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Article

Metabolomics Reveals the Regulatory Mechanism of Antibacterial Fiber Membrane Packaging on the Postharvest Quality of Wax Apple (Syzygium samarangense)

1
Key Laboratory of Crop Gene Resources and Germplasm Enhancement in Southern China of Ministry of Agriculture and Rural Affairs & Key Laboratory of Tropical Crops Germplasm Resources Genetic Improvement and Innovation of Hainan Province, Tropical Crops Genetic Resources Institute (TCGRI), Chinese Academy of Tropical Agricultural Sciences (CATAS), Haikou 571101, China
2
College of Food Science and Engineering, Hainan University, Haikou 570228, China
*
Authors to whom correspondence should be addressed.
Foods 2025, 14(21), 3794; https://doi.org/10.3390/foods14213794
Submission received: 7 October 2025 / Revised: 31 October 2025 / Accepted: 2 November 2025 / Published: 5 November 2025

Abstract

Wax apple (Syzygium samarangense) is highly perishable postharvest. Even under refrigerated storage conditions, its shelf life typically lasts only about one week. This study developed a novel antibacterial food packaging membrane to extend its shelf life and explored the underlying preservation mechanisms. A composite fiber membrane was fabricated via solution blow spinning (SBS) using polyethylene oxide (PEO) and oxidized sesbania gum (OSG) incorporated with ε-polylysine (ε-PL). The composite membrane demonstrated exceptional antibacterial activity against both E. coli and S. aureus by disrupting cell wall and membrane integrity, as evidenced by increased protein leakage, alkaline phosphatase activity, and electrical conductivity. Morphological observations through scanning electron microscopy confirmed extensive cellular damage and bactericidal effects. During nine days of ambient storage, the PEO/OSG/PL membrane significantly maintained the postharvest quality of wax apples. This was evidenced by a lower decay index (2.22 ± 0.19) and weight loss rate (5.32 ± 0.16%) compared to the control group, alongside better preservation of firmness (4.11 ± 0.08 N) and color stability. The treatment suppressed respiratory rate and delayed the degradation of soluble solids and titratable acidity. Furthermore, it enhanced antioxidant capacity through higher peroxidase activity and reduced malondialdehyde accumulation, indicating attenuated oxidative stress. Non-targeted metabolomics analysis revealed that the membrane treatment modulated critical metabolic pathways, particularly phenylalanine metabolism and linoleic acid metabolism. These metabolic adjustments contributed to enhanced defense responses and delayed senescence. The results show that the PEO/OSG/ε-PL fiber membrane acts as an effective active packaging material by inhibiting microbial growth and regulating metabolism. This provides a potential method to extend the shelf life of perishable fruits.
Keywords: active packaging; antibacterial mechanism; wax apple; non-targeted metabolomics active packaging; antibacterial mechanism; wax apple; non-targeted metabolomics
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MDPI and ACS Style

Zhao, J.; Yao, G.; Huang, D.; Sun, Y.; Chen, J.; Huan, H. Metabolomics Reveals the Regulatory Mechanism of Antibacterial Fiber Membrane Packaging on the Postharvest Quality of Wax Apple (Syzygium samarangense). Foods 2025, 14, 3794. https://doi.org/10.3390/foods14213794

AMA Style

Zhao J, Yao G, Huang D, Sun Y, Chen J, Huan H. Metabolomics Reveals the Regulatory Mechanism of Antibacterial Fiber Membrane Packaging on the Postharvest Quality of Wax Apple (Syzygium samarangense). Foods. 2025; 14(21):3794. https://doi.org/10.3390/foods14213794

Chicago/Turabian Style

Zhao, Jiale, Guanglong Yao, Dongfen Huang, Yue Sun, Jian Chen, and Hengfu Huan. 2025. "Metabolomics Reveals the Regulatory Mechanism of Antibacterial Fiber Membrane Packaging on the Postharvest Quality of Wax Apple (Syzygium samarangense)" Foods 14, no. 21: 3794. https://doi.org/10.3390/foods14213794

APA Style

Zhao, J., Yao, G., Huang, D., Sun, Y., Chen, J., & Huan, H. (2025). Metabolomics Reveals the Regulatory Mechanism of Antibacterial Fiber Membrane Packaging on the Postharvest Quality of Wax Apple (Syzygium samarangense). Foods, 14(21), 3794. https://doi.org/10.3390/foods14213794

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