scholarly journals Changes in the genealogical structure of the brown swiss cattle during breeding

Author(s):  
Svetlana Alekseevna Rusanova ◽  
Mikhail Eliseevich Gontov ◽  
Dmitry Nikolaevich Koltsov

The population of the Brown Swiss cattle is differentiated into 12 lines and related groups, 65.2% of which are animals of the genealogical groups Meridian 90827, Master 106902, Concentrate 106157 and Hill 76059. Animals belonging to the line Nevod 3313 have disappeared. Total number of Brown Swiss  animals in the lines of Amur 3033, Baro 18, Sector 4272-about 1.5%, in the line of R’yany 1318-0.03%. There is an accumulation of genetic material of the Brown Swiss breed of American selection and the displacement of genes that were possessed by animals of the local Brown Swiss cattle of domestic selection. For this reason, alleles B1G2QT1A`1P`, B1I`Q', I1E`3G`G``1 are eliminated from the breed, their frequency of occurrence in the herd is 0.005 or less. Marker EAB alleles B1G2QT1A`1P`  and B1I`Q' in the Baro 18 line were detected in 5.1% and 6.4% of animals, respectively, in the Amur 3033 line I1E`3G`G``1 is found in 15% of offspring. In 2018, 61 EAB locus alleles were identified in the lines, their number varies from 15 (line Laddi 125640) to 56 (line Meridian 90827). Studies have shown that the largest distribution (more than 60%) is characterized by EAB alleles of American selection, especially B1P2Y2G`Y`, B2G2KY2E`1F`2O`G``1, B2O3Y2A`2E`2G`P`Q`Y`, G3O1T1Y2E`3F`2G``2, I1Y2E`2G`I`G``1 (?q=0.479). The G2E`3F`2O` allele is extremely rare. EAB-alleles characteristic of domestic breeding were detected in 35% of animals. Among them, G1O` (0.067) and the recessive EAB b allele (0.106) are widely distributed. Alleles B1I1T1A`1P`, B1I`P`, B2P2T2P`B``, I`Q`, P2(E`3)I`  are eliminated from the breed (?q < 1%). Alleles of the Jersey cattle were found with a frequency of 0.046.The alleles G2O2E`2I`  (line Hill 76059 – 20.5%) and O2E`2G``1 (line Meridian 90827 – 4.3%) were widely distributed.

2015 ◽  
Vol 177 (6) ◽  
pp. 152.1-152 ◽  
Author(s):  
Th. Mock ◽  
E. Hehenberger ◽  
A. Steiner ◽  
J. Hüsler ◽  
G. Hirsbrunner

2020 ◽  
Vol 103 (9) ◽  
pp. 8541-8553
Author(s):  
A. Maggiolino ◽  
G.E. Dahl ◽  
N. Bartolomeo ◽  
U. Bernabucci ◽  
A. Vitali ◽  
...  

Author(s):  
Н.В. КОВАЛЮК ◽  
В.Ф. САЦУК ◽  
Е.А. КУЛЕШОВА ◽  
Л.И. ЯКУШЕВА ◽  
Ю.Ю. ШАХНАЗАРОВА

Настоящее исследование завершает цикл работ, связанных с генотипированием российских субпопуляций крупного рогатого скота по локусам CSN2 и CSN3. Проведено генотипирование  коров и телок айрширской породы из трех хозяйств Краснодарского края (n=1107). Установлена частота встречаемости носителей CSN2- и CSN3-генотипов, оценена степень их влияния на молочную продуктивность. В различных группах животных частота встречаемости «предпочтительных» в хозяйственном отношении CSN2-генотипа А2А2 составляет от 0,23 до 0,37 и CSN3-генотипа ВВ — от 0,03 до 0,06. Генотипы А2А2 и ВВ не оказывают негативного влияния на молочную продуктивность их носителей. Целесообразно для отечественных племенных предприятий, реализующих спермопродукцию айрширских быков, увеличить долю производителей с генотипами А2А2 (локус CSN2), АВ и ВВ (локус CSN3 This study completes a series of studies related to the genotyping of Russian bovine subpopulations at the CSN2 and CSN3 loci. Genotyping of cows and heifers Ayrshire breed from three farms in the Krasnodar region (n=1107) and the incidence of carriers CSN2 and CSN3 genotypes, assess their degree of influence on milk production in animals Ayrshire breed .It was found that in different groups of animals, the frequency of occurrence of the "preferred" in economic terms CSN2 genotype A2A2 ranges from 0.23 to 0.37 and CSN3 genotype BB - from 0.03 to 0.06.Genotypes A2A2 and BB (loci CSN2 and CSN3) do not have a negative impact on the milk productivity of their carriers. We consider it expedient for domestic breeding enterprises that sell sperm products of Ayrshire bulls to increase the share of producers with genotypes A2A2 (CSN2 locus), AB and BB (CSN3 locus).


Author(s):  
Maria Martinez-Castillero ◽  
Luis Varona ◽  
Sara Pegolo ◽  
Attilio Rossoni ◽  
Alessio Cecchinato

2007 ◽  
Vol 6 (sup1) ◽  
pp. 198-200 ◽  
Author(s):  
A. Rossoni ◽  
C. Nicoletti ◽  
O. Bonetti ◽  
L. Testa ◽  
E. Santus

1962 ◽  
Vol 53 (5) ◽  
pp. 226-226 ◽  
Author(s):  
O. DUZGUNES ◽  
A. TUNCAY

2019 ◽  
Vol 51 (8) ◽  
pp. 2235-2241 ◽  
Author(s):  
Luis Antonio Saavedra-Jiménez ◽  
Rodolfo Ramírez-Valverde ◽  
Rafael Núñez-Domínguez ◽  
Agustín Ruíz-Flores ◽  
José Guadalupe García-Muñiz

2018 ◽  
Vol 28 (3) ◽  
pp. 1-7
Author(s):  
Oludayo Akinsola ◽  
Dorcas Jirgi ◽  
Amos Ogundeji ◽  
Madaki Shuaib ◽  
Adebayo Ismail ◽  
...  

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