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Combined Metabolome and Transcriptome Profiling Reveal Optimal Harvest Strategy Model Based on Different Production Purposes in Olive

机译:组合代谢物和转录组分析揭示了基于不同生产目的的最佳收获策略模型

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摘要

Olive oil has been favored as high-quality edible oil because it contains balanced fatty acids (FAs) and high levels of minor components. The contents of FAs and minor components are variable in olive fruits of different color at harvest time, which render it difficult to determine the optimal harvest strategy for olive oil producing. Here, we combined metabolome, Pacbio Iso-seq, and Illumina RNA-seq transcriptome to investigate the association between metabolites and gene expression of olive fruits at harvest time. A total of 34 FAs, 12 minor components, and 181 other metabolites (including organic acids, polyols, amino acids, and sugars) were identified in this study. Moreover, we proposed optimal olive harvesting strategy models based on different production purposes. In addition, we used the combined Pacbio Iso-seq and Illumina RNA-seq gene expression data to identify genes related to the biosynthetic pathways of hydroxytyrosol and oleuropein. These data lay the foundation for future investigations of olive fruit metabolism and gene expression patterns, and provide a method to obtain olive harvesting strategies for different production purposes.
机译:橄榄油已受到高质量的食用油,因为它含有平衡的脂肪酸(FAS)和高水平的次要组件。 FAS和次要组分的含量在收获时间的不同颜色的橄榄果实中是可变的,这使得难以确定橄榄油产生的最佳收获策略。在此,我们组合代谢物,PACBIO ISO-SEQ和Illumina RNA-SEQ转录组,以研究收获时间在橄榄果实中代谢物和基因表达的关系。在本研究中,共鉴定了总共34个Fas,12个次要成分和181个其他代谢物(包括有机酸,多元醇,氨基酸和糖)。此外,我们提出了基于不同生产目的的最佳橄榄收获策略模型。此外,我们使用组合的PACBIO ISO-SEQ和Illumina RNA-SEQ基因表达数据来识别与羟基吡咯和油孔素的生物合成途径有关的基因。这些数据奠定了未来对橄榄果实代谢和基因表达模式的研究的基础,并提供了一种以不同的生产目的获得橄榄收获策略的方法。

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