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Jade

Mixed Ancestry

No bio has been provided yet

Place of Birth

Athens, Texas, USA

Current Location

Denver, Colorado, USA

From

Athens, TX, USA

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Genetic Breed Result

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Embark Supermutt analysis

What’s in that Supermutt? There may be small amounts of DNA from these distant ancestors:

American Bulldog

American bulldogs are enjoying a healthy increase in popularity, either as a working/protector dog or as a family pet. All over the world, they are used variously as "hog dogs" (catching escaped pigs or hunting razorbacks), as cattle drovers and as working or sport K-9s. American Bulldogs also successfully compete in several dog sports such as dog obedience, Iron Dog competition and weight pulling.

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American Pit Bull Terrier

The American Pit Bull Terrier originated in the British Isles and descends from the Mastiff-type dogs introduced to England in antiquity. The breed was brought over to the United States by English immigrants in the 1800s, and quickly became one of the most popular and widespread breeds there.

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Australian Cattle Dog

A classic cattle dog, Australian Cattle Dogs were developed from a mixture of breeds in Australia in the 19th century, and still maintain their energetic herding instincts today.

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Labrador Retriever

The Labrador Retriever was bred for hunting and excelled in retrieving game after it was shot down. Known for its gentle disposition and loyalty, the Labrador Retriever has become a favorite of families and breeders alike.

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Siberian Husky

Bred initially in Northern Siberia, the Siberian Husky is a medium-sized working dog who is quick and light on their feet. Their moderately compact and well furred body, erect ears and brush tail suggest their Northern heritage. Huskies are very active and energetic and are known for being long distance sled dogs.

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German Shepherd Dog

German Shepherds are confident, courageous dogs with a keen sense of smell and notable intelligence. These are active working dogs who excel at many canine sports and tasks -- they are true utility dogs! Their versatility combined with their loyal companionship has them consistently listed as one of the most popular breeds in the United States.

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Dogs Like Jade

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Discover dogs who share a similar breed mix to Jade. A higher score means the two dogs have more of their breed mix in common. A score of 100% means they share the exact same breed mix!

Click or tap on a pic to learn more about each dog and see an in-depth comparison of their DNA, breeds, and more.

DNA Breed Origins

Breed colors:
American Bulldog
American Pit Bull Terrier
Australian Cattle Dog
Labrador Retriever
Siberian Husky
German Shepherd Dog
Supermutt

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Here’s what Jade’s family tree may have looked like.
Jade
Family Tree From Embark PARENTS GRANDPARENTS GREAT GRANDPARENTS Mixed American Bulldog mix American Pit Bull Terrier / Siberian Husky mix Australian Cattle Dog / Labrador Retriever mix American Bulldog American Pit Bull Terrier mix American Pit Bull Terrier Siberian Husky mix Australian Cattle Dog mix Labrador Retriever mix American Bulldog American Bulldog American Pit Bull Terrier American Pit Bull Terrier mix
While there may be other possible configurations of her family’s relationships, this is the most likely family tree to explain Jade’s breed mix.
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Health Summary

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Jade inherited two variants that you should learn more about.

Progressive Retinal Atrophy, prcd

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Jade inherited one copy of the variant we tested

What does this result mean?

This variant should not impact Jade’s health. This variant is inherited in an autosomal recessive manner, meaning that a dog needs two copies of the variant to show signs of this condition. Jade is unlikely to develop this condition due to this variant because she only has one copy of the variant.

What is Progressive Retinal Atrophy, prcd?

PRA-prcd is a retinal disease that causes progressive, non-painful vision loss. The retina contains cells, called photoreceptors, that collect information about light and send signals to the brain. There are two types of photoreceptors: rods, for night vision and movement, and cones, for day vision and color. This type of PRA leads to early loss of rod cells, leading to night blindness before day blindness.

Progressive Retinal Atrophy, crd4/cord1

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Jade inherited one copy of the variant we tested

What does this result mean?

This variant should not impact Jade’s health. This variant is inherited in an autosomal recessive manner, meaning that a dog needs two copies of the variant to show signs of this condition. Jade is unlikely to develop this condition due to this variant because she only has one copy of the variant.

What is Progressive Retinal Atrophy, crd4/cord1?

PRA-CRD4/cord1 is a retinal disease that causes progressive, non-painful vision loss over a 1-2 year period. The retina contains cells, called photoreceptors, that collect information about light and send signals to the brain. There are two types of photoreceptors: rods, for night vision and movement, and cones, for day vision and color. This type of PRA leads to early loss of cone cells, causing day blindness before night blindness.

Breed-Relevant Genetic Conditions

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Multiple Drug Sensitivity

Identified in Australian Cattle Dogs and German Shepherd Dogs

Hemophilia A

Identified in German Shepherd Dogs

Hemophilia A

Identified in German Shepherd Dogs

Canine Leukocyte Adhesion Deficiency Type III, CLAD III

Identified in German Shepherd Dogs

Canine Elliptocytosis

Identified in Labrador Retrievers

Pyruvate Kinase Deficiency

Identified in Labrador Retrievers

Platelet Factor X Receptor Deficiency, Scott Syndrome

Identified in German Shepherd Dogs

Golden Retriever Progressive Retinal Atrophy 2, GR-PRA2

Identified in Labrador Retrievers

Progressive Retinal Atrophy, crd1

Identified in American Pit Bull Terriers

X-Linked Progressive Retinal Atrophy 1, XL-PRA1

Identified in Siberian Huskies

Collie Eye Anomaly

Identified in Australian Cattle Dogs

Day Blindness

Identified in Siberian Huskies

Day Blindness

Identified in German Shepherd Dogs

Day Blindness

Identified in Labrador Retrievers

Canine Multifocal Retinopathy, cmr1

Identified in American Bulldogs

Primary Lens Luxation

Identified in Australian Cattle Dogs

Macular Corneal Dystrophy, MCD

Identified in Labrador Retrievers

Cystinuria Type II-A

Identified in Australian Cattle Dogs

Urate Kidney & Bladder Stones

Identified in American Pit Bull Terriers, American Bulldogs, and more

Anhidrotic Ectodermal Dysplasia

Identified in German Shepherd Dogs

Renal Cystadenocarcinoma and Nodular Dermatofibrosis

Identified in German Shepherd Dogs

Mucopolysaccharidosis Type VII, Sly Syndrome, MPS VII

Identified in German Shepherd Dogs

Neuronal Ceroid Lipofuscinosis, Cerebellar Ataxia, NCL4A

Identified in American Pit Bull Terriers

Neuronal Ceroid Lipofuscinosis 5, NCL 5

Identified in Australian Cattle Dogs

Neuronal Ceroid Lipofuscinosis 8, NCL 8

Identified in Australian Cattle Dogs

Neuronal Ceroid Lipofuscinosis 10, NCL 10

Identified in American Bulldogs

Late-Onset Neuronal Ceroid Lipofuscinosis, NCL 12

Identified in Australian Cattle Dogs

GM1 Gangliosidosis

Identified in Siberian Huskies

Alexander Disease

Identified in Labrador Retrievers

Degenerative Myelopathy, DM

Identified in German Shepherd Dogs, Labrador Retrievers, and more

L-2-Hydroxyglutaricaciduria, L2HGA

Identified in American Pit Bull Terriers

Narcolepsy

Identified in Labrador Retrievers

Ullrich-like Congenital Muscular Dystrophy

Identified in Labrador Retrievers

Centronuclear Myopathy, CNM

Identified in Labrador Retrievers

Exercise-Induced Collapse, EIC

Identified in Labrador Retrievers

Myotonia Congenita

Identified in Australian Cattle Dogs

Nemaline Myopathy

Identified in American Bulldogs

X-Linked Myotubular Myopathy

Identified in Labrador Retrievers

Congenital Myasthenic Syndrome, CMS

Identified in Labrador Retrievers

Ichthyosis

Identified in American Bulldogs

Hereditary Nasal Parakeratosis, HNPK

Identified in Labrador Retrievers

Skeletal Dysplasia 2, SD2

Identified in Labrador Retrievers

β-Mannosidosis

Identified in Mixed-breed dogs

Stargardt Disease

Identified in Labrador Retrievers

Junctional Epidermolysis Bullosa

Identified in Australian Cattle Dogs

Additional Genetic Conditions

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Traits

Explore the genetics behind your dog’s appearance and size.

Base Coat Color

Base Coat Color

Coat Color Modifiers

Coat Color Modifiers

Other Coat Traits

Other Coat Traits

Other Body Features

Other Body Features

Body Size

Body Size

Performance

Performance

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Through Jade’s mitochondrial DNA we can trace her mother’s ancestry back to where dogs and people first became friends. This map helps you visualize the routes that her ancestors took to your home. Their story is described below the map.

Haplogroup

A1a

Haplotype

Ambiguous_A1a

Map

A1a

Jade’s Haplogroup

A1a is the most common maternal lineage among Western dogs. This lineage traveled from the site of dog domestication in Central Asia to Europe along with an early dog expansion perhaps 10,000 years ago. It hung around in European village dogs for many millennia. Then, about 300 years ago, some of the prized females in the line were chosen as the founding dogs for several dog breeds. That set in motion a huge expansion of this lineage. It's now the maternal lineage of the overwhelming majority of Mastiffs, Labrador Retrievers and Gordon Setters. About half of Boxers and less than half of Shar-Pei dogs descend from the A1a line. It is also common across the world among village dogs, a legacy of European colonialism.

Ambiguous_A1a

Jade’s Haplotype

Maternal haplotypes are defined such that every unique marker we test for is necessary to make a confident call. In the case of your dog, there were too many missing mtDNA markers to reliably define a haplotype this way. However, we know your dog falls in the A1a haplogroup, which we can define more broadly.

Shar Pei dogs think A1a is the coolest!

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The Paternal Haplotype reveals a dog’s deep ancestral lineage, stretching back thousands of years to the original domestication of dogs.

Are you looking for information on the breeds that Jade inherited from her mom and dad? Check out her breed breakdown and family tree.

Paternal Haplotype is determined by looking at a dog’s Y-chromosome—but not all dogs have Y-chromosomes!

Why can’t we show Paternal Haplotype results for female dogs?

All dogs have two sex chromosomes. Female dogs have two X-chromosomes (XX) and male dogs have one X-chromosome and one Y-chromosome (XY). When having offspring, female (XX) dogs always pass an X-chromosome to their puppy. Male (XY) dogs can pass either an X or a Y-chromosome—if the puppy receives an X-chromosome from its father then it will be a female (XX) puppy and if it receives a Y-chromosome then it will be a male (XY) puppy. As you can see, Y-chromosomes are passed down from a male dog only to its male offspring.

Since Jade is a female (XX) dog, she has no Y-chromosome for us to analyze and determine a paternal haplotype.

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