Sunset

This mutation changes color and slightly changes pattern in Ball Pythons. The animal is a highly-saturated gradient from burnt orange, rusty reds, and warm chocolates that is light/white on the belly and colors upward to darker, more saturated shades as it nears the spine. There is sometimes a thin glow of lighter color running down the spine. The "alien heads" are distorted and sometimes pixelated in the "eyes." The dorsal pattern appears more bubbly than that of a wild-type, and the tail pattern becomes more serrated as it nears the tail tip.
RGI Rates This:
B
First Produced By:
Brian Barczyk
First Produced In:
2012
Gene Type:
Recessive
Complex:
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Additional References

Special Thank You to Our Supporters

We couldn't develop our tests without the support of the community. These breeders helped us by volunteering to send their sheds in for our research.
Justin Kobylka
Kinova
Kinova
Dave Hensler
Dave Hensler Reptiles
Dave Hensler Reptiles
Brian Barczyk
BHB Reptiles
BHB Reptiles
Leviathan Snakes
Leviathan Snakes
Leviathan Snakes
Matt Byram
Matt Byram Exotics
Matt Byram Exotics
Mike Wilbanks
Wilbanks Captive Bred Reptiles
Wilbanks Captive Bred Reptiles
Bob Vu
Bob's Balls
Bob's Balls

About Our Test Grades

A+

Peer reviewed scientific paper detailing this mutation. Over 1000 homozygous, heterozygous, and normal samples have been run and match known genetics, and all known mutations are covered by our test. 

Expected accuracy for this test is over 99.9%.

A

Over 1000 homozygous, heterozygous, and normal samples have been run and match known genetics, and all known mutations are covered by our test. 

Expected accuracy for this test is over 99.9%.

B

Over 500 homozygous, heterozygous, and normal samples  have been run and match known genetics, and all known mutations are covered by our test. 

Expected accuracy for this test is over 99.5%.

C

Over 200 homozygous, heterozygous, and normal samples have been run and match known genetics over 99% of the time. To date our test accounts for all known mutations that cause this morph, but we are still looking to see if there are any signs that another mutation exists that causes this morph. 

Expected accuracy for this test is over 99%.

D

Over 100 homozygous, heterozygous, and normal samples have been run and match known genetics over 80% of the time for at least one mutation. An additional unmapped mutation may exist for this morph. Either way, we are still working to optimize this test so that it will cover all known mutations for this morph. 

Expected accuracy will vary and will be below 99% because not enough tests have been run at this time.

E

The design and optimization for this test is in its final stages, but no working test exists at this point. Projected time to having a working test should be less than 2 months, unless it ends up that more sampling and sequencing is needed.

At that point the test would move down to being a Grade F.

F

Sequencing is in progress and we expect to have a working test in 2-4 months, as long as more sampling and sequencing is not needed.