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Difference between revisions of "Flower Genome Theories"

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**Blue = Cyan(R) + Magenta(O)
 
**Blue = Cyan(R) + Magenta(O)
 
**Black/Grey = Cyan(R) + Magenta(O) + Yellow(Y)
 
**Black/Grey = Cyan(R) + Magenta(O) + Yellow(Y)
 +
**Orange = Magenta(O) + Yellow(Y) + Yellow(Y)
 +
 +
There are four(4) Shades of color possible which produce progressively richer and denser coloring. Notation is ColorX where X=1 to 4 shades. <br>
 +
**Example: Mag2 = Two shades of Magenta = GOOO GOOO

Revision as of 23:00, 16 April 2009

Sea Lily Genome Theory

Genomes separated into phenomes or gene sets that affect the color, size and fertilization rate of a lily.

Blush GROR V GOOO V UROO V IO V IOO V IOOO
Clarity IRIR IOIO IYIY GORR GROR GRRO GORR GROR GRRO
Crown UROO UROO V UR-V-OO UR-V-OR UROR UROR
Delicate IO IO IO IY IY IY GYOR
Energy VVVVV UYYY UYYY GYYY GYYY GRRO GRRO UROR UROR VVVVV
Fracture ROYG ROYGYOR GOR GOOO (ROYG and GYOR are merged but each affect the flower separately)
Morning IRRR IYYY IYYY UYYY UYYY UROR UROR GRRR GYYY GORR GRRO
Silken RRROOOYYYGGGUUUIII
Vampire IY IY IO IY IO IO

Phenomes of Lily Color

  • R = Cyan
  • O = Magenta
  • Y = Yellow
    • Red = Magenta(O) + Yellow(Y)
    • Green = Cyan(R) + Yellow(Y)
    • Blue = Cyan(R) + Magenta(O)
    • Black/Grey = Cyan(R) + Magenta(O) + Yellow(Y)
    • Orange = Magenta(O) + Yellow(Y) + Yellow(Y)

There are four(4) Shades of color possible which produce progressively richer and denser coloring. Notation is ColorX where X=1 to 4 shades.

    • Example: Mag2 = Two shades of Magenta = GOOO GOOO