Evidence map›Paper›PMID 40764990›Full record

ArticleBMC biology2025

Kazakh Tobet dogs in the genomic landscape: refining the history of livestock guardian breeds.

Anastassiya Perfilyeva, Kira Bespalova, Yelena Kuzovleva, Mamura Begmanova, Almira Amirgaliyeva, Olga Vishnyakova, Inna Nazarenko, Sergey Bespalov, Assel Zhaxylykova, Arailym Yerzhan and 4 more

Abstract read
In one paragraph

Article in BMC biology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

What it found

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2 · The registry

The trial behind it

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3 · Its place in the literature

Who cites it

0 citing papers in PubMed.

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4 · The record

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PubMed lists nothing against this paper. Absence here is not a guarantee, only a check that was made.

5 · Who and what money

Authors and funding

14 authors.

Anastassiya PerfilyevaLaboratory of Molecular Genetics, Institute of Genetics and Physiology, Almaty, 050060, Kazakhstan.
Kira BespalovaLaboratory of Molecular Genetics, Institute of Genetics and Physiology, Almaty, 050060, Kazakhstan. kira.b.bespalova@gmail.com.
Yelena KuzovlevaLaboratory of Molecular Genetics, Institute of Genetics and Physiology, Almaty, 050060, Kazakhstan.
Mamura BegmanovaLaboratory of Molecular Genetics, Institute of Genetics and Physiology, Almaty, 050060, Kazakhstan.
Almira AmirgaliyevaLaboratory of Molecular Genetics, Institute of Genetics and Physiology, Almaty, 050060, Kazakhstan.
Olga VishnyakovaDepartment of Cynology, Republican Federation of Public Associations of Hunters and Hunting Societies "Kansonar", Almaty, 050008, Kazakhstan.
Inna NazarenkoDepartment of Cynology, Republican Federation of Public Associations of Hunters and Hunting Societies "Kansonar", Astana, 020000, Kazakhstan.
Sergey BespalovLaboratory of Theriology, Institute of Zoology, Almaty, 050060, Kazakhstan.
Assel ZhaxylykovaLaboratory of Molecular Genetics, Institute of Genetics and Physiology, Almaty, 050060, Kazakhstan.
Arailym YerzhanLaboratory of Molecular Genetics, Institute of Genetics and Physiology, Almaty, 050060, Kazakhstan.
Kanagat YergaliLaboratory of Molecular Genetics, Institute of Genetics and Physiology, Almaty, 050060, Kazakhstan.
Yuliya PerfilyevaLaboratory of Molecular Immunology and Immunobiotechnology, M.A. Aitkhozhin's, Institute of Molecular Biology and Biochemistry, Almaty, 050012, Kazakhstan.
Rustam MussabayevLaboratory of Informational Processes Analysis and Modelling, Institute of Information and Computational Technologies, Almaty, 050000, Kazakhstan.
Zhassulan ZhaniyazovLaboratory of Population Genetics, Institute of Genetics and Physiology, Almaty, 050060, Kazakhstan.

Funding

the Committee of Science, the Ministry of Science and Higher Education of the Republic of Kazakhstan #BR21881977
6 · The paper itself

Abstract

backgroundDespite the growing body of research on livestock guarding dog (LGD) breeds, Central Asian LGDs remain significantly underrepresented in genetic studies. Additionally, while some research has explored the genetic basis of selective traits in LGDs, significant gaps remain. By investigating the genetic diversity, evolutionary history, and adaptive traits of the Kazakh Tobet, a Central Asian LGD breed from Kazakhstan, we aim to contribute to a deeper understanding of the genetic basis that characterizes LGD breeds.

resultsWe analyzed the genetic relatedness of Kazakh Tobet dogs by combining SNP data from 90 unrelated Kazakh Tobets with publicly available SNP data from 124 dogs from 17 LGD breeds, 1753 dogs from 140 non-LGD breeds, 551 free-ranging dogs, and 16 wolves. The Kazakh Tobets exhibit considerable genetic diversity. Phylogenetic and PCA analyses suggest a common genetic origin with LGDs from Central and West Asia, which was complicated by gene flow from European LGDs. Signs of introgression from East Asian and Arctic non-LGDs may indicate a historical or modern gene exchange affecting the Kazakh Tobet lineage. Genetic clustering with free-ranging dogs supports the idea that open breeding systems do not compromise the functional integrity of LGD traits. Selection scans identified eight genomic regions with 127 genes associated with cognitive function, immune response, and metabolic regulation, suggesting the evolutionary importance of these traits in Kazakh Tobets.

conclusionsThis study provides new insights into the genetic history of LGD breeds and their connections to the broader genetic landscape of non-LGD breeds.

Indexed as

BreedingGenetic VariationGenomeAnimalsDogsKazakhstanLivestockPhylogenyPolymorphism, Single NucleotideGenetic diversityGenomic characterizationKazakh TobetLivestock guarding dogPhylogenySignatures of selection

Identifiers

PMID40764990
PMCPMC12326758

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