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Transcriptome Analysis Reveals Putative Target Genes of During Early Floral Development in L. | LitMetric

AI Article Synopsis

  • Petal identity is linked to the APETALA3 (AP3) gene lineage, but it’s unclear how this gene network is conserved across different species with petals from various evolutionary backgrounds.
  • This study explored the gene regulatory network related to petals in the Ranunculaceae family by analyzing the gene expression differences between wild-type and mutant plants at early developmental stages.
  • Findings indicated that, despite different evolutionary origins, a small group of conserved genes is involved in determining petal identity and development across both Ranunculaceae and core eudicots.

Article Abstract

Even though petals are homoplastic structures, their identity consistently involves genes of the APETALA3 (AP3) lineage. However, the extent to which the networks downstream of AP3 are conserved in species with petals of different evolutionary origins is unknown. In Ranunculaceae, the specificity of the AP3-III lineage offers a great opportunity to identify the petal gene regulatory network in a comparative framework. Using a transcriptomic approach, we investigated putative target genes of the AP3-III ortholog NdAP3-3 in at early developmental stages when petal identity is determined, and we compared our data with that from selected eudicot species. We generated a reference transcriptome to carry out a differential gene expression analysis between the wild-type and mutant genotypes differing by the presence vs. absence of petals at early stages of floral development. Among the 1,620 genes that were significantly differentially expressed between the two genotypes, functional annotation suggested a large involvement of nuclear activities, including regulation of transcription, and enrichment in processes linked to cell proliferation. Comparing with data, we found that highly conserved genes between the two species are enriched in homologs of direct targets of the AtAP3 protein. Integrating AP3-3 binding site data from another Ranunculaceae species, , allowed us to identify a set of 18 putative target genes that were conserved between the three species. Our results suggest that, despite the independent evolutionary origin of petals in core eudicots and Ranunculaceae, a small conserved set of genes determines petal identity and early development in these taxa.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8212990PMC
http://dx.doi.org/10.3389/fpls.2021.660803DOI Listing

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