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RESEARCH REPORT
PHOSPHORYLETHANOLAMINE CYTIDYLYLTRANSFERASE 1 modulates flowering in a florigen-independent manner by regulating SVP
Hendry Susila, Zeeshan Nasim, Katarzyna Gawarecka, Ji-Yul Jung, Suhyun Jin, Geummin Youn, Ji Hoon Ahn
Development 2021 148: dev193870 doi: 10.1242/dev.193870 Published 6 January 2021
Hendry Susila
Department of Life Sciences, Korea University, Seoul 02841, South Korea
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Zeeshan Nasim
Department of Life Sciences, Korea University, Seoul 02841, South Korea
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Katarzyna Gawarecka
Department of Life Sciences, Korea University, Seoul 02841, South Korea
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Ji-Yul Jung
Department of Life Sciences, Korea University, Seoul 02841, South Korea
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Suhyun Jin
Department of Life Sciences, Korea University, Seoul 02841, South Korea
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Geummin Youn
Department of Life Sciences, Korea University, Seoul 02841, South Korea
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Ji Hoon Ahn
Department of Life Sciences, Korea University, Seoul 02841, South Korea
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  • For correspondence: jahn@korea.ac.kr

Handling Editor: Ykä Helariutta

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ABSTRACT

PHOSPHORYLETHANOLAMINE CYTIDYLYLTRANSFERASE 1 (PECT1) regulates phosphatidylethanolamine biosynthesis and controls the phosphatidylethanolamine:phosphatidylcholine ratio in Arabidopsis thaliana. Previous studies have suggested that PECT1 regulates flowering time by modulating the interaction between phosphatidylcholine and FLOWERING LOCUS T (FT), a florigen, in the shoot apical meristem (SAM). Here, we show that knockdown of PECT1 by artificial microRNA in the SAM (pFD::amiR-PECT1) accelerated flowering under inductive and even non-inductive conditions, in which FT transcription is almost absent, and in ft-10 twin sister of ft-1 double mutants under both conditions. Transcriptome analyses suggested that PECT1 affects flowering by regulating SHORT VEGETATIVE PHASE (SVP) and GIBBERELLIN 20 OXIDASE 2 (GA20ox2). SVP misexpression in the SAM suppressed the early flowering of pFD::amiR-PECT1 plants. pFD::amiR-PECT1 plants showed increased gibberellin (GA) levels in the SAM, concomitant with the reduction of REPRESSOR OF GA1-3 levels. Consistent with this, GA treatment had little effect on flowering time of pFD::amiR-PECT1 plants and the GA antagonist paclobutrazol strongly affected flowering in these plants. Together, these results suggest that PECT1 also regulates flowering time through a florigen-independent pathway, modulating SVP expression and thus regulating GA production.

Footnotes

  • Competing interests

    The authors declare no competing or financial interests.

  • Author contributions

    Conceptualization: H.S., J.H.A.; Methodology: H.S.; Software: Z.N.; Formal analysis: H.S., S.J., G.Y.; Investigation: H.S., K.G., J.-Y.J.; Writing - original draft: H.S., J.H.A.; Writing - review & editing: H.S., Z.N., J.H.A.; Supervision: H.S., J.H.A.; Project administration: J.H.A.; Funding acquisition: J.H.A.

  • Funding

    This work was supported by a National Research Foundation of Korea grant funded by the Korean government (NRF-2017R1A2B3009624 to J.H.A.) and Samsung Science and Technology Foundation (SSTF-BA1602-12 to J.H.A.).

  • Data availability

    The raw RNA-sequencing data are available at NCBI under accession number GSE147212.

  • Supplementary information

    Supplementary information available online at https://dev.biologists.org/lookup/doi/10.1242/dev.193870.supplemental

  • Received June 15, 2020.
  • Accepted November 23, 2020.
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Keywords

  • Flowering
  • PECT1
  • SVP
  • GA20ox2
  • Gibberellin
  • Florigen
  • Arabidopsis

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RESEARCH REPORT
PHOSPHORYLETHANOLAMINE CYTIDYLYLTRANSFERASE 1 modulates flowering in a florigen-independent manner by regulating SVP
Hendry Susila, Zeeshan Nasim, Katarzyna Gawarecka, Ji-Yul Jung, Suhyun Jin, Geummin Youn, Ji Hoon Ahn
Development 2021 148: dev193870 doi: 10.1242/dev.193870 Published 6 January 2021
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RESEARCH REPORT
PHOSPHORYLETHANOLAMINE CYTIDYLYLTRANSFERASE 1 modulates flowering in a florigen-independent manner by regulating SVP
Hendry Susila, Zeeshan Nasim, Katarzyna Gawarecka, Ji-Yul Jung, Suhyun Jin, Geummin Youn, Ji Hoon Ahn
Development 2021 148: dev193870 doi: 10.1242/dev.193870 Published 6 January 2021

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