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September 10, 2025Plant and Cell Physiology1 citations

Integration of signals inducing reproductive phase transition occurs at the nodal enlarged vascular bundles in sacred lotus, Nelumbo nucifera

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RWRyusei WaizumiSIShizuko IchinoseMIMisaki Inoue

Key Points

  • The study identifies the critical role of enlarged vascular bundles in regulating reproductive phase transitions in sacred lotus.
  • Expression dynamics of FT/TFL1 genes, specifically NnFT2 and NnFT3, correlate with phase transitions in underground tissues.
  • Transgenic assays using Arabidopsis highlight candidate genes that might influence clonal reproduction in lotus.
  • Histological observations suggest that unique tissue structures facilitate the regulation of flowering and rhizome swelling.

Abstract

Abstract Sacred lotus (Nelumbo nucifera) is a perennial aquatic plant classified into basal eudicots, propagating through both sexual (flowering) and vegetative (clonal) reproduction. In lotus, the transition from sexual to clonal reproductive phases (swelled rhizome formation) is induced by short-day photoperiods, but the molecular mechanism remains unclear. Recent studies have shown that signals inducing reproductive phase transitions, such as flowering and storage organ formation, are integrated into the regulation of FLOWERING LOCUS T/ TERMINAL FLOWER 1 (FT/TFL1) family gene expression. Elucidating the expression dynamics of lotus FT/TFL1 genes is expected to deepen our understanding of the molecular mechanisms underlying different reproductive modes. In this study, we identified candidate FT/TFL1 genes involved in growth phase transition in lotus through spatiotemporal expression analyses and transgenic assays using Arabidopsis. Interestingly, clear correlations between the phase transition and expression changes of putative inducers of flowering and rhizome swelling, NnFT2 and NnFT3, were observed not in leaves, but in underground tissues, including nodes and internodes of the rhizome. NnBFT1, a putative floral inhibitor in lotus, may mediate the transition from sexual to clonal reproduction by suppressing floral development through short-day responsive upregulation. Furthermore, histological observations revealed that lotus possesses enlarged vascular bundles within its nodes, similar to those reported only in some species of monocots. Our results suggest that this distinctive tissue is where the crucial regulation of FT/TFL1 gene expression occurs. This study sheds light on the unique mechanism of reproductive phase transition in lotus and the novel function of nodes in plant propagation.

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Cite This Study

Waizumi et al. (2025) studied this question.

synapsesocial.com/papers/68c1a8fe54b1d3bfb60e1c36https://doi.org/10.1093/pcp/pcaf088
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