AgFNS overexpression increase apigenin and decrease anthocyanins in petioles of transgenic celery

Plant Sci. 2017 Oct:263:31-38. doi: 10.1016/j.plantsci.2017.07.001. Epub 2017 Jul 11.

Abstract

Apigenin and anthocyanin biosyntheses share common precursors in plants. Flavone synthase (FNS) converts naringenin into apigenin in higher plants. Celery is an important edible and medical vegetable crop that contains apigenin in its tissues. However, the effect of high AgFNS gene expression on the apigenin and anthocyanins contents of purple celery remains to be elucidated. In this study, the AgFNS gene was cloned from purple celery ('Nanxuan liuhe purple celery') and overexpressed in this purple celery to determine its influence on anthocyanins and apigenin contents. Results showed that the AgFNS gene was 1068bp, which encodes 355 amino acid residues. Evolution analysis showed that the AgFNS protein belongs to the FSN I type. In AgFNS transgenic celery, the anthocyanins content in petioles was lower than that wild-type celery plants. Apigenin content increased in the petioles of AgFNS transgenic celery. The transcript levels of the AgPAL, AgC4H, AgCHS, and AgCHI genes were up-regulated, whereas those of the AgF3H, AgF3'H, AgDFR, AgANS, and Ag3GT genes were down-regulated in the petioles of AgFNS transgenic plants compared with wild-type celery plants. This work provides basic knowledge about the function of the AgFNS gene in the anthocyanin and apigenin biosyntheses of celery.

Keywords: AgFNS; Anthocyanins; Apigenin; Celery; Petiole; Transgene.

MeSH terms

  • Amino Acid Sequence
  • Anthocyanins / biosynthesis*
  • Apigenin / biosynthesis*
  • Apium / genetics*
  • Apium / metabolism
  • Flavanones / metabolism
  • Gene Expression
  • Plant Proteins / genetics
  • Plant Proteins / metabolism
  • Plants, Genetically Modified
  • Sequence Alignment

Substances

  • Anthocyanins
  • Flavanones
  • Plant Proteins
  • Apigenin
  • naringenin