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Lipids are vital cellular components with structural, storage, signaling, and defensive functions, and lipid metabolism is critical for strawberry quality. However, the regulatory mechanism underlying lipid metabolism during strawberry development and ripening remains unclear. Although LEAFY COTY...

2026-04-22 | MTBLS14120 | MetaboLights
Fragaria vesca, a diploid woodland strawberry with a small and sequenced genome, is an excellent model for studying fruit development. The strawberry fruit is unique in that the edible flesh is actually enlarged receptacle tissue. The true fruit are the numerous dry achenes dotting the receptacleM-^...
ORGANISM(S): Fragaria vesca 
Protein lysine acetylation is a reversible and dynamic post-translational modification. It plays an important role in regulating diverse cellular processes including chromatin dynamic, metabolic pathways and transcription in both prokaryotes and eukaryotes. Although studies of lysine acetylome on pl...
ORGANISM(S): Strawberry leafy fruit phytoplasma 
2015-10-14 | PXD002758 | Pride
To determine the effect of different temperature on strawberry after harvest, physiological indicator analysis and proteomics analysis were conducted on ripened strawberry (‘Sweet Charlie’) fruit stored at 4 °C, 23 °C, and 37 °C (±2) for 10 or 20 days. Results showed that 4 °C maintained a better vi...
ORGANISM(S): Fragaria x ananassa 
2022-02-07 | PXD030184 | Pride
The aim of this study was to determine the role of genes encoding polygalacturonases in strawberry fruit softening. To this purpose, several transgenic lines, cv. Chandler, were generated: plants with PG genes FaPG1 or FaPG2 downregulated, alone or in combination, by antisense transformation. Plants...
ORGANISM(S): Fragaria x ananassa 
The study assigns a key regulatory role of FaGAMYB in the initiation of strawberry receptacle ripening and acting upstream of the known regulator ABA. Down-regulation of FaGAMYB caused an arrest in the ripening of receptacle and inhibited colour formation. Consistent with this, several transcription...
ORGANISM(S): Fragaria x ananassa 

This study identifies drought-responsive differential metabolites in two strawberry cultivars ('Benihoppe' and 'Kaorino') via metabolomics, uncovering their genotype-specific metabolic mechanisms of drought tolerance. It provides metabolic-level evidence for breeding drought-resistant strawberrie...

2025-11-22 | MTBLS13366 | MetaboLights
This study investigates the molecular mechanisms of cold stress tolerance in two strawberry cultivars: ‘Queen Elisa,’ a highly cold-tolerant variety, and ‘Camarosa,’ a semi-sensitive variety. Using RNA-Seq analysis, we identified key genes and pathways involved in the cold stress response, providing...
ORGANISM(S): Fragaria x ananassa 
In plants, microRNAs (miRNAs) play a critical role in post-transcriptional gene regulation and have been shown to control many genes involved in various biological and metabolic processes. Deep sequencing technologies have facilitated identification of species-specific or lowly expressed as well as...
ORGANISM(S): Fragaria x ananassa 
To identify miRNAs involved in senescence of strawberry fruit, two independent small RNA libraries and one degradome library from strawberry fruits stored at 20 M-BM-0C for 0 and 24 h were constructed. A total of 18,759,735 and 20,293,492 mappable small RNA sequences were generated in the two small...
ORGANISM(S): Fragaria x ananassa 
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