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1.
Vavilovskii Zhurnal Genet Selektsii ; 26(3): 298-307, 2022 May.
Article in English | MEDLINE | ID: mdl-35774360

ABSTRACT

The genetic makeup of a breed including its genetic differences from other breeds determines its appearance and characteristics, including economically important traits and resistance to pathologies. To date, many loci controlling significant phenotypes have been identified, which is successfully used in the world practice of marker-assisted selection to improve breed properties. The aim of this study was a comparative analysis of frequencies for known causative nucleotide substitutions, insertions and deletions associated with disease and economically important traits in Russian and foreign cattle breeds. As a result, we identified frequencies of these DNA polymorphisms in the populations of Russian cattle breeds, compared them with those of foreign populations of the same breed, as well as other foreign breeds. Our results indicate similarities in frequencies for most of such alleles within breeds (populations of Russian and foreign breeding), as well as the relationship between the causative allele prevalence and the presence of phenotypic traits under the effect. We also found an excess of some undesirable alleles in the Russian cattle populations, which should be paid attention to when designing breeding programs. We found that the alleles increasing fertility in the Hereford breed have a higher frequency in the Russian Hereford population compared to the foreign counterpart. Interestingly, unlike for the European breeds, for Asian Turano-Mongolian Wagyu and Yakut cattle, there was a less clear link between phenotypic traits and frequencies of known causative alleles. Our work points to specific genetic variants that could be used to improve and/or maintain the performance of certain cattle breeds bred in the Russian Federation.

2.
J Vector Ecol ; 39(2): 306-15, 2014 Dec.
Article in English | MEDLINE | ID: mdl-25424259

ABSTRACT

Culicoides biting midges play an important role in the epidemiology of many vector-borne infections, including bluetongue virus, an internationally important virus of ruminants. The territory of the Russian Federation includes regions with diverse climatic conditions and a wide range of habitats suitable for Culicoides. This review summarizes available data on Culicoides studied in the Russian Federation covering geographically different regions, as well as findings from adjacent countries. Previous literature on species composition, ranges of dominant species, breeding sites, and host preferences is reviewed and suggestions made for future studies to elucidate vector-virus relationships.


Subject(s)
Diptera/virology , Animals , Bluetongue virus/pathogenicity , Insect Vectors/virology , Russia , Seasons
3.
Avian Dis ; 54(2): 899-904, 2010 Jun.
Article in English | MEDLINE | ID: mdl-20608536

ABSTRACT

The genetic diversity of the pvpA gene of Mycoplasma gallisepticum (MG) samples originating from commercial chickens was investigated. In the present study, we evaluated the genetic variability of 26 field samples of MG detected in commercial chickens and turkeys from 18 regions of Russia and compared them to the reference strains of MG available in GenBank. Genetic variability was evaluated by partial nucleotide sequencing of the pvpA gene, which encodes a putative cytadhesin protein. Comparisons with MG strains and isolates from the United States, Australia, China, and Iran using sequence analysis of PCR products showed that Russian MG field samples clustered more closely to each other than to the international reference MG strains. The MG pvpA sequences were found to be highly variable with a discrimination index of 0.975 for Russian field samples. No apparent cluster was found using the criteria of year or location of detection. DNA sequence polymorphism and size variation in the pvpA gene were shown among the Russian MG field samples and could be used for MG typing. These findings might help better understand the relationship among MG isolates from Russia and other countries.


Subject(s)
Adhesins, Bacterial/genetics , Genetic Variation , Mycoplasma Infections/veterinary , Mycoplasma gallisepticum/genetics , Poultry Diseases/microbiology , Animals , Base Sequence , Chickens , Molecular Sequence Data , Mycoplasma Infections/epidemiology , Mycoplasma Infections/microbiology , Mycoplasma gallisepticum/isolation & purification , Phylogeny , Poultry Diseases/epidemiology , Russia/epidemiology , Turkeys
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