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1
ODORANT1 regulates fragrance biosynthesis in petunia flowers.
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3
Circadian clock gene LATE ELONGATED HYPOCOTYL directly regulates the timing of floral scent emission in Petunia.
Proc Natl Acad Sci U S A. 2015 Aug 4;112(31):9775-80. doi: 10.1073/pnas.1422875112. Epub 2015 Jun 29.
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ODORANT1 targets multiple metabolic networks in petunia flowers.
Plant J. 2022 Mar;109(5):1134-1151. doi: 10.1111/tpj.15618. Epub 2021 Dec 27.
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A model for combinatorial regulation of the petunia R2R3-MYB transcription factor ODORANT1.
Plant Signal Behav. 2012 Apr;7(4):518-20. doi: 10.4161/psb.19311. Epub 2012 Apr 1.
7
PhERF6, interacting with EOBI, negatively regulates fragrance biosynthesis in petunia flowers.
New Phytol. 2017 Sep;215(4):1490-1502. doi: 10.1111/nph.14675. Epub 2017 Jul 4.
8
PhDAHP1 is required for floral volatile benzenoid/phenylpropanoid biosynthesis in Petunia × hybrida cv 'Mitchell Diploid'.
Phytochemistry. 2014 Jul;103:22-31. doi: 10.1016/j.phytochem.2014.04.004. Epub 2014 May 6.
9
Regulation of volatile benzenoid biosynthesis in petunia flowers.
Trends Plant Sci. 2006 Jan;11(1):20-5. doi: 10.1016/j.tplants.2005.09.009. Epub 2005 Oct 12.

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Can -Regulatory Elements Explain Differences in Pollination Syndromes?
Genes (Basel). 2025 Aug 15;16(8):963. doi: 10.3390/genes16080963.
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Research advances in regulation and genetic engineering of floral scents.
Plant Biotechnol (Tokyo). 2024 Jun 25;41(2):103-110. doi: 10.5511/plantbiotechnology.24.0312a.
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Floral volatile benzenoids/phenylpropanoids: biosynthetic pathway, regulation and ecological value.
Hortic Res. 2024 Aug 12;11(10):uhae220. doi: 10.1093/hr/uhae220. eCollection 2024 Oct.
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Petunia PHYTOCHROME INTERACTING FACTOR 4/5 transcriptionally activates key regulators of floral scent.
Plant Mol Biol. 2024 May 30;114(3):66. doi: 10.1007/s11103-024-01455-8.
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Induction of volatile organic compounds in chrysanthemum plants following infection by Rhizoctonia solani.
PLoS One. 2024 May 2;19(5):e0302541. doi: 10.1371/journal.pone.0302541. eCollection 2024.
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Petunia as a model for MYB transcription factor action under salt stress.
Front Plant Sci. 2023 Dec 8;14:1286547. doi: 10.3389/fpls.2023.1286547. eCollection 2023.
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Integrative analysis of non-targeted metabolome and transcriptome reveals the mechanism of volatile formation in pepper fruit.
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3
Turnover of Anthocyanins and Tissue Compartmentation of Anthocyanin Biosynthesis in Flowers of Petunia hybrida.
J Plant Physiol. 1984 Jun;115(1):29-37. doi: 10.1016/S0176-1617(84)80048-6. Epub 2012 Feb 20.
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Dissection of floral pollination syndromes in Petunia.
Genetics. 2004 Nov;168(3):1585-99. doi: 10.1534/genetics.104.031138.
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Control of plant trichome development by a cotton fiber MYB gene.
Plant Cell. 2004 Sep;16(9):2323-34. doi: 10.1105/tpc.104.024844. Epub 2004 Aug 17.
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Understanding in vivo benzenoid metabolism in petunia petal tissue.
Plant Physiol. 2004 Aug;135(4):1993-2011. doi: 10.1104/pp.104.045468. Epub 2004 Jul 30.
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Differential timing of spider mite-induced direct and indirect defenses in tomato plants.
Plant Physiol. 2004 May;135(1):483-95. doi: 10.1104/pp.103.038315. Epub 2004 Apr 30.
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Regulation of methylbenzoate emission after pollination in snapdragon and petunia flowers.
Plant Cell. 2003 Dec;15(12):2992-3006. doi: 10.1105/tpc.016766. Epub 2003 Nov 20.

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