4.7 Article

Transcriptomic Analysis Suggests Auxin Regulation in Dorsal-Ventral Petal Asymmetry of Wild Progenitor Sinningia speciosa

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出版社

MDPI
DOI: 10.3390/ijms23042073

关键词

auxin; cell growth; floral symmetry; petal pigmentation; petal size

资金

  1. Ministry of Science and Technology, Taiwan [MOST 103-2313-B-002-004-MY3, 106-2313-B-002-035-MY3, 110-2311-B-002-019]

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The establishment of dorsal-ventral petal asymmetry in Sinningia speciosa is regulated by genes involved in flower symmetry, particularly CYCLOIDEA (SsCYC), and the auxin signaling pathway. The upregulation of these genes in dorsal petals correlates with a higher auxin level, cell expansion, and a purple color. However, SsCYC may not directly activate auxin regulation.
The establishment of dorsal-ventral (DV) petal asymmetry is accompanied by differential growth of DV petal size, shape, and color differences, which enhance ornamental values. Genes involved in flower symmetry in Sinningia speciosa have been identified as CYCLOIDEA (SsCYC), but which gene regulatory network (GRN) is associated with SsCYC to establish DV petal asymmetry is still unknown. To uncover the GRN of DV petal asymmetry, we identified 630 DV differentially expressed genes (DV-DEGs) from the RNA-Seq of dorsal and ventral petals in the wild progenitor, S. speciosa 'ES'. Validated by qRT-PCR, genes in the auxin signaling transduction pathway, SsCYC, and a major regulator of anthocyanin biosynthesis were upregulated in dorsal petals. These genes correlated with a higher endogenous auxin level in dorsal petals, with longer tube length growth through cell expansion and a purple dorsal color. Over-expression of SsCYC in Nicotiana reduced petal size by regulating cell growth, suggesting that SsCYC also controls cell expansion. This suggests that auxin and SsCYC both regulate DV petal asymmetry. Transiently over-expressed SsCYC, however, could not activate most major auxin signaling genes, suggesting that SsCYC may not trigger auxin regulation. Whether auxin can activate SsCYC or whether they act independently to regulate DV petal asymmetry remains to be explored in the future.

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