Integrative Multi-Omics Reveals Tissue-Specific Postharvest Changes in Blueberry Fruit

Abstract Postharvest cold storage is essential for maintaining blueberry fruit quality, yet the molecular basis of tissue-specific responses during storage remains poorly understood. Here, we integrated widely targeted metabolomics and transcriptomics to characterize peel and pulp responses during 6 weeks of storage at 4 °C. Metabolomic profiles revealed pronounced tissue specialization, with peel enriched in flavonoids, terpenoids, and phenylpropanoid-derived metabolites, whereas pulp accumulated amino acids and other primary metabolites. In contrast, transcriptomic variation was dominated by storage, indicating a largely conserved response across tissues. Multi-omics analyses using DIABLO, MOFA2, and network analysis identified 65 genes and 58 metabolites associated with storage-related and tissue-specific variation. These analyses highlighted jasmonate- and oxylipin-associated pathways, antioxidant responses, membrane lipid remodeling, and phenylpropanoid metabolism, alongside reduced expression of aquaporins and cell wall-modifying genes. Overall, these findings provide a systems-level view of blueberry storage responses and identify candidate molecular processes associated with postharvest quality and storage performance.

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Publication Details

Journal
Journal of Agricultural and Food Chemistry
Published
2026-10-06
DOI
https://doi.org/10.1021/acs.jafc.6c13073
Primary Topic
Postharvest Quality and Shelf Life Management
Type
article
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article

Integrative Multi-Omics Reveals Tissue-Specific Postharvest Changes in Blueberry Fruit

Romit Seth, Massimo Iorizzo, Molla Fentie Mengist
Journal of Agricultural and Food Chemistry
Postharvest Quality and Shelf Life Management
article

Integrative Multi-Omics Reveals Tissue-Specific Postharvest Changes in Blueberry Fruit

Romit Seth, Massimo Iorizzo, Molla Fentie Mengist
article en

Abstract

Abstract Postharvest cold storage is essential for maintaining blueberry fruit quality, yet the molecular basis of tissue-specific responses during storage remains poorly understood. Here, we integrated widely targeted metabolomics and transcriptomics to characterize peel and pulp responses during 6 weeks of storage at 4 °C. Metabolomic profiles revealed pronounced tissue specialization, with peel enriched in flavonoids, terpenoids, and phenylpropanoid-derived metabolites, whereas pulp accumulated amino acids and other primary metabolites. In contrast, transcriptomic variation was dominated by storage, indicating a largely conserved response across tissues. Multi-omics analyses using DIABLO, MOFA2, and network analysis identified 65 genes and 58 metabolites associated with storage-related and tissue-specific variation. These analyses highlighted jasmonate- and oxylipin-associated pathways, antioxidant responses, membrane lipid remodeling, and phenylpropanoid metabolism, alongside reduced expression of aquaporins and cell wall-modifying genes. Overall, these findings provide a systems-level view of blueberry storage responses and identify candidate molecular processes associated with postharvest quality and storage performance.

Journal of Agricultural and Food Chemistry
Virginia State University (US), North Carolina State University (US)
Openalex Percentile: Top 14%
Postharvest Quality and Shelf Life Management
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Integrative Multi-Omics Reveals Tissue-Specific Postharvest Changes in Blueberry Fruit — Romit Seth, Massimo Iorizzo, et al. · Journal of Agricultural and Food Chemistry (2026) | TGRS Research Map | TGRS