4.7 Article

Metabolome and transcriptome analyses reveal chlorophyll and anthocyanin metabolism pathway associated with cucumber fruit skin color

Journal

BMC PLANT BIOLOGY
Volume 20, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s12870-020-02597-9

Keywords

Cucumis sativusL; Metabolome; RNA-Seq; Chlorophyll; Anthocyanin

Categories

Funding

  1. National Key Research and Development Program [2018YFD0100700]
  2. Natural Science Foundation of Guangdong Province [2018A030310196]
  3. Special Fund for Agro-scientific Research in the Public Interest [201503110-07]
  4. Presidential foundation of Guangdong Academy of Agricultural Sciences [201813]
  5. Special fund for scientific innovation strategy-construction of high level Academy of Agriculture Science [R2019YJ-YB3004]
  6. Science and Technology Program of Guangdong [2020B020220001]
  7. Special funds for agricultural industry development of Guangzhou [1710023]
  8. Key laboratory open fund project of Vegetable Institution of GAAS [201701]
  9. Discipline team building projects of Guangdong Academy of Agricultural Sciences in the 13th Five-Year Period

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Background Fruit skin color play important role in commercial value of cucumber, which is mainly determined by the content and composition of chlorophyll and anthocyanins. Therefore, understanding the related genes and metabolomics involved in composition of fruit skin color is essential for cucumber quality and commodity value. Results The results showed that chlorophyll a, chlorophyll b and carotenoid content in fruit skin were higher in Lv (dark green skin) than Bai (light green skin) on fruit skin. Cytological observation showed more chloroplast existed in fruit skin cells of Lv. A total of 162 significantly different metabolites were found between the fruit skin of the two genotypes by metabolome analysis, including 40 flavones, 9 flavanones, 8 flavonols, 6 anthocyanins, and other compounds. Crucial anthocyanins and flavonols for fruit skin color, were detected significantly decreased in fruit skin of Bai compared with Lv. By RNA-seq assay, 4516 differentially expressed genes (DEGs) were identified between two cultivars. Further analyses suggested that low expression level of chlorophyll biosynthetic genes, such aschlM,porandNOLcaused less chlorophylls or chloroplast in fruit skin of Bai. Meanwhile, a predicted regulatory network of anthocyanin biosynthesis was established to illustrate involving many DEGs, especially4CL,CHSandUFGT. Conclusions This study uncovered significant differences between two cucumber genotypes with different fruit color using metabolome and RNA-seq analysis. We lay a foundation to understand molecular regulation mechanism on formation of cucumber skin color, by exploring valuable genes, which is helpful for cucumber breeding and improvement on fruit skin color.

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