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Difference between revisions of "Flower Genome Theories"

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=Rose Genome Theory=
 
=Rose Genome Theory=
  
Color is encoded as below for petals:
+
*Petal color gene sets
 +
**Rxx = Outer Petal
 +
**xxR = Inner Petal
 +
 
 +
*Petal color key
 +
**O=Cyan
 +
**G=Yellow
 +
**Y=Magenta
 
   
 
   
*O=Cyan
+
*Stamen and leaves gene sets
*G=Yellow
+
**xU  = Stamen
*Y=Magenta
+
**Ux  = Leaves
+
 
*Rxx = Outer Petal
+
*Stamen and leaves color key
*xxR = Inner Petal
+
**R=Cyan
+
**O=Magenta
Color is encoded as below for stamen and leaves:
+
**Y=Yellow
+
 
*R=Cyan
 
*O=Magenta
 
*Y=Yellow
 
 
*xU  = Stamen
 
*Ux  = Leaves
 
 
   
 
   
 
Size is encoded as below:
 
Size is encoded as below:
 
   
 
   
 
ROYGU = Giant x 1 <br>
 
ROYGU = Giant x 1 <br>
UGYOR = Dwarf x 1
+
UGYOR = Dwarf x 1 <br>
 
   
 
   
 
Number of ferts until bulb split is achieved is still a mystery as to which genes control this aspect.
 
Number of ferts until bulb split is achieved is still a mystery as to which genes control this aspect.

Revision as of 02:41, 5 December 2009

General Color Theory in all flowers

  • Primary colors: Cyan, Magenta, Yellow
  • Secondary colors: Blue, Green, Red
    • Red = Magenta + Yellow
    • Green = Cyan + Yellow
    • Blue = Cyan + Magenta
  • Other color combinations
    • Black = Cyan + Magenta + Yellow (Grey is only a light black in color terms)
    • Orange = Magenta + Yellow + Yellow

GENE NAMES ARE THE NAMES OF COLORS NOT THE COLORS THEMSELVES. AS AN EXAMPLE, DO NOT CONFUSE THE GENE NAME Orange or the abbreviated gene name O with the color orange.

  • 4 Shades of a primary color exist which produce progressively richer and denser coloring from 1 to 4. Notation is Colorx where x=1 to 4 shades.
    • Example: Mag2 = Two shades of Magenta in a sea lily = GOOO GOOO

When x is used in a notation such Uxxx, each x must equal the same gene name, like URRR or UOOO or IYY.

The color key codes for x can be different for each flower type! So check carefully.

Orchid Genome Theory

Orchid.png

I is a separator, it does nothing but prevent overlaps of gene sets.

  • Color gene sets
    • Ux for the stem
    • xU for the leaves
    • Rxx for main petals
    • Rx for upper petal
    • xR for front petal
    • xxx or URx for lower petals.
  • Color key for x
    • x=O for cyan
    • x=G for yellow
    • x=Y for magenta
  • Size gene sets
  • ROYG for giant
  • GYOR for dwarf
  • Giant and Dwarf genes cancel each other out exactly so there are no half dwarves/giants.

Rose Genome Theory

  • Petal color gene sets
    • Rxx = Outer Petal
    • xxR = Inner Petal
  • Petal color key
    • O=Cyan
    • G=Yellow
    • Y=Magenta
  • Stamen and leaves gene sets
    • xU = Stamen
    • Ux = Leaves
  • Stamen and leaves color key
    • R=Cyan
    • O=Magenta
    • Y=Yellow


Size is encoded as below:

ROYGU = Giant x 1
UGYOR = Dwarf x 1

Number of ferts until bulb split is achieved is still a mystery as to which genes control this aspect.

Sand Bloom Genome Theory

SandBloom1.jpg

x can be the following colors in gene sets:

O = magenta
Y = yellow
R = cyan

Gene Sets for Petal and Rings :

xG for right outer petal
Gx for left outer petal
Ux for upper inner petal
xU for lower inner petal
Ix for the center ring
xI for the inner circle

Size gene sets:

ROYG for giant
GYOR for dwarf
Normal size = 0 (size of Sacrifice or Sunshine)
Giant gene set = ROYG = +1 (size of Calliope)
Dwarf gene set = GYOR = -3 (Petit Mal is dwarfx2)

'C' is a spacer to separate color coding as on Lemon Drop it keeps YG and YU from becoming GY and UY.


Sea Lily Genome Theory

Genomes separated into 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 UROO V UR-V-OO V UR-V-OR V UROR 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

Lily Color Gene Sets

  • Stamen can be Ix(Outer Stamen) Ixx(Middle Stamen) or Ixxx(Inner Stamen) See Stamen Layering Note and color key for 'x'.

Note:Stamen Layering. Color shades increase on the separate stamen levels from upper(richest color) to lower(weakest shade) by combination of the gene sets. Example:

..........Ix 
..........Ix x
..........Ix x x
Shade 3 2 1
  • Inner East Petal Set Uxxx (see color Key below)
    • Example: xxx=RRR=Cyan
  • Inner West Petal Set Uxyz
    • UORR = Cyan
    • UROO = Magenta
    • UROR = Yellow
  • Outer South Petal Set Gxxx (see color Key below)
    • Example: xxx=OOO=Magenta
  • Outer North Petal Set Gxyz
    • GORR = Cyan
    • GROR = Magenta
    • GRRO = Yellow

Key: x =

    • R = Cyan
    • O = Magenta
    • Y = Yellow

Note: Petal sets. There are 6 outer petals and 6 inner petals arranged around the stamen. A petal gene set colors 3 alternating petals. For example, the Outer North Petal Set consists of the north, southeast and southwest petals being colored grey on Clarity. The Inner West Petal Set consists of the west, northeast and southeast petals being colored red on Crown.

Size Gene Sets

Normal size = 0.0 (size of most original lilies)
Giant gene set = ROYG = +0.5
Dwarf gene set = GYOR = -1.0 (size of Delicate)
Semidwarf = ROYG(Giant) + GYOR(Dwarf) = +0.5 + (-)1.0 = -0.5 (size of Dusk)

Fertilization Rate Gene Sets

Default lily fertilization rate = 48.
'V' gene reduces regular fertilization by 2.

  • Example: Energy requires the least number of fertilizations because it contains ten(10) 'V' genes or 10 x 2 ferts less than the default of 48 fertilizations or just 28 ferts to split. See Genomes
  • Note: more than 12 'V' genes do not benefit anymore, the Check option on the flowers only appears after 24 fertilizations with basic Flower Fertilizer.