Understanding of MYB Transcription Factors Involved in Glucosinolate Biosynthesis in Brassicaceae.

Mi-Suk Seo, Jung Sun Kim

Journal: Molecules (Basel, Switzerland) 2019;22(9):1549

PMID: 28906468

Abstract

Glucosinolates (GSLs) are widely known secondary metabolites that have anticarcinogenic and antioxidative activities in humans and defense roles in plants of the Brassicaceae family. Some R2R3-type MYB (myeloblastosis) transcription factors (TFs) control GSL biosynthesis in . However, studies on the MYB TFs involved in GSL biosynthesis in species are limited because of the complexity of the genome, which includes an increased number of paralog genes as a result of genome duplication. The recent completion of the genome sequencing of the species permits the identification of MYB TFs involved in GSL biosynthesis by comparative genome analysis with . In this review, we describe various findings on the regulation of GSL biosynthesis in Brassicaceae. Furthermore, we identify 63 orthologous copies corresponding to five MYB TFs from , except MYB76 in species. Fifty-five MYB TFs from the species possess a conserved amino acid sequence in their R2R3 MYB DNA-binding domain, and share close evolutionary relationships. Our analysis will provide useful information on the 55 MYB TFs involved in the regulation of GSL biosynthesis in species, which have a polyploid genome.

Address: Genomics Division, Department of Agricultural Bio-Resources, National Institute of Agricultural Sciences, Rural Development Administration, Wansan-gu, Jeonju 54874, Korea. [email protected].; Genomics Division, Department of Agricultural Bio-Resources, National Institute of Agricultural Sciences, Rural Development Administration, Wansan-gu, Jeonju 54874, Korea. [email protected].
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