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Valyria de Vent Gris

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Genetic Breed Result

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Gray Wolf

The Gray Wolf is the largest of all the wolf species. These are pack animals that are tactical hunters. While they are wild animals, wolves are still able to breed with dogs.

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Czechoslovakian Vlcak

Czechoslovakian Vlcaks are a relatively new breed of dog that hail from Czechoslovakia. Nearly indistinguishable from a wolf to an untrained eye, these large and handsome dogs are the result of a crossbreeding between a German Shepherd and a Carpathian wolf in the 1950’s.

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Saarloos Wolfdog

Saarloos Wolfdogs are a Dutch breed of dog that are actually the result of the careful breeding of wolf/dog hybrids. In fact, they are the breed of dog that, according to a study conducted in 2015, contain the most genetic similarity to wolves.

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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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Alaskan Malamute

The Alaskan Malamute is a large, fluffy spitz breed recognized as being one of the most ancient breeds of dogs. The forebears to the modern Malamute crossed the Bering Strait with their owners over 4,000 years ago. Their size, thick coat, and work drive make them ideal dogs for pulling sleds, but they also make amicable companions.

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DNA Breed Origins

Breed colors:
Gray Wolf
Czechoslovakian Vlcak
Saarloos Wolfdog
Siberian Husky
German Shepherd Dog
Alaskan Malamute

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Health Summary

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Valyria de Vent Gris inherited one variant that you should learn more about.

And one variant that you should tell your vet about.

Degenerative Myelopathy, DM

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Valyria de Vent Gris inherited one copy of the variant we tested

What does this result mean?

This variant should not impact Valyria de Vent Gris’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. Valyria de Vent Gris is unlikely to develop this condition due to this variant because she only has one copy of the variant.

Impact on Breeding

Your dog carries this variant and will pass it on to ~50% of her offspring. You can email breeders@embarkvet.com to discuss with a genetic counselor how the genotype results should be applied to a breeding program.

What is Degenerative Myelopathy, DM?

The dog equivalent of Amyotrophic Lateral Sclerosis, or Lou Gehrig’s disease, DM is a progressive degenerative disorder of the spinal cord. Because the nerves that control the hind limbs are the first to degenerate, the most common clinical signs are back muscle wasting and gait abnormalities.

ALT Activity

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Valyria de Vent Gris inherited both copies of the variant we tested

Why is this important to your vet?

Valyria de Vent Gris has two copies of a variant in the GPT gene and is likely to have a lower than average baseline ALT activity. ALT is a commonly used measure of liver health on routine veterinary blood chemistry panels. As such, your veterinarian may want to watch for changes in Valyria de Vent Gris's ALT activity above their current, healthy, ALT activity. As an increase above Valyria de Vent Gris’s baseline ALT activity could be evidence of liver damage, even if it is within normal limits by standard ALT reference ranges.

What is ALT Activity?

Alanine aminotransferase (ALT) is a clinical tool that can be used by veterinarians to better monitor liver health. This result is not associated with liver disease. ALT is one of several values veterinarians measure on routine blood work to evaluate the liver. It is a naturally occurring enzyme located in liver cells that helps break down protein. When the liver is damaged or inflamed, ALT is released into the bloodstream.

Breed-Relevant Genetic Conditions

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Multiple Drug Sensitivity (ABCB1)

Identified in Czechoslovakian Vlcaks, German Shepherd Dogs, and more

Factor VII Deficiency (F7 Exon 5)

Identified in Alaskan Malamutes

Hemophilia A (F8 Exon 11, German Shepherd Variant 1)

Identified in Czechoslovakian Vlcaks, German Shepherd Dogs, and more

Hemophilia A (F8 Exon 1, German Shepherd Variant 2)

Identified in Czechoslovakian Vlcaks, German Shepherd Dogs, and more

Canine Leukocyte Adhesion Deficiency Type III, CLAD III (FERMT3, German Shepherd Variant)

Identified in Czechoslovakian Vlcaks, German Shepherd Dogs, and more

Platelet Factor X Receptor Deficiency, Scott Syndrome (TMEM16F)

Identified in Czechoslovakian Vlcaks, German Shepherd Dogs, and more

X-Linked Progressive Retinal Atrophy 1, XL-PRA1 (RPGR)

Identified in Siberian Huskies

Day Blindness (CNGA3 Exon 7, German Shepherd Variant)

Identified in Czechoslovakian Vlcaks, German Shepherd Dogs, and more

Urate Kidney & Bladder Stones (SLC2A9)

Identified in Czechoslovakian Vlcaks, German Shepherd Dogs, and more

Primary Ciliary Dyskinesia, PCD (NME5, Alaskan Malamute Variant)

Identified in Alaskan Malamutes

Anhidrotic Ectodermal Dysplasia (EDA Intron 8)

Identified in Czechoslovakian Vlcaks, German Shepherd Dogs, and more

Renal Cystadenocarcinoma and Nodular Dermatofibrosis (FLCN Exon 7)

Identified in Czechoslovakian Vlcaks, German Shepherd Dogs, and more

Mucopolysaccharidosis Type VII, Sly Syndrome, MPS VII (GUSB Exon 3, German Shepherd Variant)

Identified in Czechoslovakian Vlcaks, German Shepherd Dogs, and more

GM1 Gangliosidosis (GLB1 Exon 15, Alaskan Husky Variant)

Identified in Siberian Huskies

Alaskan Malamute Polyneuropathy, AMPN (NDRG1 SNP)

Identified in Alaskan Malamutes

Additional Genetic Conditions

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Traits

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

Coat Color

Coat Color

Other Coat Traits

Other Coat Traits

Other Body Features

Other Body Features

Body Size

Body Size

Performance

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Through Valyria de Vent Gris’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

A1d

Haplotype

A247

Map

A1d

Valyria de Vent Gris’s Haplogroup

This female lineage can be traced back about 15,000 years to some of the original Central Asian wolves that were domesticated into modern dogs. The early females that represent this lineage were likely taken into Eurasia, where they spread rapidly. As a result, many modern breed and village dogs from the Americas, Africa, through Asia and down into Oceania belong to this group! This widespread lineage is not limited to a select few breeds, but the majority of Rottweilers, Afghan Hounds and Wirehaired Pointing Griffons belong to it. It is also the most common female lineage among Papillons, Samoyeds and Jack Russell Terriers. Considering its occurrence in breeds as diverse as Afghan Hounds and Samoyeds, some of this is likely ancient variation. But because of its presence in many modern European breeds, much of its diversity likely can be attributed to much more recent breeding.

A247

Valyria de Vent Gris’s Haplotype

Part of the large A1d haplogroup, this common haplotype occurs in village dogs all over the world. Among the 32 breeds we have sampled it in, the most common occurrences include Boxers, Labrador Retrievers, and Papillons.

The vast majority of Rottweilers have the A1d haplogroup.

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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 Valyria de Vent Gris inherited from her mom and dad? Check out her breed breakdown.

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 Valyria de Vent Gris is a female (XX) dog, she has no Y-chromosome for us to analyze and determine a paternal haplotype.

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