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De novo transcriptome sequence of Senna tora provides insights into anthraquinone biosynthesis.
Kang, Sang-Ho; Lee, Woo-Haeng; Lee, Chang-Muk; Sim, Joon-Soo; Won, So Youn; Han, So-Ra; Kwon, Soo-Jin; Kim, Jung Sun; Kim, Chang-Kug; Oh, Tae-Jin.
Afiliação
  • Kang SH; Genomics Division, National Institute of Agricultural Sciences, RDA, Jeonju, Korea.
  • Lee WH; Department of Life Science and Biochemical Engineering, SunMoon University, Asan, Korea.
  • Lee CM; Metabolic Engineering Division, National Institute of Agricultural Sciences, RDA, Jeonju, Korea.
  • Sim JS; Metabolic Engineering Division, National Institute of Agricultural Sciences, RDA, Jeonju, Korea.
  • Won SY; Genomics Division, National Institute of Agricultural Sciences, RDA, Jeonju, Korea.
  • Han SR; Department of Life Science and Biochemical Engineering, SunMoon University, Asan, Korea.
  • Kwon SJ; Genomics Division, National Institute of Agricultural Sciences, RDA, Jeonju, Korea.
  • Kim JS; Genomics Division, National Institute of Agricultural Sciences, RDA, Jeonju, Korea.
  • Kim CK; Genomics Division, National Institute of Agricultural Sciences, RDA, Jeonju, Korea.
  • Oh TJ; Department of Life Science and Biochemical Engineering, SunMoon University, Asan, Korea.
PLoS One ; 15(5): e0225564, 2020.
Article em En | MEDLINE | ID: mdl-32380515
ABSTRACT
Senna tora is an annual herb with rich source of anthraquinones that have tremendous pharmacological properties. However, there is little mention of genetic information for this species, especially regarding the biosynthetic pathways of anthraquinones. To understand the key genes and regulatory mechanism of anthraquinone biosynthesis pathways, we performed spatial and temporal transcriptome sequencing of S. tora using short RNA sequencing (RNA-Seq) and long-read isoform sequencing (Iso-Seq) technologies, and generated two unigene sets composed of 118,635 and 39,364, respectively. A comprehensive functional annotation and classification with multiple public databases identified array of genes involved in major secondary metabolite biosynthesis pathways and important transcription factor (TF) families (MYB, MYB-related, AP2/ERF, C2C2-YABBY, and bHLH). Differential expression analysis indicated that the expression level of genes involved in anthraquinone biosynthetic pathway regulates differently depending on the degree of tissues and seeds development. Furthermore, we identified that the amount of anthraquinone compounds were greater in late seeds than early ones. In conclusion, these results provide a rich resource for understanding the anthraquinone metabolism in S. tora.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Sementes / Extrato de Senna / Antraquinonas / Senna / Transcriptoma Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Sementes / Extrato de Senna / Antraquinonas / Senna / Transcriptoma Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2020 Tipo de documento: Article