Articles
EFFECT OF METHYL JASMONATE TREATMENT ON FRUIT DECAY AND QUALITY IN PEACHES DURING STORAGE AT AMBIENT TEMPERATURE
Article number
712_90
Pages
711 – 716
Language
English
Abstract
The effect of a postharvest application of methyl jasmonate (MeJA) on fruit decay and quality in peaches stored at 25 °C were investigated.
Peach fruit (Prunus persica Batsch cv Hujing) were harvested at firm-mature stage and treated with 1, 10, 100 or 500 μmol/L MeJA vapor at 20 °C for 24 h before stored at 25 °C for 8 days.
Changes in fruit decay rate, decay index, firmness, vitamin C, total soluble solids (TSS), total titratable acidity (TA) contents, electrolyte leakage and malondialdehyde (MDA) content were monitored during storage.
The results indicated that peach fruit showed fruit decay on day 2 during storage at 25 °C. Treatment with low concentrations of MeJA (1-100 μmol/L) significantly inhibited fruit decay and 1μmol/L MeJA was the most effective, while high concentration of MeJA (500 μmol/L) promoted fruit decay.
After 8 days of storage at 25 °C, the decay rate and decay index of control fruit were 30% and 23%, while those of 1 and 500μmol/L MeJA treated fruit were 7%, 2% and 40%, 32%, respectively.
Fruit firmness, vitamin C, TSS and TA contents decreased rapidly during storage.
No significant differences in fruit firmness were observed among all the treatments at the end of the storage.
Treatment with low concentrations of MeJA (1 or 10 μmol/L) prevented the declines in vitamin C, TSS and TA contents, while high concentrations of MeJA (100 or 500 μmol/L) had little effect on their contents.
Electrolyte leakage and MDA content increased gradually during storage. 1-100 μmol/L MeJA treatment significantly inhibited the increase in electrolyte leakage and MDA content, while their increases were significantly promoted by 500 μmol/L MeJA. These results suggest that low concentrations of MeJA treatment may of commercial use to reduce fruit decay and maintain fruit quality in peaches during postharvest distribution at ambient temperature.
Peach fruit (Prunus persica Batsch cv Hujing) were harvested at firm-mature stage and treated with 1, 10, 100 or 500 μmol/L MeJA vapor at 20 °C for 24 h before stored at 25 °C for 8 days.
Changes in fruit decay rate, decay index, firmness, vitamin C, total soluble solids (TSS), total titratable acidity (TA) contents, electrolyte leakage and malondialdehyde (MDA) content were monitored during storage.
The results indicated that peach fruit showed fruit decay on day 2 during storage at 25 °C. Treatment with low concentrations of MeJA (1-100 μmol/L) significantly inhibited fruit decay and 1μmol/L MeJA was the most effective, while high concentration of MeJA (500 μmol/L) promoted fruit decay.
After 8 days of storage at 25 °C, the decay rate and decay index of control fruit were 30% and 23%, while those of 1 and 500μmol/L MeJA treated fruit were 7%, 2% and 40%, 32%, respectively.
Fruit firmness, vitamin C, TSS and TA contents decreased rapidly during storage.
No significant differences in fruit firmness were observed among all the treatments at the end of the storage.
Treatment with low concentrations of MeJA (1 or 10 μmol/L) prevented the declines in vitamin C, TSS and TA contents, while high concentrations of MeJA (100 or 500 μmol/L) had little effect on their contents.
Electrolyte leakage and MDA content increased gradually during storage. 1-100 μmol/L MeJA treatment significantly inhibited the increase in electrolyte leakage and MDA content, while their increases were significantly promoted by 500 μmol/L MeJA. These results suggest that low concentrations of MeJA treatment may of commercial use to reduce fruit decay and maintain fruit quality in peaches during postharvest distribution at ambient temperature.
Authors
P. Jin, Y.H. Zheng, C.M. Cheng, H.Y. Gao, W.X. Chen, H.J. Chen
Keywords
Prunus persica Batsch, decay index, total soluble solids, total titratable acidity, malondialdehyde, electrolyte leakage
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