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1.
The work is part of a study of the gene pool for Daghestan ethnic groups. In total, 38 alleles and eight genotypes were studied at 14 loci (AB0, Rhesus, P, Lewis, Kell, HP, GC, C'3, TF, 6-PGD, GLO1, ESD, ACP, and PGM1) of immunogenetic and biochemical polymorphic gene systems. A high frequency of allele d of the Rhesus system was observed in all populations examined (0.399-0.474). Among the rare haplotypes of the Rhesus system, we observed CDE in the Degva population, Cde in the Sergokala and Degva populations, and cdE in the Sergokala and Vanashimakhi populations. The typical Caucasian ACP1c allele of the ACP1 locus, which is rather uncommon, was observed at a relatively high frequency in three (Segokala, Vanashimakhi, and Gubden) of the four local populations under study. In the Lewis system, a high frequency of the Le(a+b+) phenotype, which is characteristic of early childhood, was detected in the adult populations of Sergokala and Degva. The rare PGM1v allele of the phosphoglucomutase 1 system (PGM 1) was additionally observed in the Sergokala population. Statistical analysis identified 19 cases where the observed phenotype frequencies significantly differed from the frequencies expected from the Hardy--Weinberg equilibrium.  相似文献   

2.
Genomic diversity of 21 STR loci has been studied in six ethnic populations of Daghestan (the Caucasus), namely, Avars, Dargins, Kubachians, Lezgins, and Nogais, and the results have been compared with these data for European, African, and East Asian ethnic groups. Daghestan is unique in its ethnic diversity, which is the greatest in the Caucasus: 26 out of approximately 50 autochthonous ethnic groups of the Caucasus live there. The genetic origin of this wide ethnic diversity of Daghestan and the Caucasus as a whole is still obscure. The genetic heterogeneity of Daghestan populations has been found to be lower than that of most other populations in the world. This is explained by a prolonged isolation and gene drift in their demographic history. Generalized genetic distances between ethnic groups calculated for the whole set of loci studied allow differentiating Asian populations from African ones, with European populations occupying intermediate positions. All Daghestan ethnic populations form a distinct common group together with some European populations (Finnish, Polish, and French). Nogais are genetically close to Southeast Asian populations. The genetic closeness and the apparently equal genetic diversity of Daghestan and European populations suggest that the ethnic differentiation of the ancestral populations of Daghestan and European ethnic groups occurred in the earliest populations of modern humans.  相似文献   

3.
Analysis of the genetic variation of eight aboriginal Daghestan ethnic groups based on data on the AB0 and Rhesus blood groups has been carried out in a total sample of 18348 subjects. The degree of genetic differentiation (G ST) and the levels of intraethnic (H S) and interethnic (H T) variations of Daghestan ethnic groups have been estimated at two hierarchical levels of the population system. Prevalence of intraethnic diversity over interethnic one has been found in Daghestan populations. The parameters of subdivision of Daghestan populations were compared with those for the populations of all other regions of the Caucasus and the Pamir. The population subdivision of ethnic groups of Daghestan and other regions of the Caucasus is lower than that of Pamir ethnic groups.  相似文献   

4.
This study is a part of long-term investigations devoted to the analysis of the gene pool of Dagestan ethnic groups. The phenotype (in %), gene, and haplotype frequencies in Kumyk ethnic group are reported. A total of 39 alleles and six haplotypes of 14 loci (AB0, Rhesus, P, Levis, Kell, HP, GC, C’3, TF, 6PGD, GLO1, ESD, ACP, and PGM1) of immunobiochemical genetic marker systems were examined. Rare haplotypes of the Rhesus system were identified, including CDE in the Karabudakhkent population with the frequency of 0.030, and Cde and cdE in the Dorgeli population with the frequencies of 0.034 and 0.38, respectively. Similarly to the other ethnic populations of Dagestan examined, Kukyk populations carried rare, albeit typically “Caucasoid” gene ACP1 c of the AcP1 locus. The frequency of this allele in the two populations was similar, constituting 0.031 for Karabudakhkent and 0.032 for Dorgeli. In Kumyks, allele frequencies of the AB0, Rhesus, P, Lewis, Kell, HP, GC, C′3, TF, 6PGD, GLO1, ESD, ACP, but not PGM1, systems were similar to the mean allele frequencies at these loci observed in the other ethnic groups from the Dagestan, Caucasus, and the whole European historical ethnographic province. At the same time, the allele frequency values obtained were different from those for the populations of Kazakhstan, Central Asia, Siberia, and the Ruswsian Far East. Thus, the results obtained for classical genetic markers indicate that Kumyks are genetically closer to the indigenous populations of Dagestan than to Turkic-speaking populations. Analysis of the fit of the observed phenotype frequencies to the Hardy-Weinberg expectations showed that compared to other indigenous populations of Dagestan examined, in Kumyks the genetic state of the population upon random allele association was close to equilibrium. Probably, this state was determined by practical absence of the consanguineous marriages upon preservation of intra-aul endogamy.  相似文献   

5.
This study is part of long-term research in the gene pool of Dagestan ethnic groups. The phenotype (in percent), gene, and haplotype frequencies in three Avar populations are reported. A total of 37 alleles of 13 loci of immune and biochemical genetic marker systems (ABO, Rhesus, P, Lewis, HP, GC, C′3, TF, 6PGD, GLO1, ESD, ACP, and PGM1) have been studied. Rare haplotypes of the Rhesus system (CDE, Cde and cdE) have been found in the populations studied. In two out of three local populations (Khunzakh and Kharakhi), a typically “Caucasoid” rare gene ACP1 c of the AcP1 locus has proved to be relatively frequent (0.030 and 0.023, respectively). The frequencies of the allele variantsP 2 , le, and Hp 1 of loci of the P, Lewis, and HP systems, respectively, have been found to be lower than in other Caucasian ethnic groups and the total northern Eurasian population. The mean allele frequencies for the GC, C′3, TF, 6PGD, GLO1, and ESD systems in the populations studied are comparable wit those for both Caucasian ethnic groups and the total population of the European historical ethnographic province. Statistical analysis of the results has shown 11 cases of significant deviations of the observed phenotype frequencies from the Hardy-Weinberg equilibrium.  相似文献   

6.
Band 3 (AE1) is one of the most abundant proteins in the membrane of the human erythrocyte. This protein works as an anionic CI - and HCO3- exchanger and it also functions as an anchor for several proteins of the erythrocyte's cytoesqueleton. Several mutations have been described and many polymorphic variants have been associated to hereditary spherocytosis. The identification of a genetic marker at position 5' of the AEl gene could be associated to several molecular defects of the erythrocyte. This genetic marker is a restriction fragment length polymorphism (RFLP) produced by restriction enzime Pst I. For this polymorphism a total of 216 individuals belonging to seven different populations were analyzed: one from the Central Valley, two African descendants (Lim6n and Guanacaste) and four Amerindians (Bribri, Cabecar, Maleku and Guaymi). The most frequent allele in the Amerindian population was no 1. No significant differences were found with respect to the Hardy-Weinberg equilibrium in six of the populations, although the Guaymi group does present significative differences  相似文献   

7.
Using the data on mitochondrial DNA (mtDNA) polymorphism, genetic structures of the four Turkic-speaking ethnic groups of Altai-Sayan highlands, Southern Altaians (Altai-Kizhi), Khakassians, Shorians, and Sojots, were described. Mitochondrial gene pools of the populations examined were characterized by different ratios between Mongoloid (M*, C, D, E, G, A, B, and F) and Caucasoid (H, U, T, J, and K) mtDNA lineages. All the populations studied had a strongly pronounced Mongoloid component, the frequency of which was 88.2% in Sojots, 75.9% in Khakassians, 67.4% in Altaians, and 64.3% in Shorians. Maximum frequency of the Caucasoid component (35.7%) was observed in Shorians. Phylogenetic and statistical analyses of the mtDNA group frequency distribution patterns in the gene pools of the ethnic populations of Altai-Sayan highlands and the adjacent territories showed that the populations of the region fell into three groups. The first group included Khakassians, Tuvinians and Altaians, the second group consisted of Sojots, Buryats, and Mongols, while the third group was composed of Uigurs, Kazakhs, and Kyrgyzes. The isolated position of Shorians among the populations examined can be explained by their different anthropological composition and their presumptive relatedness to Finno-Ugric populations of Siberia.  相似文献   

8.
Genetic diversity has been analyzed in 22 ethnic groups of the Caucasus on the basis of data on Y-chromosome and mitochondrial DNA (mtDNA) markers, as well as genome-wide data on autosomal single-nucleotide polymorphisms (SNPs). It has been found that the West Asian component is prevailing in all ethnic groups studied except for Nogays. This Near Eastern ancestral component has proved to be characteristic of Caucasian populations and almost entirely absent in their northern neighbors inhabiting the Eastern European Plain. Turkic-speaking populations, except Nogays, did not exhibit an increased proportion of Eastern Eurasian mtDNA or Y-chromosome haplogroups compared to some Abkhaz-Adyghe populations (Adygs and Kabardians). Genome-wide SNP analysis has also shown substantial differences of Nogays from all other Caucasian populations studied. However, the characteristic difference of Nogays from other populations of the Caucasus seems somewhat ambiguous in terms of the R1a1a-M17(M198) and R1b1b1-M73 haplogroups of the Y chromosome. The state of these haplogroups in Turkic-speaking populations of the Caucasus requires further study.  相似文献   

9.
Detailed analysis of the population structure of Dagestan ethnic groups based on data on the AB0 and Rhesus blood groups has been carried out. A total of 32101 representatives of the nine largest ethnic groups of Dagestan (from 682 auls in 46 raions) have been examined. This allows a comprehensive genetic landscape of the Dagestan population to be drawn. Comparison of the ethnic groups studied with other Caucasian ethnic groups makes it possible to determine the position of the Dagestan gene pool in the total structure of the Caucasian gene pool.  相似文献   

10.
To study the molecular genetic basis of human aging and longevity, the allele and genotype frequencies of the 192Q/R polymorphism of PON1 were compared for ethnic Tatars of the younger (1–20 years), middle (21–55 years), elderly (56–74 years), senile (75–89 years), and long-lived (90–109 years) age groups (in total, 1116 people). The PON1 alleles were identified using PCR and restriction enzyme analysis. In the total samples, the frequencies of genotypes Q/Q, Q/R, and R/R were 46.15, 44.35, and 9.5%, respectively, and the frequencies of alleles Q and R were 68.32 and 31.68%, respectively. Some age groups significantly differed from each other in allele and genotype frequencies. The frequency of allele R in the senile group (28.46%) was significantly lower than in the younger group (37.42%, P = 0.009). However, the long-lived displayed significantly higher frequencies of allele R (P = 0.005) and genotype R/R (P = 0.01) as compared with the senile group.  相似文献   

11.
Summary A total of 1242 individuals from six Chinese ethnic groups were studied with respect to the glyoxalase I polymorphism using agarose gel electrophoresis. The GLO1*1 gene frequency and the number of subjects tested in each population are as follows: Uygur 0.2466 (219), Hui 0.1621 (219), Dong 0.1866 (201), Bai 0.1921 (203), Tujia 0.1075 (200), and Maio 0.1600 (200). The differences in the GLO1 gene frequencies between some of these populations are significant.  相似文献   

12.
Polymorphism of the promoter region of the angiotensinogen gene (ATG) and an angiotensin I-converting enzyme gene (ACE) insertion/deletion (I/D) polymorphism were studied in three different groups of Kazakhs (control group, patients with cardiovascular disease (CAD) and patients with arterial hypertension (AH)) using three methods. A comparative analysis of the distribution of genotype and allele frequencies was conducted.  相似文献   

13.
A population genetic study of the polymorphism in the first hypervariable segment (HVSI) of mitochondrial DNA control region was carried out for three ethnic populations of the Volga-Ural region, Bashkirs, Russians, and Komi-Permyaks. This analysis showed that most of the mtDNA HVSI haplotypes detected in the populations of Bashkirs, Russians and Komi-Permyaks contained the combinations of nucleotide substitutions detected earlier in Asian, European, and Finno-Ugric populations. These findings are consistent with historical, anthropological, and ethnographical data suggesting the presence of European and Mongoloid components of different geographical descent in the gene pool of the contemporary population of the Volga-Ural region. The data on the genetic structure and the phylogenetic relationships between populations of the Volga-Ural region based on modern molecular genetic methods of mitochondrial genome investigation would be a substantial addition to the already existing information for some other regions of Europe and Asia. These data would provide more complete examination of the development of interethnic diversity of mitochondrial gene pools of contemporary ethnic populations with the purpose of reconstructing the genetic demographic processes that accompanied peopling of the Middle Ural and Volga region.  相似文献   

14.
The frequencies of 33 alleles of 12 loci of immunological and biochemical gene markers (ABO, RH, HP, GC, TF, PI, C'3, ACP1, GLO1, PGM1, ESD, and 6-PGD) have been estimated in the indigenous Russian and Ukrainian populations of Belgorod oblast. Differences of the Belgorod population from other populations of Russia with respect to the genetic structure have been determined. It has been found that the frequency distributions of all alleles studied in the Belgorod population are similar to those typical of the genetic structure of Caucasoid populations.  相似文献   

15.
Insertion/deletion and VNTR polymorphisms of the serotonin transporter gene were tested for association with schizophrenia in patients varying in ethnicity. A difference in genetic predisposition was observed for continuous and shift-like schizophrenia forms, the former tending to be associated with genotype 12/12 in Tatars and L/L in Russians.  相似文献   

16.
Frequency distribution of several genetic markers was studied in ethnic Russians from the Moscow, Bryansk, Ryazan', Kostroma, Novgorod, Arkhangel'sk, and Sverdlovsk oblasts and Udmurtiya. Systems AB0, RH, HP, TF, GC, PI, C'3, ACP1, PGM1, ESD, GLO1, 6PGD, and AK were analyzed in most samples. New data on informative polymorphic genetic loci showed that the Russian gene pool mostly displays Caucasoid features. In addition, Y-chromosomal short tandem repeats (STRs) DYS19, DYS390, and YCAII were analyzed in the Russian samples. STRs of the chromosome are particularly valuable for elucidating ethnogenetic processes in Eastern Europe. Frequency distributions of the Y-chromosomal markers in Russians were intermediate between those of West European populations and eastern Finno-Ugric ethnoses of the Volga region. A marked longitudinal gradient was revealed for frequencies of several molecular markers.  相似文献   

17.
Multiple sclerosis (MS) is a multifactorial disease of the central nervous system with pronounced hereditary predisposition. The purpose of the study was to test the assumption on the involvement of the apolipoprotein E gene (APOE) polymorphism in exon 4 in the development of MS in ethnic Russians. Samples independently collected in Moscow (106 MS cases and 189 control healthy volunteers), Sverdlovsk oblast (54 and 109, respectively), and the Republic of Bashkortostan (119 and 285, respectively) were examined. Genotypes for 2059C/T and 2197C/T polymorphisms of the APOE gene, which determine the amino acid substitutions C112R and R158C in apolipoprotein E, were analyzed by polymerase chain reaction followed by restriction analysis of amplificates. No statistically significant differences in genotype or allele frequencies were found between the control group and the group of MS cases. The APOE*4 allele is not associated with the risk of MS in ethnic Russians.  相似文献   

18.
Gene pool and gene geography are discussed from the point of view of their conceptual history beginning from the original concept of A.S. Serebrovski? (1928). Difference between the present-day gene geography and gene geography of gene pool is accentuated: the former only represents a portion of the latter. Historical and territorial integrity of the USSR population gene pool, in conjunction with its huge diversity, is the main problem being analysed by various means of computerized genetic cartography. Coupled with the gene frequency mapping, following methods were also used: mapping of average heterozygosity, of interpopulation differentiation, of principal component scores and mapping of geographical trend for each mapped genetic parameter. The work is based on 100 allelic genes and haplotypes from 30 independent loci studied on the average in 225 local populations. Statistical analysis of gene geographical maps is based on 3975 nodes of regular cartographic net for the USSR territory. The wind rose of systematic changes in the USSR gene pool has three main geographic orientations: W-E, SW-NE and S-N. At the same time, there are only two main systematic forces of gene pool evolution: the force of social history with predominant W-E orientation and the force of natural history with predominant S-N orientation of their actions. The heterozygosity level of gene pool declines strictly in accordance with the resultant in the SW-NE direction.  相似文献   

19.
Distribution of the genetic markers of blood groups (AB0, Rhesus, MN, MNSs, P, Kell-Cellano); plasma proteins (Hp, C'3, Tf, Gc); red-cell enzymes (AcP, EstD, GLO-1) and also ABH-secretion was studied among 6 ethnic groups of Dagesthan. Distribution of gene frequencies in Dagesthan populations and other Caucasian ethnic groups was comparatively studied.  相似文献   

20.
Von Willebrand factor gene polymorphisms were studied in three Brazilian ethnic groups: Euro-Brazilians, Afro-Brazilians, and Amerindians. Six polymorphic sites were analyzed: RsaI (exon 18), NlaIV (exon 20), HphI, KpnI, D1472H, and V1565L (all four in exon 28). The allele frequencies were significantly different between Euro- and Afro-Brazilians for RsaI, HphI, D1472H, and V1565L, while in Amerindians NlaIV and HphI showed significant differences among tribes. This is the first report of these allele frequencies in Amerindians. Eighteen haplotypes were observed, and they showed significant differences between Euro- and Afro-Brazilians, among Amerindian tribes, and among the three ethnic groups. These results furnish important background data for evolutionary and anthropological investigations; in addition, they will be useful for establishing the origin and molecular characterization of the different forms of von Willebrand disease, as well as for detecting carriers and offering genetic counseling to those with this condition.  相似文献   

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