto: |
-- X Pesquisa, Tecnologia e Engenharia |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/CNPSO/15723/1/circtec17.pdf
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Marc: |
LEADER 01803nam a2200469 a 4500 001 1553170 005 1997-11-20 008 1997 bl uuuu u0uu1 u #d 100 1 $aHUNGRIA, M. 245 $aA inoculacao da soja. 260 $aLondrina: EMBRAPA-CNPSo$c1997 300 $a28P. 490 $a(EMBRAPA-CNPSo. Circular Tecnica, 17; EMBRAPA-CPAC. Circular Tecnica, 34). 520 $aComo ocorre o processo de fixacao biologica do N2?; Quando e por quanto tempo a soja consegue fixar N2?; Por que e necessario inocular a soja em solos de primeiro cultivo?; Em area tradicionalmente cultivadas, vale a pena reinocular?; Os incrementos no rendimento obtidos pela reinoculacao compensam financeiramente?; Com deve ser o inoculante para a soja?; No campo, quais os principais fatores limitantes a fixacao biologica do N2?; Existem outros inoculantes biologicos para a cultura da soja?; Como saber mais sobre a fixacao biologica do N2?; Consideracoes finais. 650 $aBradyrhizobium elkanii 650 $aBrazil 650 $ainoculation methods 650 $anitrogen 650 $anitrogen fixation 650 $asoybeans 650 $aBactéria 650 $aBradyrhizobium Japonicum 650 $aFixação de Nitrogênio 650 $aGlycine Max 650 $aInoculação 650 $aNitrogênio 650 $aRhizobium 650 $aSoja 653 $aBiological fixation 653 $aBradyrhizobium elkanni 653 $aBradyrhizobium elkanu 653 $aBrasil 653 $aCNPSo 653 $aCPAC 653 $aEMBRAPA 653 $aFixação biológica 653 $aFixacao biologica de nitrogenio 653 $aFixacao biologica do nitrogenio 653 $aInoculation 653 $aParana 700 1 $aVARGAS, M. A. T. 700 1 $aCAMPO, R. J.
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