Insights into the Organic Acid and Flavonoid Metabolisms in Moderately Withered Blueberries Based on Metabolomics and Transcriptomics

Author:

Yang Qin,Zhang Qi,Huang Shu-Qin,Bian Chen,Huang Ya-Qiong,Zhao Lu-Lu,Bi Hai-Jun,Chen Qi,Gao Xueling,Wang Yu

Publisher

Elsevier BV

Reference33 articles.

1. VaccDscaff2-augustus-320.20 and VaccDscaff25augustus-316.26) were significantly upregulated (Fig. 3). To reveal the correlation between differentially regulated metabolites (DRMs) involved in this pathway and DEGs, a screening criterion with Pearson Correlation Coefficient (PCC) absolute values ? 0.8 and p < 0.05 was used to construct a network between DEGs and DRMs. As shown in Fig. S8, six phenolic acid compounds were associated with nineteen genes;Lin;particularly, three VcCAD genes,2020

2. Phenol compound metabolism and gene expression in the skin of wine grape (Vitis vinifera L.) berries subjected to partial postharvest dehydration;Y Bai;Journal of Food Composition and Analysis,2012

3. Postharvest dehydration temperature modulates the transcriptomic programme and flavonoid profile of grape berries;K Chen;Foods,2021

4. Pichia galeiformis induces resistance in postharvest citrus by activating the phenylpropanoid biosynthesis pathway;O Chen;Journal of Agricultural and Food Chemistry,2021

5. Postharvest dehydration induces variable changes in the primary metabolism of grape berries;A Conde;Food Research International,2018

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