Evidence map›Paper›PMID 39981043›Full record

ArticlePeerJ2025

Integrated transcriptome and metabolome analyses reveal the differentially expressed metabolites and genes involved in lipid in olive fruits.

Jipeng Qu, Zhou Xu, Zhengsong Peng, Zhenyong Chen, Tao Chen, Chunbang Ding

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Article in PeerJ, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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4 · The record

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5 · Who and what money

Authors and funding

6 authors.

Jipeng QuPanxi Crops Research and Utilization Key Laboratory of Sichuan Province, Xichang University, Xichang, Sichuan, China.
Zhou XuPanxi Crops Research and Utilization Key Laboratory of Sichuan Province, Xichang University, Xichang, Sichuan, China.
Zhengsong PengPanxi Crops Research and Utilization Key Laboratory of Sichuan Province, Xichang University, Xichang, Sichuan, China.
Zhenyong ChenKey Laboratory of Southwest China Wildlife Resources Conservation (Ministry of Education), College of Life Science, China West Normal University, Nanchong, Sichuan, China.
Tao ChenCollege of Life Sciences, Sichuan Agricultural University, Yaan, Sichuan, China.
Chunbang DingCollege of Life Sciences, Sichuan Agricultural University, Yaan, Sichuan, China.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

Background: Olive ( Methods: To investigate the molecular mechanism involved in lipid synthesis and metabolism, untargeted metabolome and RNA-Seq analyses were performed based on two varieties of olive fruits, Results: Totally, 38 lipid compounds of 375 differentially accumulated metabolites (DAMs) were identified in JZ and KLD fruits, with 24 metabolites showing higher contents in KLD than those in JZ. Integrated transcriptome and metabolome analyses identified 48 differentially expressed genes (DEGs) associated with six lipid DAMs from JZ and KLD fruits. The contents of decanoic acid, sphinganine, and leukotriene D4 in KLD fruits were 2.33, 1.91, and 1.53 times greater than that of JZ fruits, respectively. In particular, two BCCP, one ACC, seven KAR, one EAR, one FATA and one SPT genes were observed involving to the content and quality of lipids in olive fruits. These DEGs were associated with the pathways of fatty acid biosynthesis, arachidonic acid metabolism, and limonene degradation. This study provides a strong theoretical and experimental foundation for further revealing the molecular mechanisms regulating lipid synthesis and metabolism in different olive cultivars.

Indexed as

FruitLipid MetabolismLipidsMetabolomeOleaTranscriptomeGene Expression ProfilingGene Expression Regulation, PlantOlive OilLipidsOlive OilDifferentially accumulated metaboliteDifferentially expressed geneLipid compundMetabolic pathwayOlea europaea

Identifiers

PMID39981043
PMCPMC11841613

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