Cargando…

Effect of CSN3 Gene Polymorphism on the Formation of Milk Gels Induced by Physical, Chemical, and Biotechnological Factors

During the last decade, research into genetic markers in the casein gene cluster has been actively introduced in cattle breeding programs. A special interest has been paid to the polymorphism of the CSN3 gene, responsible for the expression of the k-casein, playing a key role in protein coagulation,...

Descripción completa

Detalles Bibliográficos
Autores principales: Kruchinin, Aleksandr G., Illarionova, Elena E., Galstyan, Aram G., Turovskaya, Svetlana N., Bigaeva, Alana V., Bolshakova, Ekaterina I., Strizhko, Mariya N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10177998/
https://www.ncbi.nlm.nih.gov/pubmed/37174305
http://dx.doi.org/10.3390/foods12091767
_version_ 1785040755505496064
author Kruchinin, Aleksandr G.
Illarionova, Elena E.
Galstyan, Aram G.
Turovskaya, Svetlana N.
Bigaeva, Alana V.
Bolshakova, Ekaterina I.
Strizhko, Mariya N.
author_facet Kruchinin, Aleksandr G.
Illarionova, Elena E.
Galstyan, Aram G.
Turovskaya, Svetlana N.
Bigaeva, Alana V.
Bolshakova, Ekaterina I.
Strizhko, Mariya N.
author_sort Kruchinin, Aleksandr G.
collection PubMed
description During the last decade, research into genetic markers in the casein gene cluster has been actively introduced in cattle breeding programs. A special interest has been paid to the polymorphism of the CSN3 gene, responsible for the expression of the k-casein, playing a key role in protein coagulation, interaction with whey proteins, stabilization, and aggregation of casein micelles. This paper aimed to determine the effect of CSN3 genetic polymorphism on acid; rennet; acid–rennet; heat- and acid-induced as well as heat- and calcium-induced coagulation in skimmed milk; and protein-standardized milk systems (UF, NF, RO, VE). The influence of polymorphic variants of the CSN3 gene on the coagulation ability of milk proteins was assessed by the particle size of casein micelles, protein retention factor in the clot, and coagulation ability (duration of induction period, mass coagulation period, dynamic viscosity in gel point). The correlation between CSN3 gene polymorphism and protein coagulation was revealed. Milk systems obtained from CSN3 BB milk were found to have the shortest duration of coagulation, formation of better gel strength values, and increased yield compared to CSN3 AA. This study will improve the efficiency of milk processing and optimize the technology of dairy product production.
format Online
Article
Text
id pubmed-10177998
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-101779982023-05-13 Effect of CSN3 Gene Polymorphism on the Formation of Milk Gels Induced by Physical, Chemical, and Biotechnological Factors Kruchinin, Aleksandr G. Illarionova, Elena E. Galstyan, Aram G. Turovskaya, Svetlana N. Bigaeva, Alana V. Bolshakova, Ekaterina I. Strizhko, Mariya N. Foods Article During the last decade, research into genetic markers in the casein gene cluster has been actively introduced in cattle breeding programs. A special interest has been paid to the polymorphism of the CSN3 gene, responsible for the expression of the k-casein, playing a key role in protein coagulation, interaction with whey proteins, stabilization, and aggregation of casein micelles. This paper aimed to determine the effect of CSN3 genetic polymorphism on acid; rennet; acid–rennet; heat- and acid-induced as well as heat- and calcium-induced coagulation in skimmed milk; and protein-standardized milk systems (UF, NF, RO, VE). The influence of polymorphic variants of the CSN3 gene on the coagulation ability of milk proteins was assessed by the particle size of casein micelles, protein retention factor in the clot, and coagulation ability (duration of induction period, mass coagulation period, dynamic viscosity in gel point). The correlation between CSN3 gene polymorphism and protein coagulation was revealed. Milk systems obtained from CSN3 BB milk were found to have the shortest duration of coagulation, formation of better gel strength values, and increased yield compared to CSN3 AA. This study will improve the efficiency of milk processing and optimize the technology of dairy product production. MDPI 2023-04-24 /pmc/articles/PMC10177998/ /pubmed/37174305 http://dx.doi.org/10.3390/foods12091767 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kruchinin, Aleksandr G.
Illarionova, Elena E.
Galstyan, Aram G.
Turovskaya, Svetlana N.
Bigaeva, Alana V.
Bolshakova, Ekaterina I.
Strizhko, Mariya N.
Effect of CSN3 Gene Polymorphism on the Formation of Milk Gels Induced by Physical, Chemical, and Biotechnological Factors
title Effect of CSN3 Gene Polymorphism on the Formation of Milk Gels Induced by Physical, Chemical, and Biotechnological Factors
title_full Effect of CSN3 Gene Polymorphism on the Formation of Milk Gels Induced by Physical, Chemical, and Biotechnological Factors
title_fullStr Effect of CSN3 Gene Polymorphism on the Formation of Milk Gels Induced by Physical, Chemical, and Biotechnological Factors
title_full_unstemmed Effect of CSN3 Gene Polymorphism on the Formation of Milk Gels Induced by Physical, Chemical, and Biotechnological Factors
title_short Effect of CSN3 Gene Polymorphism on the Formation of Milk Gels Induced by Physical, Chemical, and Biotechnological Factors
title_sort effect of csn3 gene polymorphism on the formation of milk gels induced by physical, chemical, and biotechnological factors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10177998/
https://www.ncbi.nlm.nih.gov/pubmed/37174305
http://dx.doi.org/10.3390/foods12091767
work_keys_str_mv AT kruchininaleksandrg effectofcsn3genepolymorphismontheformationofmilkgelsinducedbyphysicalchemicalandbiotechnologicalfactors
AT illarionovaelenae effectofcsn3genepolymorphismontheformationofmilkgelsinducedbyphysicalchemicalandbiotechnologicalfactors
AT galstyanaramg effectofcsn3genepolymorphismontheformationofmilkgelsinducedbyphysicalchemicalandbiotechnologicalfactors
AT turovskayasvetlanan effectofcsn3genepolymorphismontheformationofmilkgelsinducedbyphysicalchemicalandbiotechnologicalfactors
AT bigaevaalanav effectofcsn3genepolymorphismontheformationofmilkgelsinducedbyphysicalchemicalandbiotechnologicalfactors
AT bolshakovaekaterinai effectofcsn3genepolymorphismontheformationofmilkgelsinducedbyphysicalchemicalandbiotechnologicalfactors
AT strizhkomariyan effectofcsn3genepolymorphismontheformationofmilkgelsinducedbyphysicalchemicalandbiotechnologicalfactors