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“Eva”
Blazing Skies Of Nevada

Australian Cattle Dog

No bio has been provided yet

Place of Birth

Kingman, AZ, USA

Current Location

Sunrise Manor, NV, USA

From

Kingman, AZ, USA

This dog has been viewed and been given 0 wags

Registration

National Kennel Club (NKC):
Microchip: 985113001942331

Genetic Breed Result

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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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Changes to this dog’s profile
  • On 1/25/2019 changed name from "BlazingSkies Of Nevada" to "Blazing Skies Of Nevada"

Health Summary

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Eva is at increased risk for one genetic health condition.

Primary Lens Luxation

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Eva inherited one copy of the variant we tested

How to interpret this result

Eva has one copy of a variant in the ADAMTS17 gene and is at some risk for developing PLL. This variant is known to have an additive effect, so while dogs with one copy of the variant like Eva have a higher risk than dogs with two healthy alleles at ADAMTS17, their risk is much lower than a dog with two copies of the variant. Actual risk associated with having one copy of this variant appears to vary in a breed-specific manner. A study published by Gould et al 2011 supports that Tibetan Terriers with one copy of the variant have minimal risk of developing PLL, whereas this risk can range from 2-20% in other terrier breeds. Please consult with your veterinarian to discuss the best ways to monitor Eva's eyes and vision.

What is Primary Lens Luxation?

PLL occurs when the lens spontaneously detaches from its normal residence within the pupil, leading to reduced visual acuity. Anterior lens luxation is when the lens falls forward and posterior lens luxation is when the lens falls backwards in the eye.

Breed-Relevant Genetic Conditions

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Multiple Drug Sensitivity

Identified in Australian Cattle Dogs

Progressive Retinal Atrophy, prcd

Identified in Australian Cattle Dogs

Collie Eye Anomaly

Identified in Australian Cattle Dogs

Cystinuria Type II-A

Identified in Australian Cattle Dogs

Neuronal Ceroid Lipofuscinosis 5, NCL 5

Identified in Australian Cattle Dogs

Neuronal Ceroid Lipofuscinosis 8, NCL 8

Identified in Australian Cattle Dogs

Myotonia Congenita

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

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Other Body Features

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Body Size

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Through Eva’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

A427

Map

A1e

Blazing Skies Of Nevada’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!

A427

Blazing Skies Of Nevada’s Haplotype

Part of the A1e haplogroup, this haplotype occurs most frequently in Australian Cattle Dogs.

Irish Wolfhounds are a consistent carrier of A1e.

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

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