Nurgalieva, A.Kh.,
Mustafin, S.A.,
Petrova, S.G.,
Ekomasova, N.V.,
Sakaeva, D.D.,
Fedorova, Y.Y.,
Abdeeva, G.R.,
Dzhaubermezov, M.A.,
Abdeev, R.R.,
Rakhimov, R.R.,
Khusnutdinova, E.K.,
Prokofyeva, D.S. (2024) frequencies. Also, it has been established that for Tatars, allele D of the rs28362491 polymorphic locus
Fedorova, Yu Yu,
Sagitova, A.V.,
Mingazheva, E.T.,
Faishanova, R.R.,
Zagitov, I.R.,
Andreeva, E.A.,
Nurgalieva, A.Kh.,
Khusnutdinova, E.K.,
Darvish, M.,
Prokofyeva, D.S. (2024) characteristics by the MS-HRM method. Our results indicate a higher
frequency of the miR-152 methylation
Savelieva, O.N.,
Karunas, A.S.,
Vlasova, A.O.,
Ahmetshin, A.A.,
Khidiyatova, I.M.,
Khusnutdinova, E.K. (2024) -Sensitive High Resolution Melting
analysis and se-quencing of bisulfite-treated genomic DNA were applied
and the corresponding allele
frequencies. Although this approach has been successfully applied to high-level traits
Marakhova, Anna,
Zhilkina, Vera Yu.,
Elapov, Alexander,
Sachivkina, Nadezhda,
Samorodov, Alexander,
Pupykina, Kira,
Krylova, Irina,
Kezimana, Parfait,
Stoynova, Anastasia M.,
Venkatesan, Raja,
Vetcher, Alexandre A. (2024) material/extractant ratio, extraction
frequency, complexation reaction time, amount of aluminum chloride
Ayupova, Guzel,
Litvinov, Sergey,
Akhmetova, Vita,
Minniakhmetov, Ildar,
Mokrysheva, Natalia,
Khusainova, Rita (2024) identified in the spectrum of
frequencies of pathogenic variants of the CFTR gene in the three major sub