Frontiers in Plant Science (Sep 2020)

Comparative Genomics of Spatholobus suberectus and Insight Into Flavonoid Biosynthesis

  • Shuangshuang Qin,
  • Shuangshuang Qin,
  • Kunhua Wei,
  • Zhanhu Cui,
  • Ying Liang,
  • Mingjie Li,
  • Li Gu,
  • Chuyun Yang,
  • Xiaolei Zhou,
  • Linxuan Li,
  • Wei Xu,
  • Can Liu,
  • Jianhua Miao,
  • Zhongyi Zhang,
  • Zhongyi Zhang

DOI
https://doi.org/10.3389/fpls.2020.528108
Journal volume & issue
Vol. 11

Abstract

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Spatholobus suberectus Dunn (S. suberectus), has been widely used in traditional medicines plant source of the Leguminosae family. Its vine stem of which plays an important role in the prevention and treatment of various diseases because it contains various flavonoids. Comparative genome analysis suggested well-conserved genomic components and genetic collinearity between the genome of S. suberectus and other genera of Leguminosae such as Glycine max. We discovered two whole genome duplications (WGD) events in S. suberectus and G. max lineage underwent a WGD after speciation from S. suberectus. The determination of expansion and contractions of orthologous gene families revealed 1,001 expanded gene families and 3,649 contracted gene families in the S. suberectus lineage. Comparing to the model plants, many novel flavonoid biosynthesis-related genes were predicted in the genome of S. suberectus, and the expression patterns of these genes in the roots are similar to those in the stems [such as the isoflavone synthase (IFS) genes]. The expansion of IFS from a single copy in the Leguminosae ancestor to four copies in S. suberectus, will accelerate the biosynthesis of flavonoids. MYB genes are widely involved in plant flavonoid biosynthesis and the most abundant member of the TF family in S. suberectus. Activated retrotransponson positive regulates the accumulation of flavonoid in S. suberectus by introducing the cis-elements of tissue-specific expressed MYBs. Our study not only provides significant insight into the evolution of specific flavonoid biosynthetic pathways in S. suberectus, but also would facilitate the development of tools for enhancing bioactive productivity by metabolic engineering in microbes or by molecular breeding for alleviating resource shortage of S. suberectus.

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