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    Efficacy of salicylic acid incorporated with lukewarm water immersion on postharvest quality of ‘Leb Mue Nang’bananas (Musa AA) on shelf life storage
    (2025-05-01) ;
    Nokkhao, Ruamjit
    ;
    Suemak, Aphisit
    ;
    Importance of the work: The shelf life of ‘Leb Mue Nang’ bananas (Musa AA) is relatively short. The decline in quality with shelf life limits the market presence of bananas. Objectives: To investigate the impact of salicylic acid (SA) incorporated with lukewarm water (LW) immersion on the quality preservation of ‘Leb Mue Nang’ bananas stored under shelf life conditions (27 ± 2°C, 65 ± 8% relative humidity) for 6 d. Materials and Methods: First, the effects on banana quality were monitored of SA immersion at 0−2 mM, as well as LW immersion at 45 or 50°C for 5−15 min. Consequently, the impact was examined of SA+LW (SA at 0.25 mM combined with LW at 45°C for 15 min) on the quality preservation of bananas compared to the SA-only, LW-only and control treatments. Results: In the preliminary study, the bananas subjected to 0.25 mM SA dipping or LW at 45°C for 15 min best preserved postharvest quality. Compared to the control, all treatments delayed senescence spots and maintained pulp firmness, as well as postponing increases in weight loss, total soluble solids content, total acidity and ripening index. Both the SA and SA+LW treatments increased the total phenols and antioxidant activity. The SA+LW treatment decreased skin damage and preserved pulp firmness compared to the SA- and LW-only treatments. All examined quality parameters were significantly and positively correlated during storage, with the exception of pulp firmness, which had a negative correlation to the other parameters. Main finding: The SA+LW treatment effectively preserved the quality and prolonged the shelf life of the ‘Leb Mue Nang’ bananas compared to untreated fruits.
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    Preharvest calcium chloride sprays improving physicochemical quality of mulberries (Morus alba L. ‘Chiang Mai 60’) during refrigeration
    (2024-06-01) ;
    Sangchan, P.
    ;
    ;
    Ahuja, A. Junpatiw
    The aim of this work was to investigate the efficiency of preharvest CaCl2 sprays on quality of ‘Chiang Mai 60’ mulberries during refrigeration. The mulberries at the stage of 40 days after anthesis were sprayed with water (control), 0.5 or 1% CaCl2. The fruits were then harvested after spraying for 5 days and refrigerated at 5°C for 6 days. The visual appearance, texture, total soluble solids (TSS) content, total acidity (TA), antioxidant activities and certain secondary metabolites of the mulberries were monitored. Both CaCl2 sprays had no effect on the visual appearance during storage. Both CaCl2 sprays enhanced fruit firmness and delayed the fruit softening during refrigeration. Both CaCl2 treatments delayed the increased TSS content and maintained the TA content. Total phenols, ascorbic acid and anthocyanin contents of the mulberries were enhanced by the CaCl2 sprays. Both CaCl2 sprays delayed the decreased antioxidant capacity and enhanced the free radical scavenging activity during the refrigeration. The efficiency of 0.5 and 1% CaCl2 preharvest sprays on improving postharvest quality of the mulberries was not different. This indicates that CaCl2 preharvest sprays improved postharvest quality of the mulberries which 0.5% CaCl2 is the suggested concentration.
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    Salicylic acid immersion maintains physiochemical quality and enhances bioactive compounds in 'Kimju' guava fruit during cold storage
    (2017-01-01) ;
    Mahasap, Boonwat
    ;
    Boonyaritthongchai, Panida
    ;
    ;
    Tepsorn, Racha
    The aims of this work were to investigate the effect of salicylic acid (SA) immersion on the physicochemical quality maintenance and biologically active compounds enhancement of 'Kimju' guava. The fruit were immersed in water (control) and 2 mM SA solution and stored at 12 ± 1 °C, 90 ± 2% RH. The observed factors were pigments, total sugars, total soluble solids (TSS), total acidity (TA), firmness and pectin components, bioactive compounds such as ascorbic acid (AsA), total phenols (TP), total flavonoids (TF) and the activities of antioxidant enzymes including peroxidase (POD) and catalase (CAT). The total chlorophylls chlorophyll a and b contents of the treated fruit were higher than those of the control. The SA immersion did not affect the total carotenoids concentration and TSS whilst it delayed the increase in total sugars and lowered TA content. The fruit softening was delayed by the SA immersion due to the control of soluble pectin increase and insoluble pectin decrease. The antioxidant activity and the concentrations of AsA, TP and TF were enhanced by the SA immersion. The SA immersion also stimulated POD activity but did not induced CAT activity. In conclusion, 2.0 mM SA immersion is an effective postharvest treatment maintaining quality and improving nutritional values of 'Kimju' guava.
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    Efficacy of methyl jasmonate-liposomes on 'Kluai Khai' bananas (Musa AA) quality preservation and oxidative response alleviation during room temperature storage
    (2025-02-01)
    Da, Li
    ;
    ;
    Suo, Xiaoyu
    ;
    Sinthusamran, Sirima
    ;
    Phakawan, Janejira
    The rapid acceleration of ripening during ambient storage is a primary factor limiting the shelf-life of bananas. Application of methyl jasmonate (MeJA) has been used to enhance the postharvest quality of perishable commodities. This study aimed to investigate the efficacy of MeJA (10<sup>−3</sup> M) encapsulated in liposomes (MeJA-liposomes) on the postharvest quality of ‘Kluai Khai’ bananas (Musa AA) during storage at room temperature (26 ± 2 °C) for 9 d The MeJA-liposomes exhibited an average particle size of 152.37 ± 1.63 nm with a PDI of 0.21 and a zeta potential value of -33.9 ± 1.02 mV. The MeJA-liposomes treatment exhibited a greater delay in fruit ripening and peel colour development compared to the MeJA (10<sup>−3</sup> M), blank-liposomes, and control treatments, respectively. MeJA-liposomes reduced the oxidative stress of the peel by decreasing electrolyte leakage, lipoxygenase activity, and the levels of malondialdehyde, α-fanesene, conjugated triene (CT-281) and H<inf>2</inf>O<inf>2</inf> in the fruit peel. As the ripening process in untreated bananas progressed, they exhibited greater antioxidant activities, namely in terms of ferric reduction antioxidant capacity and DPPH radical scavenging activity in the peel, compared to the MeJA-liposome-treated bananas. The application of MeJA-liposomes treatment resulted in a postponement in the process of softening and an increase in the levels of total soluble solids content, and BrimA in the banana pulp throughout the storage period. In conclusion, the application of MeJA-liposomes presents a promising method for postponing the ripening process, alleviating the oxidative response in the peel and prolonging the shelf-life of ‘Kluai Khai’ bananas (Musa AA) at room temperature.
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    Physicochemical quality and antioxidant changes in ‘Leb Mue Nang’ banana fruit during ripening
    The physicochemical and antioxidant changes of ‘Kluai Leb Mue Nang’ banana fruit (Musa AA group) were investigated during ripening. The visual appearance, peel and pulp color, firmness, total soluble solids concentration (TSS), total acidity (TA) and bioactive compounds of the fruit at three stages of ripening (mature green, ripe and overripe) were monitored. Changes in both the peel and pulp color, texture, TSS and TA contents during banana ripening were similar to those of other banana fruits. Interestingly, the highest total antioxidants capacity and total phenols concentration were found in the ripe banana fruit. 2,2-Diphenyl-1-picrylhydrazyl radical scavenging activity remained constant and the highest total flavonoids concentration was found in the mature green fruit.
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    Postharvest quality maintenance and bioactive compounds enhancement in ‘Taaptimjaan’ wax apple during short-term storage by salicylic acid immersion
    (2018-06-01) ;
    Mitsang, Preyanuch
    ;
    ; ;
    Boonyaritthongchai, Panida
    Physicochemical quality and bioactive compounds of ‘Taaptipjaan’ wax apple (Syzygium samarangenese) that were immersed in 0, 0.5 and 1.0 mM salicylic acid (SA) for 30 min and then stored at 12 ± 1 °C for 9 days were investigated. SA had no effect on the colour of fruit skin, total soluble solids, total acidity, total sugars, ascorbic acid (AsA) and anthocyanin contents but could help maintaining the firmness of the fruit. Antioxidant activity, total phenols, total flavonoids and antioxidant enzymes activities such as peroxidase and catalase were enhanced by SA. The SA immersion at the concentration of 0.5 mM effectively maintained firmness and visual appearance without causing any shrinkage on the fruit top and skin pitting and enhanced the bioactive compounds greater than 1.0 mM SA immersion. The evidences suggest that 0.5 mM SA immersion is an effective approach of maintaining quality and enhancing bioactive compounds including the activities of antioxidant enzymes in the fruit during short-term storage.
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    Internal browning alleviation of Queen pineapple cv. ‘Sawi’ under cold storage using salicylic acid or abscisic acid peduncle infiltration
    (2019-11-02) ; ;
    Wongs-Aree, Chalermchai
    Internal browning (IB) is a main problem of Queen pineapple during cold storage. The effects of exogenous salicylic acid (SA) or abscisic acid (ABA) on IB alleviation of the pineapple during cold storage were investigated. ‘Sawi’ pineapples were peduncle-infiltrated with 2 mM SA or 380 µM ABA for 3 d at 13°C followed storage at 13°C for 14 d. IB incidence and IB-related factors including lipid peroxidation, antioxidant capacity and antioxidant enzymes activities of the tissue adjacent to core were investigated after storage for 7 and 14 d followed by 2 d at room temperature (RT). Both SA and ABA treatments obviously alleviated IB development. ABA lowered TP content, MDA accumulation and the activities of LOX, PAL and PPO and induced POD activity. SA lowered PAL and PPO activity, delayed LOX activity and MDA increase, enhanced phenols, antioxidant activity and both antioxidant enzyme yields. Both ABA and SA peduncle infiltration alleviated IB incidence of Queen pineapple during cold storage. Although ABA could reduce the IB incidence better than SA, due to the efficiency of lower reactions of browning-related enzymes and lipid peroxidation, exogenous SA application might be a better choice for commercial use. Abbreviations: Total phenols (TP), Malondialdehyde (MDA), Lipoxygenase (LOX), Phenylalanine ammonia lyase (PAL), Polyphenol oxidase (PPO), Peroxidase (POD) and Internal browning (IB).
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    Physicochemical factors related to 'Monthong' durian fruit maturity
    (2018-08-30) ;
    Rattanaphon, J.
    ;
    ;
    Heterogeneous maturation of durian fruit on the market is a main problem. The aim of this work was to investigate certain factors related to the maturity of 'Monthong' durian fruit. The durian fruit at immature, onset of maturation, onset of ripening, ripe and full ripe stages were harvested. Non-destructive factors such as specific gravity and total soluble solids (TSS) content of peduncle and destructive factors such as cut-fruit visual appearance, pulp dry weight, colour, TSS content and carotenoids content were monitored. Both specific gravity and TSS content of peduncle were increased until the onset of ripening stage and then remained constant during ripening. The visual appearance showed the increase in pulp yellowness and space between pulp and peel which positively changed with the maturation increase. The pulp dry weight and b* value were increased whilst L* value was decreased as the ripening increased. The pulp TSS concentration was dramatically increased until full ripe and then remained constant. Carotenoids content of the pulp was also obviously increased from immature to the onset of ripening stage and it then remained constant. In conclusion, the decrease in specific gravity and increase in peduncle TSS concentration could be non-destructive factors indicating durian fruit ripening.
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    Liposome containing methyl jasmonate incorporated with vitamin B12 alleviates chilling injury of ‘Queen’ pineapples
    (2023-11-01) ;
    Kongchana, Juthawan
    ;
    Anjana, Junpatiw Ahuja
    ;
    Tepsorn, Racha
    ;
    In the food sector, liposome systems are utilized to boost absorptivity, regulate active-molecule release, and enhance food quality. The efficacy of liposomes containing methyl jasmonate (0.1 mM) mixed with vitamin B<inf>12</inf> (2 μM) (MeJA+Vit B<inf>12</inf> liposome) on the alleviation of chilling injury (CI) in ‘Queen’ pineapples by using peduncle infiltration was investigated. The treatment of MeJA+Vit B<inf>12</inf> liposome was compared with the treatments of MeJA, Vit B<inf>12</inf> and MeJA+Vit B<inf>12</inf> and untreated fruits (control) during refrigerated storage at 13°C for 14 d. The treatments of MeJA, Vit B<inf>12</inf> and MeJA+Vit B<inf>12</inf> liposome could alleviate CI symptoms (translucency and browning in tissue adjacent to the core). Among these treatments, MeJA+Vit B<inf>12</inf> liposome inhibited the CI symptom more than other treatments. MeJA+Vit B<inf>12</inf> liposome retarded the increments of tissue electrolyte leakage, malondialdehyde content, lipoxygenase activity, polyphenol oxidase activity, and total phenols content of tissue contiguous to the core of the pineapples compared to untreated fruits. The treatment also enhanced the ascorbic acid content and antioxidant activities (ferric reducing antioxidant power and free radical scavenging activity) of tissue adjacent to the core. Therefore, MeJA+Vit B<inf>12</inf> liposome peduncle infiltration is a feasible novel approach to alleviate the CI incidence of ‘Queen’ pineapples during refrigeration.
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    Quality and bioactive compounds of ripe 'Kluai Nam Wa' and 'Kluai Khai' bananas during storage
    (2016-01-01) ;
    The aim of this work was to determine quality changes in ripe 'Kluai Nam Wa' (Musa ABB group) and 'Kluai Khai' (Musa AA group) banana fruits held 25 or 13°C. Skin blackening and senescence spots appeared on both 'Kluai Nam Wa' and 'Kluai Khai' banana fruit held at at 25°C for 8 days. No senescence spots were detected on 'Kluai Khai' held at 13°C for 16 days. Storage at 13°C maintained both skin and pulp colour and delayed the fruit softening. Bioactive compounds of 'Kluai Khai' banana fruit were higher than 'Kluai Nam Wa' banana fruit. An increase in antioxidant was found in both banana fruit held at 25°C. Antioxidant of 'Kluai Khai' banana fruit held at 13°C increased during storage whilst that of 'Kluai Nam Wa' banana fruit decreased. Storage at 13°C could maintain total phenols and total flavonoids of the bananas during storage.