Extending vase life of carnation flowers by postharvest nano silver, humic acid and Aloe Vera gel treatments

Detalhes bibliográficos
Autor(a) principal: El-Attar,Asmaa Bader El-din Sayed
Data de Publicação: 2022
Outros Autores: Sakr,Weaam Ramadan Arafa
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Ornamental Horticulture (Campinas)
Texto Completo: http://old.scielo.br/scielo.php?script=sci_arttext&pid=S2447-536X2022000100067
Resumo: Abstract Standard Carnation flowers (Dianthus caryophyllus cv. Dover) were harvested at the paint brush stage in the early morning, pre-cooled at 4° C for 6-h then moved under dry conditions to the laboratory. Flowers were weighted and treated for 24-h with silver nanoparticles (AgNPs) at 0, 5 or 10 ppm in plastic buckets. After pulsing treatments, cut flowers were transferred to 500 mL glass jars containing 300 mL of preservation solution treatments including, individually, humic acid at 200, 400 or 600 ppm and Aloe vera gel at 2.5%, 5.0% or 7.5% (w/v) till the end of the experiment (when flower color began to fade, petals began to roll). Distilled water was used for the control and to prepare the tested solutions. 2% sucrose was added to all treatments including the control. Addition of all preservatives to vase solutions significantly increased all the studied characteristics of cut flowers compared to control (distilled water, least values). Nanosilver treatments have the potential to be used as preservative solutions for improving postharvest vase life and quality of carnation flowers. An increment in vase life, relative fresh weight, vase solution uptake, flower diameter as well as total chlorophylls in leaves, total carbohydrates and total phenols in leaves and petals was observed, in addition to a decrease in bacterial counts in vase solution. Best results were obtained using 5 ppm AgNPs + 5.0% Aloe vera gel followed by 5 ppm AgNPs +7.5% Aloe vera gel solutions. Aloe vera gel, especially 5.0% level, showed better results than humic acid when used alone or combined with AgNPs. Nanosilver at 5 ppm recorded better results than 10 ppm when used as a single treatment.
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spelling Extending vase life of carnation flowers by postharvest nano silver, humic acid and Aloe Vera gel treatmentsDianthus caryophyllus cv. Doversilver nanoparticlesdurabilityfloriculturesucroseAbstract Standard Carnation flowers (Dianthus caryophyllus cv. Dover) were harvested at the paint brush stage in the early morning, pre-cooled at 4° C for 6-h then moved under dry conditions to the laboratory. Flowers were weighted and treated for 24-h with silver nanoparticles (AgNPs) at 0, 5 or 10 ppm in plastic buckets. After pulsing treatments, cut flowers were transferred to 500 mL glass jars containing 300 mL of preservation solution treatments including, individually, humic acid at 200, 400 or 600 ppm and Aloe vera gel at 2.5%, 5.0% or 7.5% (w/v) till the end of the experiment (when flower color began to fade, petals began to roll). Distilled water was used for the control and to prepare the tested solutions. 2% sucrose was added to all treatments including the control. Addition of all preservatives to vase solutions significantly increased all the studied characteristics of cut flowers compared to control (distilled water, least values). Nanosilver treatments have the potential to be used as preservative solutions for improving postharvest vase life and quality of carnation flowers. An increment in vase life, relative fresh weight, vase solution uptake, flower diameter as well as total chlorophylls in leaves, total carbohydrates and total phenols in leaves and petals was observed, in addition to a decrease in bacterial counts in vase solution. Best results were obtained using 5 ppm AgNPs + 5.0% Aloe vera gel followed by 5 ppm AgNPs +7.5% Aloe vera gel solutions. Aloe vera gel, especially 5.0% level, showed better results than humic acid when used alone or combined with AgNPs. Nanosilver at 5 ppm recorded better results than 10 ppm when used as a single treatment.Sociedade Brasileira de Floricultura e Plantas Ornamentais2022-01-01info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersiontext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S2447-536X2022000100067Ornamental Horticulture v.28 n.1 2022reponame:Ornamental Horticulture (Campinas)instname:Sociedade Brasileira de Floricultura e Plantas Ornamentais (SBFPO)instacron:SBFPO10.1590/2447-536x.v28i1.2407info:eu-repo/semantics/openAccessEl-Attar,Asmaa Bader El-din SayedSakr,Weaam Ramadan Arafaeng2022-01-11T00:00:00Zoai:scielo:S2447-536X2022000100067Revistahttp://ornamentalhorticulture.emnuvens.com.br/rbho/indexhttps://old.scielo.br/oai/scielo-oai.php||revista.ornamentalhorticulture@gmail.com2447-536X2447-536Xopendoar:2022-01-11T00:00Ornamental Horticulture (Campinas) - Sociedade Brasileira de Floricultura e Plantas Ornamentais (SBFPO)false
dc.title.none.fl_str_mv Extending vase life of carnation flowers by postharvest nano silver, humic acid and Aloe Vera gel treatments
title Extending vase life of carnation flowers by postharvest nano silver, humic acid and Aloe Vera gel treatments
spellingShingle Extending vase life of carnation flowers by postharvest nano silver, humic acid and Aloe Vera gel treatments
El-Attar,Asmaa Bader El-din Sayed
Dianthus caryophyllus cv. Dover
silver nanoparticles
durability
floriculture
sucrose
title_short Extending vase life of carnation flowers by postharvest nano silver, humic acid and Aloe Vera gel treatments
title_full Extending vase life of carnation flowers by postharvest nano silver, humic acid and Aloe Vera gel treatments
title_fullStr Extending vase life of carnation flowers by postharvest nano silver, humic acid and Aloe Vera gel treatments
title_full_unstemmed Extending vase life of carnation flowers by postharvest nano silver, humic acid and Aloe Vera gel treatments
title_sort Extending vase life of carnation flowers by postharvest nano silver, humic acid and Aloe Vera gel treatments
author El-Attar,Asmaa Bader El-din Sayed
author_facet El-Attar,Asmaa Bader El-din Sayed
Sakr,Weaam Ramadan Arafa
author_role author
author2 Sakr,Weaam Ramadan Arafa
author2_role author
dc.contributor.author.fl_str_mv El-Attar,Asmaa Bader El-din Sayed
Sakr,Weaam Ramadan Arafa
dc.subject.por.fl_str_mv Dianthus caryophyllus cv. Dover
silver nanoparticles
durability
floriculture
sucrose
topic Dianthus caryophyllus cv. Dover
silver nanoparticles
durability
floriculture
sucrose
description Abstract Standard Carnation flowers (Dianthus caryophyllus cv. Dover) were harvested at the paint brush stage in the early morning, pre-cooled at 4° C for 6-h then moved under dry conditions to the laboratory. Flowers were weighted and treated for 24-h with silver nanoparticles (AgNPs) at 0, 5 or 10 ppm in plastic buckets. After pulsing treatments, cut flowers were transferred to 500 mL glass jars containing 300 mL of preservation solution treatments including, individually, humic acid at 200, 400 or 600 ppm and Aloe vera gel at 2.5%, 5.0% or 7.5% (w/v) till the end of the experiment (when flower color began to fade, petals began to roll). Distilled water was used for the control and to prepare the tested solutions. 2% sucrose was added to all treatments including the control. Addition of all preservatives to vase solutions significantly increased all the studied characteristics of cut flowers compared to control (distilled water, least values). Nanosilver treatments have the potential to be used as preservative solutions for improving postharvest vase life and quality of carnation flowers. An increment in vase life, relative fresh weight, vase solution uptake, flower diameter as well as total chlorophylls in leaves, total carbohydrates and total phenols in leaves and petals was observed, in addition to a decrease in bacterial counts in vase solution. Best results were obtained using 5 ppm AgNPs + 5.0% Aloe vera gel followed by 5 ppm AgNPs +7.5% Aloe vera gel solutions. Aloe vera gel, especially 5.0% level, showed better results than humic acid when used alone or combined with AgNPs. Nanosilver at 5 ppm recorded better results than 10 ppm when used as a single treatment.
publishDate 2022
dc.date.none.fl_str_mv 2022-01-01
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
format article
status_str publishedVersion
dc.identifier.uri.fl_str_mv http://old.scielo.br/scielo.php?script=sci_arttext&pid=S2447-536X2022000100067
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dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv 10.1590/2447-536x.v28i1.2407
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv text/html
dc.publisher.none.fl_str_mv Sociedade Brasileira de Floricultura e Plantas Ornamentais
publisher.none.fl_str_mv Sociedade Brasileira de Floricultura e Plantas Ornamentais
dc.source.none.fl_str_mv Ornamental Horticulture v.28 n.1 2022
reponame:Ornamental Horticulture (Campinas)
instname:Sociedade Brasileira de Floricultura e Plantas Ornamentais (SBFPO)
instacron:SBFPO
instname_str Sociedade Brasileira de Floricultura e Plantas Ornamentais (SBFPO)
instacron_str SBFPO
institution SBFPO
reponame_str Ornamental Horticulture (Campinas)
collection Ornamental Horticulture (Campinas)
repository.name.fl_str_mv Ornamental Horticulture (Campinas) - Sociedade Brasileira de Floricultura e Plantas Ornamentais (SBFPO)
repository.mail.fl_str_mv ||revista.ornamentalhorticulture@gmail.com
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