Effects of pre- and post-harvest konjac glucomannan phosphate ester composite film coating on the volatile profiles of mangoes during storage

Post-harvest mangoes are prone to spoilage, and volatiles change accordingly. Konjac glucomannan phosphate composite film (KGMP), as an environmentally friendly polysaccharide-based material, has been shown to possess good film-formation, stability, antibacterial activity, and water vapor permeabili...

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Main Authors: Li, Xuehui, Zhang, Chen, Liu, Changrui, Luo, Weiqi, Wang, Ying, Wang, Libin, Abdullah, Norhafizah
Format: Article
Language:English
Published: Elsevier 2024
Online Access:http://psasir.upm.edu.my/id/eprint/115650/
http://psasir.upm.edu.my/id/eprint/115650/1/115650.pdf
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author Li, Xuehui
Zhang, Chen
Liu, Changrui
Luo, Weiqi
Wang, Ying
Wang, Libin
Abdullah, Norhafizah
author_facet Li, Xuehui
Zhang, Chen
Liu, Changrui
Luo, Weiqi
Wang, Ying
Wang, Libin
Abdullah, Norhafizah
author_sort Li, Xuehui
building UPM Institutional Repository
collection Online Access
description Post-harvest mangoes are prone to spoilage, and volatiles change accordingly. Konjac glucomannan phosphate composite film (KGMP), as an environmentally friendly polysaccharide-based material, has been shown to possess good film-formation, stability, antibacterial activity, and water vapor permeability. However, the impact of KGMP on the quality and aroma of mangoes during storage remains unclear. Therefore, KGMP was used to coat mangoes before and after harvest. Results indicated that KGMP delayed weight loss, the decline in firmness, and the deterioration of color difference. It also delayed the accumulation of total soluble solids, increased titratable acidity, limited ethylene evolution, and altered aroma quality. A total of 39, 40, and 31 volatiles were detected in JinHwang, Keitt, and Ivory, respectively. Changes in their contents were correlated with ethylene evolution. Although KGMP altered the formation of over 70% of mango volatiles, it had little effect on the total volatile abundance. Pre-KGMP treatment had a more pronounced inhibitory effect on volatile abundances but the increase of key volatiles like ethyl acetate, propyl propanoate, ethyl hexanoate suggested that KGMP treatment could enhance certain flavor characteristics while potentially extending the shelf life. Volatiles such as α-terpinene, diallyl disulfide, and α-phellandrene played key roles in differentiating mangoes under different conditions.
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spelling upm-1156502025-03-10T02:37:52Z http://psasir.upm.edu.my/id/eprint/115650/ Effects of pre- and post-harvest konjac glucomannan phosphate ester composite film coating on the volatile profiles of mangoes during storage Li, Xuehui Zhang, Chen Liu, Changrui Luo, Weiqi Wang, Ying Wang, Libin Abdullah, Norhafizah Post-harvest mangoes are prone to spoilage, and volatiles change accordingly. Konjac glucomannan phosphate composite film (KGMP), as an environmentally friendly polysaccharide-based material, has been shown to possess good film-formation, stability, antibacterial activity, and water vapor permeability. However, the impact of KGMP on the quality and aroma of mangoes during storage remains unclear. Therefore, KGMP was used to coat mangoes before and after harvest. Results indicated that KGMP delayed weight loss, the decline in firmness, and the deterioration of color difference. It also delayed the accumulation of total soluble solids, increased titratable acidity, limited ethylene evolution, and altered aroma quality. A total of 39, 40, and 31 volatiles were detected in JinHwang, Keitt, and Ivory, respectively. Changes in their contents were correlated with ethylene evolution. Although KGMP altered the formation of over 70% of mango volatiles, it had little effect on the total volatile abundance. Pre-KGMP treatment had a more pronounced inhibitory effect on volatile abundances but the increase of key volatiles like ethyl acetate, propyl propanoate, ethyl hexanoate suggested that KGMP treatment could enhance certain flavor characteristics while potentially extending the shelf life. Volatiles such as α-terpinene, diallyl disulfide, and α-phellandrene played key roles in differentiating mangoes under different conditions. Elsevier 2024-12-15 Article PeerReviewed text en cc_by_nc_nd_4 http://psasir.upm.edu.my/id/eprint/115650/1/115650.pdf Li, Xuehui and Zhang, Chen and Liu, Changrui and Luo, Weiqi and Wang, Ying and Wang, Libin and Abdullah, Norhafizah (2024) Effects of pre- and post-harvest konjac glucomannan phosphate ester composite film coating on the volatile profiles of mangoes during storage. LWT, 214. art. no. 117171. pp. 1-2. ISSN 0023-6438; eISSN: 1096-1127 https://www.sciencedirect.com/science/article/pii/S0023643824014543?via%3Dihub 10.1016/j.lwt.2024.117171
spellingShingle Li, Xuehui
Zhang, Chen
Liu, Changrui
Luo, Weiqi
Wang, Ying
Wang, Libin
Abdullah, Norhafizah
Effects of pre- and post-harvest konjac glucomannan phosphate ester composite film coating on the volatile profiles of mangoes during storage
title Effects of pre- and post-harvest konjac glucomannan phosphate ester composite film coating on the volatile profiles of mangoes during storage
title_full Effects of pre- and post-harvest konjac glucomannan phosphate ester composite film coating on the volatile profiles of mangoes during storage
title_fullStr Effects of pre- and post-harvest konjac glucomannan phosphate ester composite film coating on the volatile profiles of mangoes during storage
title_full_unstemmed Effects of pre- and post-harvest konjac glucomannan phosphate ester composite film coating on the volatile profiles of mangoes during storage
title_short Effects of pre- and post-harvest konjac glucomannan phosphate ester composite film coating on the volatile profiles of mangoes during storage
title_sort effects of pre- and post-harvest konjac glucomannan phosphate ester composite film coating on the volatile profiles of mangoes during storage
url http://psasir.upm.edu.my/id/eprint/115650/
http://psasir.upm.edu.my/id/eprint/115650/
http://psasir.upm.edu.my/id/eprint/115650/
http://psasir.upm.edu.my/id/eprint/115650/1/115650.pdf