Beatrice

Irish Wolfhound

  • Photo of Beatrice, an Irish Wolfhound  in Fayetteville, AR, USA Photo of Beatrice, an Irish Wolfhound  in Fayetteville, AR, USA
    Just turned 5 months

“Little Bea is the sweetest girl in the world. Although she's small (for a wolfhound) she has a big quirky personality. She loves playing with her brother (embk.me/tucker31), hogging all of the toys, flopping on the furniture, and becoming the dog version of a pretzel when she sleeps.”

Place of Birth
Fayetteville, AR, USA
Current Location
Chicago, Illinois, USA

This dog has been viewed 879 times and been given 22 wags

Registration

AKC: HP54907102

Genetic Breed Result

Learn how it’s done

Irish Wolfhound

100.0% Irish Wolfhound
Irish Wolfhound Irish Wolfhound
The Irish Wolfhound is about as big as they come. These gentle giants have served as hunting dogs for thousands of years. They make wonderful companions, especially for kids.
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Genetic Stats


Wolfiness

0.0 % LOW Learn More

Predicted Adult Weight

111 lbs Learn More

Genetic Age
31 human years Learn More
Based on the date of birth provided

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Explore by tapping the parents and grandparents.

Our algorithms predict this is the most likely family tree to explain Beatrice’s breed mix, but this family tree may not be the only possible one.

Health Summary

Beatrice has one variant that you should let your vet know about.

ALT Activity

Beatrice inherited both copies of the variant we tested

Why is this important to your vet?

Beatrice 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 Beatrice's ALT activity above their current, healthy, ALT activity. As an increase above Beatrice’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


Additional Genetic Conditions

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

Base Coat Color

Dark or Light Fur
E (Extension) Locus
Can have dark fur
Brown or Black Pigment
B (Brown) Locus
Black or gray fur and skin
Color Dilution
D (Dilute) Locus
Dark (non-dilute) fur and skin
Coat Color Modifiers

Coat Color Modifiers

Hidden Patterning
K (Dominant Black) Locus
More likely to have a mostly solid black or brown fur coat
Body Pattern
A (Agouti) Locus
No impact on coat pattern
Facial Fur Pattern
E (Extension) Locus
Can have black masking (dark facial fur)
White Spotting
S (White Spotting) Locus
Likely to have little to no white in coat
Harlequin
hh
Other Coat Traits

Other Coat Traits

Furnishings LINKAGE
Likely furnished (mustache, beard, and/or eyebrows)
Coat Length
Likely short or mid-length coat
Shedding
Likely light shedding
Coat Texture
Coat would likely be curly or wavy if long
Hairlessness (Xolo type) LINKAGE
Very unlikely to be hairless
Oculocutaneous Albinism Type 2 LINKAGE
Likely not albino
Other Body Features

Other Body Features

Muzzle Length
Likely medium or long muzzle
Tail Length
Likely normal-length tail
Hind Dew Claws
Unlikely to have hind dew claws
Eye Color LINKAGE
Less likely to have blue eyes
Body Size

Body Size

Body Size 1
Larger
Body Size 2
Larger
Body Size 3
Larger
Body Size 4
Larger
Body Size 5
Larger
Performance

Performance

Altitude Adaptation
Normal altitude tolerance
Appetite LINKAGE
Normal food motivation

Through Beatrice’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

A1e

Haplotype

A25

Map

A1e

Beatrice’s Haplogroup

This female lineage likely stems from some of the original Central Asian wolves that were domesticated into modern dogs starting about 15,000 years ago. It seemed to be a fairly rare dog line for most of dog history until the past 300 years, when the lineage seemed to “explode” out and spread quickly. What really separates this group from the pack is its presence in Alaskan village dogs and Samoyeds. It is possible that this was an indigenous lineage brought to the Americas from Siberia when people were first starting to make that trip themselves! We see this lineage pop up in overwhelming numbers of Irish Wolfhounds, and it also occurs frequently in popular large breeds like Bernese Mountain Dogs, Saint Bernards and Great Danes. Shetland Sheepdogs are also common members of this maternal line, and we see it a lot in Boxers, too. Though it may be all mixed up with European dogs thanks to recent breeding events, its origins in the Americas makes it a very exciting lineage for sure!

A25

Beatrice’s Haplotype

Part of the large A1e haplogroup, we have detected this haplotype in village dogs in Mexico. We also see it in Irish Wolfhounds, Great Pyrenees, Brittanys, and Labrador Retrievers.

Some other Embark dogs with this haplotype:

Irish Wolfhounds are a consistent carrier of A1e.

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