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Iku

Mixed Ancestry

“Iku is a rescue dog in Japan, who is currently being fostered. She and her sister, Mai, look very much like my 100% East Asian Village Dog, Ginger, from Taiwan, and whose DNA shares a short strand with Shiba Inu. Just curious to see if there are any similarities between the dogs.”

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Genetic Breed Result

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East Asian Village Dog

Many years ago, when wolves began scavenging our hunting camps, they became gradually attuned to human life. Genetic changes in those wolves over time led to tameness, small body size and early age of first reproduction that soon after yielded what we see today in the East Asian village dogs.

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Shiba Inu

The Shiba Inu is the smallest ancient Japanese hunting breed. Saved from the brink of extinction after WWII, cute photos on the internet have popularized this proud breed.

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Dogs Like Iku

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Discover dogs who share a similar breed mix to Iku. 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:
East Asian Village Dog
Shiba Inu

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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

Body Size

Body Size

Performance

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Through Iku’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

A2

Haplotype

A39

Map

A2

Iku’s Haplogroup

A2 is a very ancient maternal line. Most likely it was one of the major female lines that contributed to the very first domesticated dogs in Central Asia about 15,000 years ago. Some of the line stayed in Central Asia to the present day, and frequently appear as Tibetan Mastiffs and Akitas. Those that escaped the mountains of Central Asia sought out other cold spots, and are now found among Alaskan Malamutes and Siberian Huskies. This lineage is also occasionally found in several common Western breeds, such as German Shepherds and Labrador Retrievers. Curiously, all New Guinea Singing Dogs descend from this line. These are an ancient and very interesting breed found in the mountains of Papua New Guinea. Unfortunately, they are now endangered. They are closely related to the Australian dingo, so you could say its cousins are dingos! This line is also common in village dogs in Southeast and East Asia. Unlike many other lineages, A2 did not spread across the whole world, probably because it did not have the opportunity to hitch its wagon to European colonialism - or because these dogs just prefer hanging out in mountains, tundras, islands, and other hard-to-reach places!

A39

Iku’s Haplotype

Part of the A2 haplogroup, this haplotype occurs most commonly in Akitas and Maltese.

Dingos commonly possess this 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 Iku 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 Iku is a female (XX) dog, she has no Y-chromosome for us to analyze and determine a paternal haplotype.

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