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Application of ethylene inhibitors, high oxygen, anaerobic conditions, exogenous sucrose, or ATP can maintain the ATP content and EC levels in litchi, longan, tulip and carnation flowers, thereby delaying pericarp browning and extending flowering longevity [ 1, 3, 4, 7, 10].
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Traits of ornamental plants that are popular with consumers include extended flowering, novel floral morphology (e.g., double flowers), compactness, and disease-resistance.
This research will guide the future selection of promising candidate genes for extending flower longevity by delaying corolla senescence.
Sucrose has profound effects on extending flower longevity, and has been implicated in the stability of EIN3 in Arabidopsis [ 59].
Rather than blocking downstream ethylene-induced responses to delay flower senescence, inhibiting pollination signals that lead to ethylene biosynthesis may provide an alternative means of extending flower longevity.
The plants have fewer juvenile leaves and show delayed floral initiation and extended flowering time.
The ECB has just extended Flower's.
Pinch off fuchsia seed pods to extend flower production.
As stated previously, sucrose has been shown to extend flower longevity and prevent ethylene production.
Furthermore, overexpression of PhFBH4 accelerated flower senescence and shortened flower longevity, while silencing of PhFBH4 extended flower longevity.
In an effort to extend flower longevity, transgenic approaches have been utilized to alter ethylene perception in petunia.
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