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Beeswax coating, garlic, and willow extracts as preservatives for banana Grand Naine | Informador Tecnico
Beeswax coating, garlic, and willow extracts as preservatives for banana Grand Naine
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Keywords

firmness
maturation
chewiness
weight loss
postharvest firmeza
maduración
masticabilidad
pérdida de peso
postcosecha Firmeza
Amadurecimento
Mastigabilidade
Perda de peso
pós-colheita
Doçura

How to Cite

Cruz-Ortiz, L., Escobar-Ventura, K., Flores-Méndez, M., Urbina-Reyes, M. E., & Vázquez-Ovando, A. (2021). Beeswax coating, garlic, and willow extracts as preservatives for banana Grand Naine. Informador Tecnico, 85(2), 172–183. https://doi.org/10.23850/22565035.3685

Abstract

The main objective was to evaluate the effect of beeswax as a coating, and the application of garlic and willow extracts in the conservation of the Cavendish banana clone Gran Naine. Two hundred healthy and mature green fruits (40 per treatment) were used to undergo 5 treatments: T1 = control, T2 = beeswax, T3 = aqueous extract of willow 1:10 w/v, T4 = aqueous extract of garlic 1:10 w/v, T5 = aqueous extract of garlic combined with beeswax. The fruits were stored at room temperature. Weight loss (%), fructose (ºBrix), total soluble solids (SST, ºBrix), sucrose (ºBrix), peel color (G), firmness (N), pH and titratable acidity (TA, %) were measured every 48 h. In addition, a sensory evaluation was performed when the fruits reached full maturity. All the treated fruits (T2-T5) maintained the green color during the study period. The use of garlic extracts (T3) and beeswax (T2) alone and in combination (T5) helped to maintain the shelf life of the fruits for longer. The use of aqueous extracts of willow and garlic resulted in sweeter fruits, with a greater smell of banana and honey, and with greater chewiness. The use of beeswax to coat fruits, as well as aqueous extracts of garlic and willow, individually and in combination, allows the physical, chemical, and sensory characteristics of the banana Gran Naine to be maintained for a longer time.

https://doi.org/10.23850/22565035.3685
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References

Ashwini, M.; Nikhita, Desai (2018). Biopreservative effect of plant extracts on the shelf life of mango cv Raspuri. Journal of Pharmacognosy and Phytochemistry, 7(6), 2245-2248.

Ashwini, M.; Nikhita, Desai (2016). Biopreservation of guava by plant extracts. Journal of Pure and Applied Microbiology, 10(4), 2975-2980. http://doi.org/10.22207/JPAM.10.4.66

Báez-Sañudo, Reginaldo; Mercado-Ruiz, Jorge; García-Robles, Jesús; Valle-Sotelo, Edith; Falcón-Verdugo, Luis; Martínez-Gárate, Alonso; Herrera-Cebreros, Jesús; Anaya-Dyck, José (2018). Ácido acetilsalicílico y cubiertas comestibles para la conservación de frutos: Tomate como modelo. Revista Iberoamericana de Tecnología Postcosecha, 19(1), 74-87.

Banjoko, I. O.; Olatidoye, Olawale; Oyelola, A. O.; Ajibosin, O. A.; Adebayo, Sijuwade (2019). Influence of aqueous extract of ginger and garlic on shelf life studies of plantain fingers (Musa paradisiacal) at ambient and refrigerated conditions. EC Nutrition, 14(3), 301-308.

Bender-Bojalil, Denise; Bárcenas-Pozos, María. (2013). El ajo y sus aplicaciones de alimentos. Temas Selectos de Ingeniería de Alimentos, 7(1), 25-36.

Botrel, Neide; Freire, Murilo; Vasconcelos, Rafaela; Barbosa, Henriqueta (2002). Inibição do amadurecimento da banana-‘prata-anã’ com a aplicação do 1-metilciclopropeno. Revista Brasileira de Fruticultura, 24(1), 53-56. https://doi.org/10.1590/S0100-29452002000100012

Cano, Pilar; Ancos, Begoña; Matallana, María; Cámara, Montaña; Reglero, Guillermo; Tabera Javier (1997). Differences among Spanish and Latin-American banana cultivars: morphological, chemical and sensory characteristics. Food Chemistry, 59(3), 411-419. https://doi.org/10.1016/S0308-8146(96)00285-3

Castro, B.; Jerz, G.; Winterhalter, P.; Restrepo, R. (2007). Degradación de la clorofila en la corteza del baby banano (Musa acuminata) durante diferentes estados de maduración. En Memorias VIII Congreso Nacional del Color (pp. 19-21). Cartagena: Red Alfa Agrotech.

Clendennen, Stephanie; May, Cregory (1997). Differential gene expression in ripening banana fruit. Plant Physiology, 115(2), 463-469. https://doi.org/10.1104/pp.115.2.463

Cuéllar, Liliana; Sehtman, Ariel; Donatti, Lucila.; Allevato, Miguel (2008). Ácido salicílico. Acta Terapéutica Dermatológica, 31, 108-112.

Di Rienzo, J. A.; Casanoves, F.; Balzarini, M. G.; Gonzalez, L.; Tablada, M.; Robledo, C. W. (2011). Infostat versión 2016. Grupo InfoStat, FCA. Córdoba: Universidad Nacional de Córdoba, Argentina.

Eshetu, Abonesh; Ibrahim, Ali; Forsido, Sirawdink; Kuyu, Chala (2019). Effect of beeswax and chitosan treatments on quality and shelf life of selected mango (Mangifera indica L.) cultivars. Heliyon, 5(1), e01116. https://doi.org/10.1016/j.heliyon.2018.e01116

García, Juan; Balaguera-López, Helber; Herrera, Aníbal (2012). Conservación del fruto de banano bocadillo (Musa AA Simmonds) con la aplicación de permanganato de potasio (KMnO4). Revista Colombiana de Ciencias Hortícolas, 6(2), 161-171. https://doi.org/10.17584/rcch.2012v6i2.1974

Ishak, Ruzaina; Norizzah, A.; Halimahton, M.; Cheow, C.; Sikin, Adi; Noorakmar, A.; Mohd, Adi (2013). Utilisation of palm-based and beeswax coating on the postharvest-life of guava (Psidium guajava L.) during ambient and chilled storage. International Food Research Journal, 20(1), 265-274.

Imsabai, Wachiraya; Ketsa, Saichol; Van Doorn, Wouter (2006). Physiological and biochemical changes during banana ripening and finger drop. Postharvest Biology and Technology, 39(2), 211-216. https://doi.org/10.1016/j.postharvbio.2005.10.001

Juárez-Segovia, K.; Díaz-Darcía, E.; Méndez-López, M.; Pina-Canseco, M.; Pérez-Santiago, A.; Sánchez-Medina, M. (2019). Efecto de extractos crudos de ajo (Allium sativum) sobre el desarrollo in vitro de Aspergillus parasiticus y Aspergillus niger. Polibotánica, 47(8), 99-111. https://doi.org/10.18387/POLIBOTANICA.47.8

Kader, Adel (Ed.). (2002). Postharvest technology of horticultural crops (3ra ed). Berkeley: Universidad de California.

Mahmoud, Gehan; Ahmed, Samar; Abbas, Mohamed; Soliman, Amira (2018). Effect of garlic and onion extracts as a preharvest applications on the post-harvest quality and oxidative enzyme activity of pearfruit during cold storage. Journal of Biological Chemistry & Environmental Science, 13(4), 329-356.

Martínez-González, Mónica; Balois-Morales, Rosendo; Alia-Tejacal, Irán; Cortes-Cruz, Moises; Palomino-Hermosillo, Yolotzin; López-Gúzman, Graciela (2017). Poscosecha de frutos: maduración y cambios bioquímicos. Revista Mexicana de Ciencias Agrícolas, 19, 4075- 4087. https://doi.org/10.29312/remexca.v0i19.674

Passos, Flavia; Mendes, Fabricia; Cunha, Mariana; Pigozzi, Mariana; Carvalho, André (2016). Propolis extract in postharvest conservation banana 'prata'. Revista Brasileira de Fruticultura, 38(2), e-931. https://doi.org/10.1590/0100-29452016931

Pérez, Andrés; Aristizábal, Iván; Restrepo, Jorge (2016). Conservación de mango tommy atkins mínimamente procesado mediante la aplicación de un recubrimiento de aloe vera (Aloe barbandensis Miller). Revista de la Facultad de Ciencias Farmacéuticas y Alimentarias, 23(1), 65-77. http://doi.org/10.17533/udea.vitae.v23n1a07

Ramírez, Maribel; García, Eva; Lindorf, Helga (2012). Análisis de patrones morfológicos y anatómicos en la embriogénesis somática del banano Williams (AAA). Revista Colombiana de Biotecnología, 14(1), 41-52.

Sanwal, Girdhay; Payasi, Anarag (2007). Garlic extract plus sodium metabisulphite enhances shelf life of ripe banana fruit. International Journal of Food Science and Technology, 42(3), 303-311. https://doi.org/10.1111/j.1365-2621.2006.01222.x

Sapper, Mayra; Chiralt, Amparo (2018). Starch-based coatings for preservation of fruits and vegetables. Coatings, 8(152), 2-20. https://doi.org/10.3390/coatings8050152

Shahid, Muhammad; Abbasi, Nadeem (2011). Effect of bee wax coatings on physiological changes in fruits of sweet orange CV. "blood red". Sarhad Journal of Agriculture, 27(3), 385-394.

Silva, Cíntia; Lima, Luciana; Santos, Haydee; Camili, Elisangela; Vieira, Cássia; Martin, Cristhiane; Vieites, Rogério (2006). Amadurecimento da banana-prata climatizada em diferentes dias após a colheita. Ciência e Agrotecnologia, 30(1), 103-111. https://doi.org/10.1590/S1413-70542006000100015

Suárez, Silvia; Castro, Américo; Borja, Neptalí (2014). Actividad antioxidante in vitro de un extracto acuoso de Allium Sativum variedad Huaralino. Revista de la Sociedad Química del Perú, 30(4), 308-316.

Suseno, Natali; Savitri, Emma; Sapei, Lnny; Padmawijaya, K. (2014). Improving shelf-life of Cavendish banana using chitosan edible coating. Procedia Chemistry, 9, 113-120. https://doi.org/10.1016/j.proche.2014.05.014

Tosne, Zulma; Mosquera, Silvio; Villada, Héctor. (2014). Efecto de recubrimiento de almidón de yuca y cera de abejas sobre el chontaduro. Biotecnología en el Sector Agropecuario y Agroindustrial, 12(2), 30-39.

Ulloa, José; Aguilar-Pusian, J.; Rosas-Ulloa, Petra; Galavíz-Ortíz, K.; Ulloa-Rangel, B. (2009). Effect of soaking conditions with citric acid, ascorbic acid and potassium sorbate on the physicochemical and microbiological quality of minimally processed jackfruit. CYTA-Journal of Food, 8(3), 193-199. https://doi.org/10.1080/19476330903348791

Villarroel, José; Zambrano, Margott; Abasolo-Pacheco, Fernando; Pico, Luis; Pico, Boíivar; Moreira, Mercedes (2016). Uso de ceras naturales como medio de conservación de banano (Musa acuminata). Biotecnia, 19(1), 3-9. https://doi.org/10.18633/biotecnia.v19i1.362

Vwioko, Dennis; Osemwegie, Omorefosa; Akawe, Juliet (2020). The effect of garlic and ginger phytogenics on the shelf life and microbial contents of homemade soursop (Annona muricata L) fruit juice. Biokemistri, 25(2), 31-38.

Yang, Xiaotang; Song, Jung; Fillmore, Shery; Pang, Xuequn; Zhang, Zhaoqi (2011). Effect of high temperature on color, chlorophyll fluorescence and volatile biosynthesis in green-ripe banana fruit. Postharvest Biology and Technology, 62(3), 246-257. https://doi.org/10.1016/j.postharvbio.2011.06.011

Zambrano, Judit; Valera, Anne; Maffei, Miguel; Materano, Willian; Quintero, Ibis; Graterol, Karen (2017). Efecto de un recubrimiento comestible formulado con mucílago del cactus (Opuntia elatior Mill.) sobre la calidad de frutos de piña mínimamente procesados. Bioagro, 29(2), 129-136.

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