Genome wide analysis of MADS-box gene family in Brassica oleracea reveals conservation and variation in flower development

BMC Plant Biol. 2019 Mar 19;19(1):106. doi: 10.1186/s12870-019-1717-y.

Abstract

Background: MADS-box genes play important roles in vegetative growth and reproductive development and are essential for the correct development of plants (particularly inflorescences, flowers, and fruits). However, this gene family has not been identified nor their functions analyzed in Brassica oleracea.

Results: In this study, we performed a whole-genome survey of the complete set of MADS-box genes in B. oleracea. In total, 91 MADS-box transcription factors (TFs) were identified and categorized as type I (Mα, Mβ, Mγ) and type II (MIKCC, MIKC*) groups according to the phylogeny and gene structure analysis. Among these genes, 59 were randomly distributed on 9 chromosomes, while the other 23 were assigned to 19 scaffolds and 9 genes from NCBI had no location information. Both RNA-sequencing and quantitative real-time-PCR analysis suggested that MIKC genes had more active and complex expression patterns than M type genes and most type II genes showed high flowering-related expression profiles. Additional quantitative real-time-PCR analysis of pedicel and four flower whorls revealed that the structure of the B.oleracea MIKC genes was conserved, but their homologues showed variable expression patterns compared to those in Arabidopsis thaliana.

Conclusion: This paper gives a detailed overview of the BolMADS genes and their expression patterns. The results obtained in this study provide useful information for understanding the molecular regulation of flower development and further functional characterization of MADS-box genes in B. oleracea.

Keywords: Brassica oleracea; Expression patterns; Flower development; MADS-box genes; Phylogenetic analysis.

MeSH terms

  • Brassica / genetics*
  • Brassica / growth & development
  • Brassica / metabolism
  • Chromosomes, Plant
  • Flowers / growth & development*
  • Flowers / metabolism
  • Genome, Plant*
  • MADS Domain Proteins / genetics*
  • MADS Domain Proteins / metabolism
  • Phylogeny

Substances

  • MADS Domain Proteins