5.5.1.19: lycopene beta-cyclase
This is an abbreviated version!
For detailed information about lycopene beta-cyclase, go to the full flat file.
Word Map on EC 5.5.1.19
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5.5.1.19
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phytoene
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desaturase
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carotene
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carotenogenic
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carotenogenesis
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astaxanthin
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epsilon-cyclase
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xanthophyl
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blakeslea
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trispora
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violaxanthin
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uredovora
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provitamin
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ketolase
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pluvialis
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xanthophyllomyces
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delta-carotene
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neoxanthin
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decaprenoxanthin
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gamma-carotene
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alpha-carotene
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crtyb
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prolycopene
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dendrorhous
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beta-ring
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neurosporene
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nutrition
- 5.5.1.19
- phytoene
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desaturase
- carotene
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carotenogenic
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carotenogenesis
- astaxanthin
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epsilon-cyclase
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xanthophyl
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blakeslea
- trispora
- violaxanthin
- uredovora
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provitamin
-
ketolase
- pluvialis
-
xanthophyllomyces
- delta-carotene
- neoxanthin
- decaprenoxanthin
- gamma-carotene
- alpha-carotene
- crtyb
- prolycopene
- dendrorhous
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beta-ring
- neurosporene
- nutrition
Reaction
Synonyms
beta-LCY, beta-LCY1, capsanthin-capsorubin synthase, CCS, chromoplast-specific lycopene beta cyclase, CrtL, CrtL-b, CrtL-e, CrtY, crtYB, CruA, CruP, CYC-B, DcLCYB1, LCY, LCY-B, LCY-beta, LCYb, LCYb1, LCYB2, LCYb3, LCYb4, LYCB, lycopene beta cyclase, lycopene beta-cyclase 1, lycopene cyclase, phytoene synthase/lycopene cyclase, SSO2904
ECTree
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Source Tissue
Source Tissue on EC 5.5.1.19 - lycopene beta-cyclase
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additional information
lycopene cyclase transcript is detected at all stages of leaf and fruit development. There is no significant increase in lycopene cyclase transcript level during fruit ripening. The latter transcript level is approximately five to 10 times higher in young leaves than in senescing leaves and fruits
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lycopene cyclase transcript is detected at all stages of leaf and fruit development. There is no significant increase in lycopene cyclase transcript level during fruit ripening. The latter transcript level is approximately five to 10 times higher in young leaves than in senescing leaves and fruits
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transcript is consistently present through the whole process of development and ripening but at relatively low levels as compared to other carotenogenic genes
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transcript is consistently present through the whole process of development and ripening but at relatively low levels as compared to other carotenogenic genes
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mRNA level of CmLcyb1 is very low in fruits before fruit-size fixation and increases dramatically in the size-fixed fruits of these two genotypes, mRNA levels of CmLcyb1 during fruit development of Homoka are all higher than those of M01-3
lycopene cyclase transcript is detected at all stages of leaf and fruit development. There is no significant increase in lycopene cyclase transcript level during fruit ripening. The latter transcript level is approximately five to 10 times higher in young leaves than in senescing leaves and fruits
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lycopene cyclase transcript is detected at all stages of leaf and fruit development. There is no significant increase in lycopene cyclase transcript level during fruit ripening. The latter transcript level is approximately five to 10 times higher in young leaves than in senescing leaves and fruits
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CmLcyb1 is expressed in all tissues and organs of muskmelon inbred M01-3 with white mesocarp and, Homoka, an orange mesocarp cultivar, real-time quantitative RT-PCR expression analysis. beta-Carotene accumulation is linked to the CmLcyb1 transcript level in muskmelon fruit
additional information
the expression level is higher in the aerial organs throughout Daucus carota development, quantitative RT-PCR expression analysis
additional information
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the expression level is higher in the aerial organs throughout Daucus carota development, quantitative RT-PCR expression analysis
additional information
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real-time quantitative RT-PCR expression analysis
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additional information
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real-time quantitative RT-PCR expression analysis
additional information
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real-time quantitative RT-PCR expression analysis
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