Genome-wide characterization of bZIP gene family identifies potential members involved in flavonoids biosynthesis in Ginkgo biloba L
Ginkgo biloba L. is an ancient relict plant with rich pharmacological activity and nutritional value, and its main physiologically active components are flavonoids and terpene lactones. The bZIP gene family is one of the largest gene families in plants and regulates many processes including pathogen...
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Veröffentlicht in: | Scientific reports 2021-12, Vol.11 (1), p.23420-23420, Article 23420 |
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Sprache: | eng |
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Zusammenfassung: | Ginkgo biloba
L. is an ancient relict plant with rich pharmacological activity and nutritional value, and its main physiologically active components are flavonoids and terpene lactones. The bZIP gene family is one of the largest gene families in plants and regulates many processes including pathogen defense, secondary metabolism, stress response, seed maturation, and flower development. In this study, genome-wide distribution of the bZIP transcription factors was screened from
G. biloba
database in silico analysis. A total of 40 bZIP genes were identified in
G. biloba
and were divided into 10 subclasses.
GbbZIP
members in the same group share a similar gene structure, number of introns and exons, and motif distribution. Analysis of tissue expression pattern based on transcriptome indicated that
GbbZIP08
and
GbbZIP15
were most highly expressed in mature leaf. And the expression level of
GbbZIP13
was high in all eight tissues. Correlation analysis and phylogenetic tree analysis suggested that
GbbZIP08
and
GbbZIP15
might be involved in the flavonoid biosynthesis. The transcriptional levels of 20 GbbZIP genes after SA, MeJA, and low temperature treatment were analyzed by qRT-PCR. The expression level of
GbbZIP08
was significantly upregulated under 4°C. Protein–protein interaction network analysis indicated that
GbbZIP09
might participate in seed germination by interacting with
GbbZIP32.
Based on transcriptome and degradome data, we found that 32 out of 117 miRNAs were annotated to 17 miRNA families. The results of this study may provide a theoretical foundation for the functional validation of GbbZIP genes in the future. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-021-02839-2 |