Control of rotting and browning of Longan fruit cv. Biew Kiew after harvested by sulphur dioxide treatment under various storage temperatures
The experiment of Longan fruit cv. Biew Kiew, untreated (control) and treated with SO2 treatment were stored under 2±2 and 7±2°C for 0, 2, 4, 6 and 8 weeks were studied. The treatment of fresh longan fruit with SO2 fumigation combined with the suitable storage condition improved the overall longan f...
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th-cmuir.6653943832-487292018-08-16T01:56:49Z Control of rotting and browning of Longan fruit cv. Biew Kiew after harvested by sulphur dioxide treatment under various storage temperatures W. Chitbanchong V. Sardsud K. Whangchai R. Koslanund P. Thobunluepop Agricultural and Biological Sciences The experiment of Longan fruit cv. Biew Kiew, untreated (control) and treated with SO2 treatment were stored under 2±2 and 7±2°C for 0, 2, 4, 6 and 8 weeks were studied. The treatment of fresh longan fruit with SO2 fumigation combined with the suitable storage condition improved the overall longan fruit quality, especially on inner and outer peel tissue and aril color than no SO2 treatment. Treatment stabilizes peel color with no subsequent loss of color during storage (fruit color were bright-yellowish color). When the fruit showed during SO2 treatment, increasing of storage duration and temperatures, the dark color of inner and outer peel of longan fruit was appeared, this was correlated with the increasing of PPO activity. The activity of PPO enzyme in control fruit (no SO2 treatment) gradually lower than SO2 treatments. Fruit exposed to cool storage temperature (2°C) exhibited a lower PPO enzymatic activity compared to those kept in high storage temperature (7°C). Moreover, PPO enzymatic activity significantly increased over the storage durations The additional SO2 treatment no subsequent loss of weight of longan fruit during storage. However, the sulphite residues could detect immediately after SO2 treatment in all part of longan fruit, especially on aril tissue. The SEM evaluation found that the surface cracking was also impair the physiological function of the cuticle and increasing water permeability, which may cause water soaking at the inner side of the peel. The injured cell would accelerate the oxidation of phenolic substances and the oxidative products resulted in dark color of inner and outer peel. © 2009 Asian Network for Scientific Information. 2018-08-16T01:56:49Z 2018-08-16T01:56:49Z 2009-12-24 Journal 18125735 10288880 2-s2.0-72249119755 10.3923/pjbs.2009.1438.1447 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=72249119755&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/48729 |
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Agricultural and Biological Sciences W. Chitbanchong V. Sardsud K. Whangchai R. Koslanund P. Thobunluepop Control of rotting and browning of Longan fruit cv. Biew Kiew after harvested by sulphur dioxide treatment under various storage temperatures |
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The experiment of Longan fruit cv. Biew Kiew, untreated (control) and treated with SO2 treatment were stored under 2±2 and 7±2°C for 0, 2, 4, 6 and 8 weeks were studied. The treatment of fresh longan fruit with SO2 fumigation combined with the suitable storage condition improved the overall longan fruit quality, especially on inner and outer peel tissue and aril color than no SO2 treatment. Treatment stabilizes peel color with no subsequent loss of color during storage (fruit color were bright-yellowish color). When the fruit showed during SO2 treatment, increasing of storage duration and temperatures, the dark color of inner and outer peel of longan fruit was appeared, this was correlated with the increasing of PPO activity. The activity of PPO enzyme in control fruit (no SO2 treatment) gradually lower than SO2 treatments. Fruit exposed to cool storage temperature (2°C) exhibited a lower PPO enzymatic activity compared to those kept in high storage temperature (7°C). Moreover, PPO enzymatic activity significantly increased over the storage durations The additional SO2 treatment no subsequent loss of weight of longan fruit during storage. However, the sulphite residues could detect immediately after SO2 treatment in all part of longan fruit, especially on aril tissue. The SEM evaluation found that the surface cracking was also impair the physiological function of the cuticle and increasing water permeability, which may cause water soaking at the inner side of the peel. The injured cell would accelerate the oxidation of phenolic substances and the oxidative products resulted in dark color of inner and outer peel. © 2009 Asian Network for Scientific Information. |
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W. Chitbanchong V. Sardsud K. Whangchai R. Koslanund P. Thobunluepop |
author_facet |
W. Chitbanchong V. Sardsud K. Whangchai R. Koslanund P. Thobunluepop |
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W. Chitbanchong |
title |
Control of rotting and browning of Longan fruit cv. Biew Kiew after harvested by sulphur dioxide treatment under various storage temperatures |
title_short |
Control of rotting and browning of Longan fruit cv. Biew Kiew after harvested by sulphur dioxide treatment under various storage temperatures |
title_full |
Control of rotting and browning of Longan fruit cv. Biew Kiew after harvested by sulphur dioxide treatment under various storage temperatures |
title_fullStr |
Control of rotting and browning of Longan fruit cv. Biew Kiew after harvested by sulphur dioxide treatment under various storage temperatures |
title_full_unstemmed |
Control of rotting and browning of Longan fruit cv. Biew Kiew after harvested by sulphur dioxide treatment under various storage temperatures |
title_sort |
control of rotting and browning of longan fruit cv. biew kiew after harvested by sulphur dioxide treatment under various storage temperatures |
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2018 |
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https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=72249119755&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/48729 |
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