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143. | | FIALHO, G. S.; SILVA, D. P. da.; REIS, E. F.; FONSECA, A. F. A. da.; FERRÃO, M. A. G. Comportamento de plantas de café arábica submetidas a déficit hídrico durante o desenvolvimento inicial. IDESIA, Chile, v. 28, n 3, p 35-39, 2010.Biblioteca(s): Biblioteca Rui Tendinha. |
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144. | | MATIELLO, J. B.; ALMEIDA, S. R.; FERREIRA, I. B.; BARTELEGA, L.; SILVA, M. B. da; CARVALHO, C. H. S.; KROHLING, C. A.; BOMFIM, G. D.; ANTENOR, B. M. Comportamento de progenies de cafeeiro com resistência à ferrugem, selecionadas de ensaios em vários campos experimentais do Procafé. In: CONGRESSO BRASILEIRO DE PESQUISAS CAFEEIRAS, 44., 2018, Franca, SP. Nosso café, melhorado desde o pé: anais... Brasília, DF: Embrapa Café, 2018.Biblioteca(s): Biblioteca Rui Tendinha. |
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145. | | MATIELLO, J. B.; ALMEIDA, S. R.; FERREIRA, I. B.; SILVA, M. B. da.; CARVALHO, C. H. S.; KROHLING, C. A.; BOMFIM, G. D.; ANTENOR, B. M. Comportamento de progenies de cafeeiros com resistência à ferrugem, selecionadas de ensaios em vários campos experimentais do PROCAFÉ. In: CONGRESSO BRASILEIRO DE PESQUISAS CAFEEIRAS, 43., 2017, Poços de Caldas. Novas tecnologias para um bom café produzir. Brasília, DF: Embrapa Café, 2017.Biblioteca(s): Biblioteca Rui Tendinha. |
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146. | | SILVA, J. G. F. da.; SALES, E. F.; BRAGANÇA, S. M.; COSTA, L. C.; MANTOVANI, E. C.; FERRÃO, R. G. Comportamento do café conilon irrigado no Estado Espírito Santo. In: SIMPÓSIO INTERNO DE PESQUISA, DESENVOLVIMENTO E INOVAÇÃO, 1., 2004, Vitória. Resumo das ações de pesquisa, desenvolvimento e inovações tecnológicas. Vitória, ES : Incaper, p. 80-81, 2005. (Incaper. Documentos, 140).Biblioteca(s): Biblioteca Rui Tendinha. |
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147. | | BAITELLE, D. C.; MIRANDA, G. B.; VERDIN FILHO, A. C.; FREITAS, S. J.; VIEIRA, K. M.; SILVA, W. S. Compostos fenólicos no café Arábica em função da poda programa de ciclo. In: CONGRESSO BRASILEIRO DE PESQUISAS CAFEEIRAS, 42., 201, Serra Negra, SP. Produzir mais café, com economia, só com boa tecnologia: resumos. Minas Gerais : Fundação Procafé, 2016Biblioteca(s): Biblioteca Rui Tendinha. |
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149. | | VERDIN FILHO, A. C.; VOLPI, P. S.; FERRÃO, M. A. G.; FONSECA, A. F. A. da.; FERRÃO, R. G.; TRISTÃO, F. A.; COMÉRIO, M.; VIÇOSI, D. B. Condução inicial de plantas com diferentes densidades de hastes em cafeeiro arábica para regiões montanhosas. In: CONGRESSO BRASILEIRO DE PESQUISAS CAFEEIRAS, 42., 2016, Serra Negra, SP. Produzir mais café, com economia, só com boa tecnologia. Trabalhos apresentados... Serra Negra: Fundação Procafé, 2016.Biblioteca(s): Biblioteca Rui Tendinha. |
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150. | | FERRÃO, R. G.; FONSECA, A. F. A. da.; FERRÃO, M. A. G.; DE MUNER, L. H. (Ed.). Conilon coffee. 3rd edition updated and expanded Vitória, ES : Incaper, 2019. 973p. 252.717.528 bytes. ePUB il. color
System required: Adobe Digital Editions
Acess mode: Wold Wide Web Tradução de: Marcelle Gualda Pasolini.
Esta publicação foi concebida em formato ePUB. Para sua leitura recomendamos o uso do aplicativo Adobe Digital Editions.Biblioteca(s): Biblioteca Rui Tendinha. |
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152. | | FERRÃO, R. G.; FERRÃO, R. G.; FERRÃO, M. A. G.; VOLPI, P. S.; FONSECA, A. F. A. da.; VERDIN FILHO, A. C.; SENRA, J. F. de B.; COMÉRIO, M.; FERRÃO, L. M. V. Conquista, cultivar de café conilon propagada por sementes para o Estado do Espírito Santo. In: CONGRESSO CAPIXABA DE PESQUISA AGROPECUÁRIA, 1., Vitória, ES. Anais 2021 : congresso capixaba de pesquisa agropecuária [recurso eletrônico]. Vitória, ES: Incaper, 2021. color. PDF ; 25,4 MB. E-book, no formato PDF. (Incaper, Documentos, 289). Pedro Luís Pereira Teixeira de Carvalho, Carlos Henrique Rodrigues de Oliveira, José Aires Ventura, Marcos Vinicius Winckler Caldeira e Romário Gava Ferrão, editores. p. 127Biblioteca(s): Biblioteca Rui Tendinha. |
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153. | | DADALTO, G. G.; LANI, J. A.; PREZOTTI, L. C. Conservação do solo. In: COSTA, E. B. da; SILVA, A. E. S. da; ANDRADE NETO, A. P. M. de; DAHER, F. de A. (Coord.). Manual técnico para a cultura do café no estado do Espírito Santo. Vitória, ES : Secretaria de Estado da Agricultura, p. 107-110, 1995.Biblioteca(s): Biblioteca Rui Tendinha. |
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160. | | Consorcio de cafe com caja [gravaçao de video]. Boa Esperança, ES: Incaper, 2017. Vídeo MP4 (9 min. e 24 seg.) : son., color. Equipe técnica: Eduardo Sales, Pesquisador do Incaper de Linhares, Doriedson Thomazini, agricultur de Boa Esperança - ES. Produção: Luciana Silvestre Girelli, jornalista do Incaper, imagem e edição: Caio Fabricius, bolsista da...Biblioteca(s): Biblioteca Rui Tendinha. |
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Registro Completo |
Biblioteca(s): |
Biblioteca Rui Tendinha. |
Data corrente: |
24/08/2022 |
Data da última atualização: |
05/09/2022 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Autoria: |
SIMMER, M. M. B.; SILVA, M. de C. S. da; PEREIRA, L. L.; MOREIRA, T. R.; GUARÇONI, R. G.; VELOSO, T. G. R.; SILVA, I. M. R. da; ENTRINGER, T. L.; KASUYA, M. C. M.; LUZ, J. M. R. da; MORELI, A. P.; OLIVEIRA, E. C. da S. |
Afiliação: |
Marinalva Maria Bratz Simmer; Marliane de Cássia Soares da Silva; Lucas Louzada Pereira; Taís Rizzo Moreira; Rogerio Carvalho Guarçoni, Incaper; Tomás Gomes Reis Veloso; Isabelli Moreira Réboli da Silva; Thaynara Lorenzoni Entringer; Maria Catarina Megumi Kasuya; José Maria Rodrigues da Luz; Aldemar Polonini Moreli, Ifes Venda Nova do Imigrante; Emanuele Catarina da Silva Oliveira. |
Título: |
Edaphoclimatic conditions and the soil and fruit microbiota infuence on the chemical and sensory quality of the cofee beverage. |
Ano de publicação: |
2022 |
Fonte/Imprenta: |
Eur Food Res Technol, p. 1-13, 2022. |
DOI: |
10.1007/s00217-022-04102-y |
Idioma: |
Inglês |
Conteúdo: |
Ripening cycles of the coffee are important for planning the harvest and post-harvest processing of the fruit and influence the sensory quality of the coffee beverage. In the Coffea arabica, the number of these annual cycles depends on the edaphoclimatic conditions, soil microbiota, altitude, and genotype. In this study, we present in an unprecedented way how the microbial communities (bacteria and fungi) of the soil and fruits of the coffee tree and the quality of chemical and sensory of coffee fruits can change depending on the harvest season. We also evaluated whether there is a relationship between changes in microbial communities (soil and fruits) and chemical and sensory panels of the coffee in two seasons. Cherry coffee fruits sampling and soil were carried out in September and November which have different edaphoclimatic conditions. Profiles of the microbial community and chemical and sensory panels of the samples were performed using the DGGE technique, Mid-infrared spectroscopy, and Specialty Coffee Association protocols. Microbial communities (soils and fruits) profile was different between distinct sampling periods. Composition of the coffee varies with the harvest since the coffees harvested in September have higher concentrations of caffeine and chlorogenic acids and lower concentrations of proteins and lipids compared to the samples collected later. A correlation between infrared spectrum and microbial community was observed in the second harvest period which had a final sensory score higher than another harvest. These results show that edaphoclimatic factors and microbial communities can be associated with the final quality of the beverage. MenosRipening cycles of the coffee are important for planning the harvest and post-harvest processing of the fruit and influence the sensory quality of the coffee beverage. In the Coffea arabica, the number of these annual cycles depends on the edaphoclimatic conditions, soil microbiota, altitude, and genotype. In this study, we present in an unprecedented way how the microbial communities (bacteria and fungi) of the soil and fruits of the coffee tree and the quality of chemical and sensory of coffee fruits can change depending on the harvest season. We also evaluated whether there is a relationship between changes in microbial communities (soil and fruits) and chemical and sensory panels of the coffee in two seasons. Cherry coffee fruits sampling and soil were carried out in September and November which have different edaphoclimatic conditions. Profiles of the microbial community and chemical and sensory panels of the samples were performed using the DGGE technique, Mid-infrared spectroscopy, and Specialty Coffee Association protocols. Microbial communities (soils and fruits) profile was different between distinct sampling periods. Composition of the coffee varies with the harvest since the coffees harvested in September have higher concentrations of caffeine and chlorogenic acids and lower concentrations of proteins and lipids compared to the samples collected later. A correlation between infrared spectrum and microbial community was observed in the second harvest period which ... Mostrar Tudo |
Palavras-Chave: |
Cofee beverage; Cofee quality; Harvest; Microbial diversity. |
Thesagro: |
Café; Cafeicultura; Qualidade. |
Thesaurus NAL: |
Flavor. |
Categoria do assunto: |
-- |
Marc: |
LEADER 02734naa a2200361 a 4500 001 1024229 005 2022-09-05 008 2022 bl uuuu u00u1 u #d 024 7 $a10.1007/s00217-022-04102-y$2DOI 100 1 $aSIMMER, M. M. B. 245 $aEdaphoclimatic conditions and the soil and fruit microbiota infuence on the chemical and sensory quality of the cofee beverage.$h[electronic resource] 260 $c2022 520 $aRipening cycles of the coffee are important for planning the harvest and post-harvest processing of the fruit and influence the sensory quality of the coffee beverage. In the Coffea arabica, the number of these annual cycles depends on the edaphoclimatic conditions, soil microbiota, altitude, and genotype. In this study, we present in an unprecedented way how the microbial communities (bacteria and fungi) of the soil and fruits of the coffee tree and the quality of chemical and sensory of coffee fruits can change depending on the harvest season. We also evaluated whether there is a relationship between changes in microbial communities (soil and fruits) and chemical and sensory panels of the coffee in two seasons. Cherry coffee fruits sampling and soil were carried out in September and November which have different edaphoclimatic conditions. Profiles of the microbial community and chemical and sensory panels of the samples were performed using the DGGE technique, Mid-infrared spectroscopy, and Specialty Coffee Association protocols. Microbial communities (soils and fruits) profile was different between distinct sampling periods. Composition of the coffee varies with the harvest since the coffees harvested in September have higher concentrations of caffeine and chlorogenic acids and lower concentrations of proteins and lipids compared to the samples collected later. A correlation between infrared spectrum and microbial community was observed in the second harvest period which had a final sensory score higher than another harvest. These results show that edaphoclimatic factors and microbial communities can be associated with the final quality of the beverage. 650 $aFlavor 650 $aCafé 650 $aCafeicultura 650 $aQualidade 653 $aCofee beverage 653 $aCofee quality 653 $aHarvest 653 $aMicrobial diversity 700 1 $aSILVA, M. de C. S. da 700 1 $aPEREIRA, L. L. 700 1 $aMOREIRA, T. R. 700 1 $aGUARÇONI, R. G. 700 1 $aVELOSO, T. G. R. 700 1 $aSILVA, I. M. R. da 700 1 $aENTRINGER, T. L. 700 1 $aKASUYA, M. C. M. 700 1 $aLUZ, J. M. R. da 700 1 $aMORELI, A. P. 700 1 $aOLIVEIRA, E. C. da S. 773 $tEur Food Res Technol, p. 1-13, 2022.
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