Adaptability and stability of soybean cultivars in four sowing seasons
Autor(a) principal: | |
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Data de Publicação: | 2019 |
Outros Autores: | , , , , , , |
Tipo de documento: | Artigo |
Idioma: | eng |
Título da fonte: | Bioscience journal (Online) |
Texto Completo: | https://seer.ufu.br/index.php/biosciencejournal/article/view/42351 |
Resumo: | In recent decades, the expansion of soybean production in Brazil has been observed. This advance was motivated by the search of environments with better cultivation conditions, as well as the development of genotypes with wide adaptation. The diversity of "environments" hinders the process of selection and recommendation of cultivars, since the productive potential of a cultivar is given as a function of the sum of the genotype effect, the environment and the interaction between the latter two (G x E). In the case of this G x E interaction, regional studies are necessary in order to detail the differential behavior of the cultivars. Thus, the objective of this work was to evaluate the genotype interaction by environments, adaptability and phenotypic stability for grain yield, of fifteen soybean cultivars, in four sowing seasons, in order to identify cultivars that combine high productive potential, predictability of behavior and adaptation to the edaphoclimatic conditions of Uberlândia-MG. The trials were conducted at the Experimental Farm Capim Branco, in Uberlândia-MG. Fifteen soybean cultivars were evaluated in four sowing seasons (October 23, 2016, November 19, 2016, December 10, 2016 and January 14, 2017), in relation to grain yield. The experimental design was of randomized complete blocks, with three replications, in each season. Data were submitted to individual and joint analyzes. The G x E interaction was decomposed by the method proposed by Cruz and Castoldi (1991). The differential behavior of the genotypes was detailed by the adaptability and phenotypic stability by the methods of Eberhart and Russell (1966), Lin and Binns (1988) modified by Carneiro (1998), AMMI and Centroid. By the analysis of joint variance, it was observed the existence of the cultivar interaction by sowing times (C x E), for the grain yield trait, at the 5 % probability level by the F test. The C x E was predominantly complex in nature. The cultivar CD 2737 RR presented satisfactory results for the four sowing seasons in Uberlândia-MG, with high grain yield and predictability of behavior, by the evaluated methods. The cultivar NS 6909 IPRO was classified into favorable environments by the methods of Eberhart and Russell (1966) and Lin and Binns (1988) modified by Carneiro (1998). Considering Lin and Binns (1988) modified by Carneiro (1998) and Centroid the cultivar that is also classified for this cultivation condition is UFUS 8301. By AMMI, UFUS 7415, CD 2737 RR and UFUS Milionária are considered stable and adaptable. |
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Adaptability and stability of soybean cultivars in four sowing seasons Adaptabilidade e estabilidade de cultivares de soja em quatro épocas de semeaduraGlycine max.Interaction cultivars x sowing season.Adaptation and predictability of behavior.Agricultural SciencesIn recent decades, the expansion of soybean production in Brazil has been observed. This advance was motivated by the search of environments with better cultivation conditions, as well as the development of genotypes with wide adaptation. The diversity of "environments" hinders the process of selection and recommendation of cultivars, since the productive potential of a cultivar is given as a function of the sum of the genotype effect, the environment and the interaction between the latter two (G x E). In the case of this G x E interaction, regional studies are necessary in order to detail the differential behavior of the cultivars. Thus, the objective of this work was to evaluate the genotype interaction by environments, adaptability and phenotypic stability for grain yield, of fifteen soybean cultivars, in four sowing seasons, in order to identify cultivars that combine high productive potential, predictability of behavior and adaptation to the edaphoclimatic conditions of Uberlândia-MG. The trials were conducted at the Experimental Farm Capim Branco, in Uberlândia-MG. Fifteen soybean cultivars were evaluated in four sowing seasons (October 23, 2016, November 19, 2016, December 10, 2016 and January 14, 2017), in relation to grain yield. The experimental design was of randomized complete blocks, with three replications, in each season. Data were submitted to individual and joint analyzes. The G x E interaction was decomposed by the method proposed by Cruz and Castoldi (1991). The differential behavior of the genotypes was detailed by the adaptability and phenotypic stability by the methods of Eberhart and Russell (1966), Lin and Binns (1988) modified by Carneiro (1998), AMMI and Centroid. By the analysis of joint variance, it was observed the existence of the cultivar interaction by sowing times (C x E), for the grain yield trait, at the 5 % probability level by the F test. The C x E was predominantly complex in nature. The cultivar CD 2737 RR presented satisfactory results for the four sowing seasons in Uberlândia-MG, with high grain yield and predictability of behavior, by the evaluated methods. The cultivar NS 6909 IPRO was classified into favorable environments by the methods of Eberhart and Russell (1966) and Lin and Binns (1988) modified by Carneiro (1998). Considering Lin and Binns (1988) modified by Carneiro (1998) and Centroid the cultivar that is also classified for this cultivation condition is UFUS 8301. By AMMI, UFUS 7415, CD 2737 RR and UFUS Milionária are considered stable and adaptable.: Nas últimas décadas, observou-se a expansão da produção agrícola de soja no Brasil. Esse avanço foi motivado pela busca de ambientes com melhores condições de cultivo, bem como o desenvolvimento de genótipos com ampla adaptação. A diversidade de “ambientes” dificulta o processo de seleção e recomendação de cultivares, pois o potencial produtivo de uma cultivar é dado em função da somatória do efeito genotípico, do ambiente e da interação entre ambos (G x A). Caso haja essa interação G x A, fazem-se necessários estudos regionalizados a fim de pormenorizar o comportamento diferencial das cultivares. Assim, o objetivo deste trabalho foi avaliar a interação genótipos por ambientes, adaptabilidade e estabilidade fenotípica para produtividade de grãos de 15 cultivares de soja, em quatro épocas de semeadura, de modo a identificar cultivares que aliam alto potencial produtivo, previsibilidade de comportamento e adaptação às condições edafoclimáticas de Uberlândia-MG. Os ensaios foram conduzidos na Fazenda Experimental Capim Branco, em Uberlândia-MG. Foram avaliadas 15 cultivares de soja, em quatro épocas de semeadura (23 de outubro de 2016, 19 de novembro de 2016, 10 de dezembro de 2016 e 14 de janeiro de 2017), quanto a produtividade de grãos. O delineamento experimental foi de blocos completos casualizados, com três repetições, em cada época. Os dados obtidos foram submetidos a análises individuais e conjunta. A interação G x A foi decomposta pelo método proposto por Cruz e Castoldi (1991). O comportamento diferencial dos genótipos foi pormenorizado pela adaptabilidade e estabilidade fenotípica dos métodos de Eberhart e Russell (1966), Lin e Binns (1988) modificado por Carneiro (1998), AMMI e Centróide. Por meio da análise de variância conjunta observou-se a existência da interação cultivares por épocas de semeadura (C x E), para o caráter produtividade de grãos, ao nível de 5 % de probabilidade pelo teste F. Quanto a natureza C x E foi predominante complexa. A cultivar CD 2737 RR apresentou resultados satisfatórios para as quatro épocas de semeadura em Uberlândia-MG, com alta produtividade de grãos e previsibilidade de comportamento, pelos métodos avaliados. A cultivar NS 6909 IPRO foi classificada para ambientes favoráveis, pelos métodos de Eberhart e Russell (1966) e Lin e Binns (1988), modificado por Carneiro (1998). Considerando Lin e Binns (1988), modificado por Carneiro (1998), e Centróide a cultivar que é classificada também para essa condição de cultivo é UFUS 8301. Pelo o AMMI, UFUS 7415, CD 2737 RR e UFUS Milionária são tidas como estáveis e de ampla adaptação.EDUFU2019-10-09info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfhttps://seer.ufu.br/index.php/biosciencejournal/article/view/4235110.14393/BJ-v35n5a2019-42351Bioscience Journal ; Vol. 35 No. 5 (2019): Sept./Oct.; 1450-1462Bioscience Journal ; v. 35 n. 5 (2019): Sept./Oct.; 1450-14621981-3163reponame:Bioscience journal (Online)instname:Universidade Federal de Uberlândia (UFU)instacron:UFUenghttps://seer.ufu.br/index.php/biosciencejournal/article/view/42351/27067Brazil; ContemporaryCopyright (c) 2019 Thaís Ferreira Bicalho, Ana Paula Oliveira Nogueira, Oswaldo Toshiyuki Hamawaki, Solange Celestino Costa, Ivair José de Morais Júnior, Nathália Salgado Silva, Raphael Lemes Hamawaki, Cristiane Divina Lemes Hamawakihttps://creativecommons.org/licenses/by/4.0info:eu-repo/semantics/openAccessBicalho, Thaís FerreiraNogueira, Ana Paula Oliveira Hamawaki, Oswaldo ToshiyukiCosta, Solange Celestino Morais Júnior, Ivair José de Silva, Nathália Salgado Hamawaki, Raphael Lemes Hamawaki, Cristiane Divina Lemes2022-01-26T03:27:37Zoai:ojs.www.seer.ufu.br:article/42351Revistahttps://seer.ufu.br/index.php/biosciencejournalPUBhttps://seer.ufu.br/index.php/biosciencejournal/oaibiosciencej@ufu.br||1981-31631516-3725opendoar:2022-01-26T03:27:37Bioscience journal (Online) - Universidade Federal de Uberlândia (UFU)false |
dc.title.none.fl_str_mv |
Adaptability and stability of soybean cultivars in four sowing seasons Adaptabilidade e estabilidade de cultivares de soja em quatro épocas de semeadura |
title |
Adaptability and stability of soybean cultivars in four sowing seasons |
spellingShingle |
Adaptability and stability of soybean cultivars in four sowing seasons Bicalho, Thaís Ferreira Glycine max. Interaction cultivars x sowing season. Adaptation and predictability of behavior. Agricultural Sciences |
title_short |
Adaptability and stability of soybean cultivars in four sowing seasons |
title_full |
Adaptability and stability of soybean cultivars in four sowing seasons |
title_fullStr |
Adaptability and stability of soybean cultivars in four sowing seasons |
title_full_unstemmed |
Adaptability and stability of soybean cultivars in four sowing seasons |
title_sort |
Adaptability and stability of soybean cultivars in four sowing seasons |
author |
Bicalho, Thaís Ferreira |
author_facet |
Bicalho, Thaís Ferreira Nogueira, Ana Paula Oliveira Hamawaki, Oswaldo Toshiyuki Costa, Solange Celestino Morais Júnior, Ivair José de Silva, Nathália Salgado Hamawaki, Raphael Lemes Hamawaki, Cristiane Divina Lemes |
author_role |
author |
author2 |
Nogueira, Ana Paula Oliveira Hamawaki, Oswaldo Toshiyuki Costa, Solange Celestino Morais Júnior, Ivair José de Silva, Nathália Salgado Hamawaki, Raphael Lemes Hamawaki, Cristiane Divina Lemes |
author2_role |
author author author author author author author |
dc.contributor.author.fl_str_mv |
Bicalho, Thaís Ferreira Nogueira, Ana Paula Oliveira Hamawaki, Oswaldo Toshiyuki Costa, Solange Celestino Morais Júnior, Ivair José de Silva, Nathália Salgado Hamawaki, Raphael Lemes Hamawaki, Cristiane Divina Lemes |
dc.subject.por.fl_str_mv |
Glycine max. Interaction cultivars x sowing season. Adaptation and predictability of behavior. Agricultural Sciences |
topic |
Glycine max. Interaction cultivars x sowing season. Adaptation and predictability of behavior. Agricultural Sciences |
description |
In recent decades, the expansion of soybean production in Brazil has been observed. This advance was motivated by the search of environments with better cultivation conditions, as well as the development of genotypes with wide adaptation. The diversity of "environments" hinders the process of selection and recommendation of cultivars, since the productive potential of a cultivar is given as a function of the sum of the genotype effect, the environment and the interaction between the latter two (G x E). In the case of this G x E interaction, regional studies are necessary in order to detail the differential behavior of the cultivars. Thus, the objective of this work was to evaluate the genotype interaction by environments, adaptability and phenotypic stability for grain yield, of fifteen soybean cultivars, in four sowing seasons, in order to identify cultivars that combine high productive potential, predictability of behavior and adaptation to the edaphoclimatic conditions of Uberlândia-MG. The trials were conducted at the Experimental Farm Capim Branco, in Uberlândia-MG. Fifteen soybean cultivars were evaluated in four sowing seasons (October 23, 2016, November 19, 2016, December 10, 2016 and January 14, 2017), in relation to grain yield. The experimental design was of randomized complete blocks, with three replications, in each season. Data were submitted to individual and joint analyzes. The G x E interaction was decomposed by the method proposed by Cruz and Castoldi (1991). The differential behavior of the genotypes was detailed by the adaptability and phenotypic stability by the methods of Eberhart and Russell (1966), Lin and Binns (1988) modified by Carneiro (1998), AMMI and Centroid. By the analysis of joint variance, it was observed the existence of the cultivar interaction by sowing times (C x E), for the grain yield trait, at the 5 % probability level by the F test. The C x E was predominantly complex in nature. The cultivar CD 2737 RR presented satisfactory results for the four sowing seasons in Uberlândia-MG, with high grain yield and predictability of behavior, by the evaluated methods. The cultivar NS 6909 IPRO was classified into favorable environments by the methods of Eberhart and Russell (1966) and Lin and Binns (1988) modified by Carneiro (1998). Considering Lin and Binns (1988) modified by Carneiro (1998) and Centroid the cultivar that is also classified for this cultivation condition is UFUS 8301. By AMMI, UFUS 7415, CD 2737 RR and UFUS Milionária are considered stable and adaptable. |
publishDate |
2019 |
dc.date.none.fl_str_mv |
2019-10-09 |
dc.type.driver.fl_str_mv |
info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion |
format |
article |
status_str |
publishedVersion |
dc.identifier.uri.fl_str_mv |
https://seer.ufu.br/index.php/biosciencejournal/article/view/42351 10.14393/BJ-v35n5a2019-42351 |
url |
https://seer.ufu.br/index.php/biosciencejournal/article/view/42351 |
identifier_str_mv |
10.14393/BJ-v35n5a2019-42351 |
dc.language.iso.fl_str_mv |
eng |
language |
eng |
dc.relation.none.fl_str_mv |
https://seer.ufu.br/index.php/biosciencejournal/article/view/42351/27067 |
dc.rights.driver.fl_str_mv |
https://creativecommons.org/licenses/by/4.0 info:eu-repo/semantics/openAccess |
rights_invalid_str_mv |
https://creativecommons.org/licenses/by/4.0 |
eu_rights_str_mv |
openAccess |
dc.format.none.fl_str_mv |
application/pdf |
dc.coverage.none.fl_str_mv |
Brazil; Contemporary |
dc.publisher.none.fl_str_mv |
EDUFU |
publisher.none.fl_str_mv |
EDUFU |
dc.source.none.fl_str_mv |
Bioscience Journal ; Vol. 35 No. 5 (2019): Sept./Oct.; 1450-1462 Bioscience Journal ; v. 35 n. 5 (2019): Sept./Oct.; 1450-1462 1981-3163 reponame:Bioscience journal (Online) instname:Universidade Federal de Uberlândia (UFU) instacron:UFU |
instname_str |
Universidade Federal de Uberlândia (UFU) |
instacron_str |
UFU |
institution |
UFU |
reponame_str |
Bioscience journal (Online) |
collection |
Bioscience journal (Online) |
repository.name.fl_str_mv |
Bioscience journal (Online) - Universidade Federal de Uberlândia (UFU) |
repository.mail.fl_str_mv |
biosciencej@ufu.br|| |
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1797069080372445184 |