Biotechnology Bulletin ›› 2025, Vol. 41 ›› Issue (9): 105-114.doi: 10.13560/j.cnki.biotech.bull.1985.2025-0201
CHEN Qiang(
), YU Ying-fei, ZHANG Ying, ZHANG Chong(
)
Received:2025-02-26
Online:2025-09-26
Published:2025-07-30
Contact:
ZHANG Chong
E-mail:chq521900@126.com;352628403@qq.com
CHEN Qiang, YU Ying-fei, ZHANG Ying, ZHANG Chong. Regulatory Effect of Methyl Jasmonate on Postharvest Chilling Injury in Oriental Melon ‘Emerald’[J]. Biotechnology Bulletin, 2025, 41(9): 105-114.
| [1] | Fogelman E, Kaplan A, Tanami Z, et al. Antioxidative activity associated with chilling injury tolerance of muskmelon (Cucumis melo L.) rind [J]. Sci Hortic, 2011, 128(3): 267-273. |
| [2] | 张敏, 解越. 采后果蔬低温贮藏冷害研究进展 [J]. 食品与生物技术学报, 2016, 35(1): 1-11. |
| Zhang M, Xie Y. Research progress of chilling injury on post-harvest fruits and vegetables stored at low temperature [J]. J Food Sci Biotechnol, 2016, 35(1): 1-11. | |
| [3] | Aghdam MS, Bodbodak S. Postharvest heat treatment for mitigation of chilling injury in fruits and vegetables [J]. Food Bioprocess Technol, 2014, 7(1): 37-53. |
| [4] | 杨文慧. 五种外源物质处理对采后香蕉果实冷害控制效果的研究 [D]. 南宁: 广西大学, 2021. |
| Yang WH. Study on the effect of five kinds of exogenous substances on the control of chilling injury of postharvest bananas [D]. Nanning: Guangxi University, 2021. | |
| [5] | Chen HB, Lin HT, Jiang XJ, et al. Amelioration of chilling injury and enhancement of quality maintenance in cold-stored guava fruit by melatonin treatment [J]. Food Chem X, 2022, 14: 100297. |
| [6] | 安路明. 外源腐胺处理对甜瓜采后冷害和多胺代谢的影响 [D]. 乌鲁木齐: 新疆农业大学, 2021. |
| An LM. Effect of exogenous putrescine treatments on chilling injury and polyamine metabolism of postharvest melon [D]. Urumqi: Xinjiang Agricultural University, 2021. | |
| [7] | Baswal AK, Dhaliwal HS, Singh Z, et al. Postharvest application of methyl jasmonate, 1-methylcyclopropene and salicylic acid extends the cold storage life and maintain the quality of ‘Kinnow’ mandarin (Citrus nobilis L. × C. deliciosa L.) fruit [J]. Postharvest Biol Technol, 2020, 161: 111064. |
| [8] | Ning M, Tang FX, Chen JL, et al. Low-temperature adaptation and preservation revealed by changes in physiological-biochemical characteristics and proteome expression patterns in post-harvest Hami melon during cold storage [J]. Planta, 2022, 255(4): 91. |
| [9] | Min DD, Li FJ, Ali M, et al. Application of methyl jasmonate to control chilling tolerance of postharvest fruit and vegetables: a meta-analysis and eliciting metabolism review [J]. Crit Rev Food Sci Nutr, 2024, 64(33): 12878-12891. |
| [10] | Jing S, Wang CL, Yang YJ, et al. Integrated transcriptomics and physiological parameters reveal the husk browning difference between two cultivars of pomegranate fruit [J]. Sci Hortic, 2024, 336: 113413. |
| [11] | Chen MS, Guo HM, Chen SQ, et al. Methyl jasmonate promotes phospholipid remodeling and jasmonic acid signaling to alleviate chilling injury in peach fruit [J]. J Agric Food Chem, 2019, 67(35): 9958-9966. |
| [12] | 付安珍, 左进华, 王清, 等. 茉莉酸甲酯处理对青圆椒采后冷害生理与营养品质的影响 [J]. 食品科学, 2021, 42(15): 213-219. |
| Fu AZ, Zuo JH, Wang Q, et al. Effect of methyl jasmonate treatment on chilling injury-related physiological factors and nutritional quality of postharvest green bell peppers [J]. Food Sci, 2021, 42(15): 213-219. | |
| [13] | Sen F, Yilmaz E, Ozturk B. Effects of 1-methylcyclopropene, methyl jasmonate and salicylic acid on physicochemical properties and wooliness of nectarine fruit during cold storage [J]. BMC Plant Biol, 2024, 24(1): 1205. |
| [14] | Rehman M, Singh Z, Khurshid T. Methyl jasmonate alleviates chilling injury and regulates fruit quality in ‘Midknight’ Valencia orange [J]. Postharvest Biol Technol, 2018, 141: 58-62. |
| [15] | Li JH, Azam M, Noreen A, et al. Application of methyl jasmonate to Papaya fruit stored at lower temperature attenuates chilling injury and enhances the antioxidant system to maintain quality [J]. Foods, 2023, 12(14): 2743. |
| [16] | Elatafi E, Elshahat A, Yu X, et al. Effects of different storage temperatures and methyl jasmonate on grape quality and antioxidant activity [J]. Horticulturae, 2023, 9(12): 1282. |
| [17] | Du MM, Zhao JH, Tzeng DTW, et al. MYC2 orchestrates a hierarchical transcriptional cascade that regulates jasmonate-mediated plant immunity in tomato [J]. Plant Cell, 2017, 29(8): 1883-1906. |
| [18] | Kazan K, Manners JM. MYC2: the master in action [J]. Mol Plant, 2013, 6(3): 686-703. |
| [19] | Luo L, Wang Y, Qiu L, et al. MYC2: a master switch for plant physiological processes and specialized metabolite synthesis [J]. Int J Mol Sci, 2023, 24(4): 3511. |
| [20] | Wang YC, Xu HF, Liu WJ, et al. Methyl jasmonate enhances apple cold tolerance through the JAZ-MYC2 pathway [J]. Plant Cell Tissue Organ Cult, 2019, 136(1): 75-84. |
| [21] | Min DD, Zhou JX, Li JZ, et al. SlMYC2 targeted regulation of polyamines biosynthesis contributes to methyl jasmonate-induced chilling tolerance in tomato fruit [J]. Postharvest Biol Technol, 2021, 174: 111443. |
| [22] | Min DD, Li FJ, Zhang XH, et al. SlMYC2 involved in methyl jasmonate-induced tomato fruit chilling tolerance [J]. J Agric Food Chem, 2018, 66(12): 3110-3117. |
| [23] | Fu AZ, Zheng YY, Lv YH, et al. Multi-omics analysis reveals specific modifications associated with reduced chilling injury in bell pepper fruit by methyl jamonate [J]. Postharvest Biol Technol, 2022, 185: 111799. |
| [24] | Duan WY, Yang C, Cao XM, et al. Transcriptome and DNA methylome analysis reveal new insights into methyl jasmonate-alleviated chilling injury of peach fruit after cold storage [J]. Postharvest Biol Technol, 2022, 189: 111915. |
| [25] | Chen J, Kuang JF, Shan W, et al. Molecular characterization of a cold-responsive RING-H2 finger gene from banana fruit and its interaction with MaMYC2a [J]. Postharvest Biol Technol, 2014, 98: 48-55. |
| [26] | Fernández-Trujillo JP, Obando-Ulloa JM, Martínez JA, et al. Climacteric and non-climacteric behavior in melon fruit 2. Linking climacteric pattern and main postharvest disorders and decay in a set of near-isogenic lines [J]. Postharvest Biol Technol, 2008, 50(2/3): 125-134. |
| [27] | 陈强, 黄馨慧, 张峥, 等. 褪黑素对薄皮甜瓜采后软化和乙烯合成的影响 [J]. 生物技术通报, 2024, 40(4): 139-147. |
| Chen Q, Huang XH, Zhang Z, et al. Effects of melatonin on the fruit softening and ethylene synthesis of post-harvest oriental melon [J]. Biotechnol Bull, 2024, 40(4): 139-147. | |
| [28] | Mathelier A, Fornes O, Arenillas DJ, et al. JASPAR 2016: a major expansion and update of the open-access database of transcription factor binding profiles [J]. Nucleic Acids Res, 2016, 44(D1): D110-D115. |
| [29] | Franzoni G, Spadafora ND, Sirangelo TM, et al. Biochemical and molecular changes in peach fruit exposed to cold stress conditions [J]. Mol Hortic, 2023, 3(1): 24. |
| [30] | 任新雅, 石慧敏, 刘志旭, 等. 褪黑素通过调控能量代谢和抗氧化能力增强杏果实抗冷性 [J]. 食品科学, 2024, 45(14): 217-226. |
| Ren XY, Shi HM, Liu ZX, et al. Melatonin enhances cold resistance in apricot fruits by regulating the energy metabolism and antioxidant capacity [J]. Food Sci, 2024, 45(14): 217-226. | |
| [31] | Shi JY, Zuo JH, Xu DY, et al. Effect of low-temperature conditioning combined with methyl jasmonate treatment on the chilling resistance of eggplant (Solanum melongena L.) fruit [J]. J Food Sci Technol, 2019, 56(10): 4658-4666. |
| [32] | Elbagoury MM, Turoop L, Runo S, et al. Regulatory influences of methyl jasmonate and calcium chloride on chilling injury of banana fruit during cold storage and ripening [J]. Food Sci Nutr, 2021, 9(2): 929-942. |
| [33] | Zhu LS, Huang T, Liu JL, et al. Transcriptome analysis reveals the potential mechanism of methyl jasmonate alleviated ripening disorder in mango fruit at low temperature [J]. Food Chem, 2025, 463: 141093. |
| [34] | Zhang WL, Jiang HT, Cao JK, et al. Advances in biochemical mechanisms and control technologies to treat chilling injury in postharvest fruits and vegetables [J]. Trends Food Sci Technol, 2021, 113: 355-365. |
| [35] | Ge YH, Li X, Li CY, et al. Effect of sodium nitroprusside on antioxidative enzymes and the phenylpropanoid pathway in blueberry fruit [J]. Food Chem, 2019, 295: 607-612. |
| [36] | Huang T, Liu GS, Zhu LS, et al. Mitigation of chilling injury in mango fruit by methyl jasmonate is associated with regulation of antioxidant capacity and energy homeostasis [J]. Postharvest Biol Technol, 2024, 211: 112801. |
| [37] | Cao SF, Zheng YH, Wang KT, et al. Methyl jasmonate reduces chilling injury and enhances antioxidant enzyme activity in postharvest loquat fruit [J]. Food Chem, 2009, 115(4): 1458-1463. |
| [38] | Xie GF, Liu N, Zhang Y, et al. Postharvest MeJA maintains the shelf quality of kiwifruit after cold storage by regulating antioxidant capacity and activating the disease resistance [J]. Postharvest Biol Technol, 2024, 211: 112827. |
| [39] | Zhang XH, Li FJ, Ji NN, et al. Involvement of arginase in methyl jasmonate-induced tomato fruit chilling tolerance [J]. J Am Soc Hortic Sci, 2016, 141(2): 139-145. |
| [40] | Liu JY, Zhang C, Shao Q, et al. Effects of abiotic stress and hormones on the expressions of five 13-CmLOXs and enzyme activity in oriental melon (Cucumis melo var. makuwa Makino) [J]. J Integr Agric, 2016, 15(2): 326-338. |
| [41] | Fu XD, Li JZ, Min DD, et al. LncRNA4504 involved in methyl jasmonate-induced resistance to Botrytis cinerea in postharvest tomato fruit [J]. Sci Hortic, 2022, 305: 111381. |
| [42] | Ma J, Liu S, Zeng J, et al. Comparative metabolome and transcriptome analyses reveal the role of MeJA in improving postharvest disease resistance and maintaining the quality of Rosa roxburghii fruit [J]. Postharvest Biol Technol, 2025, 220: 113314. |
| [43] | Fan XL, Lin HR, Ding F, et al. Jasmonates promote β-amylase-mediated starch degradation to confer cold tolerance in tomato plants [J]. Plants, 2024, 13(8): 1055. |
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