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[Bioinformatics analysis of safflower WD40 transcription factor family genes]. | LitMetric

AI Article Synopsis

  • The WD40 transcription factor family plays a crucial role in regulating plant growth and development, specifically in the synthesis of anthocyanins in safflower, a plant known for its flavonoid compounds.
  • In this study, researchers identified 40 members of the CtWD40 family in the safflower genome, classifying them into 7 subfamilies based on protein sequence and phylogenetic analysis.
  • The functional analysis revealed specific promoter elements and interaction predictions for CtWD40 proteins, with qRT-PCR showing varied expression patterns across different tissues and flowering periods, laying groundwork for future research on these genes.

Article Abstract

The WD40 transcription factor family is a gene superfamily widely found in eukaryotes, which is closely related to plant growth and development regulation. It has been reported that the WD40 transcription factor was involved in the synthesis of anthocyanins, which is one of the vital components of safflower flavonoid compounds. In this study, 40 CtWD40 members in the safflower genome were identified though bioinformatics tools and gene expression analysis methods. According to the WD40 protein sequence and phylogenetic characteristics of Arabidopsis and other plants, the safflower CtWD40 family was classified into 7 subfamilies. Conservative motif analysis was used to reveal the specific conserved motifs and gene structures of each subfamily member, and there exist a certain degree of similarities in the conserved motifs and gene structure between the closely related family members. Subsequently, the search for cis-acting elements of gene promoters found CtWD40-specific promoter elements, revealing the metabolic pathways which may involve. Next, enrichment of function analysis was employed to analyze the functional categories and cellular localization of the CtWD40 protein. Furthermore, the interactions between CtWD40 proteins predicted its potential regulatory function. Finally, 19 members of the safflower CtWD40 subfamily were analyzed by qRT-PCR, the result showed the expression patterns of these members were different in diverse tissue and flowering period. This study provides a basis for the functional and expression research of the CtWD40 genes.

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Source
http://dx.doi.org/10.19540/j.cnki.cjcmm.20200506.107DOI Listing

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