2017
DOI: 10.1126/sciadv.1602785
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Generation of blue chrysanthemums by anthocyanin B-ring hydroxylation and glucosylation and its coloration mechanism

Abstract: Coexpression of two anthocyanin modification genes elicits blue flower coloration through interaction with colorless flavonoids.

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Cited by 134 publications
(116 citation statements)
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“…High-performance liquid chromatography was performed following the method of Noda et al (2013). The structures of the major anthocyanins detected in the current study were determined and reported by Noda et al (2017).…”
Section: Anthocyanin Analysismentioning
confidence: 99%
“…High-performance liquid chromatography was performed following the method of Noda et al (2013). The structures of the major anthocyanins detected in the current study were determined and reported by Noda et al (2017).…”
Section: Anthocyanin Analysismentioning
confidence: 99%
“…; Noda et al . , ). However, the content of Dp derivatives was higher than that of Cy derivatives in both V .…”
Section: Discussionmentioning
confidence: 99%
“…In chrysanthemums, a few regulatory genes involved in flower development have been isolated, such as MADS-box, TCP, and WUS-like genes [10][11][12]16]. Some important functional genes and transcription factors involved in the anthocyanin biosynthesis pathway have also been characterized including ANS, F3′H, F3H and MYB-like genes [13][14][15][16]. However, chrysanthemums have complex capitula containing two morphologically distinct florets and through a long period of breeding a variety of flower shapes and diverse colors have been created.…”
Section: Abce Models Have Revealed That A-class Together With E-classmentioning
confidence: 99%