Journal of the American Society for Horticultural Science (Mar 2021)

Comprehensive Transcriptome and Metabolome Analysis of Lithocarpus polystachyus Leaf Revealed Key Genes in Flavonoid Biosynthesis Pathways

  • Kai-Xiang Li,
  • Kai Liu,
  • Yingying Chen,
  • Xiaolu Huang,
  • Wenhui Liang,
  • Baocai Li,
  • Yingbai Shen,
  • Haiying Liang

DOI
https://doi.org/10.21273/JASHS05020-20
Journal volume & issue
Vol. 146, no. 3
pp. 147 – 157

Abstract

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Lithocarpus polystachyus is a unique medicinal tree species that is valued for its abundant flavonoids in leaves. Currently, genes and metabolites involved in the flavonoid biosynthesis pathway remain largely unknown. To elucidate the flavonoid biosynthesis pathways, transcriptome and metabolome analyses of young, mature, and old leaves were conducted. A total of 86,927 unigenes were obtained, and 51.4% of them were annotated in eight public databases. The majority of the 44 candidate genes in the flavonoid biosynthesis pathway were downregulated as leaves aged. Metabolome profiling revealed a set of 427 metabolites in leaves. Consistent with the transcriptome results, 15 of the 19 metabolites in the flavonoid pathway decreased during the development of leaves. The data indicate that young leaf is the optimal stage for tea harvest. This is the first report of integrated transcriptome and metabolome profiling of L. polystachyus. This study demonstrates the correlation of gene expression and metabolites related to flavonoid biosynthesis and reveals the key genes responsible for flavonoid accumulation in young leaf. The information can be applied to future studies performed to elucidate and manipulate flavonoid biosynthesis in L. polystachyus.

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