| Literature DB >> 31871928 |
Gerile Wuyun1, Yang Hu2, Zihong He3, Yanchun Li2, Xu Yan4,5.
Abstract
The DMT1 gene encodes divalent metal transporter 1, a membrane iron transport protein. Divalent metal transporter 1 influences cellular iron availability, which might further affect aerobic exercise capacity. Short tandem repeat (STR) polymorphisms have been used as genetic markers in the literature, yet the STR polymorphisms of the DMT1 gene have not been well studied. In this current study, we explored the polymorphisms of the DMT1 gene in a group of elite long-distance runners and controls, by using the PCR-RFLP (Restriction Fragment Length Polymorphism) and Gene scan technology. We found that the genotype frequency of the homozygous 258 bp STR polymorphism of the DMT1 gene (258 bp/258 bp) was significantly higher in the athlete group than in the controls (χ 2 = 14.01, p = 0.006) so does the allele frequency of the 258 bp STR polymorphism (χ 2 = 12.867, p = 0.008). These data suggested that the STR polymorphism of the DMT1 gene might be correlated with aerobic exercise capacity and the 258 bp homozygous (25 bp/258 bp) could be used as a molecular marker for the talent identification of elite long-distance runners.Entities:
Year: 2019 PMID: 31871928 PMCID: PMC6906879 DOI: 10.1155/2019/7064703
Source DB: PubMed Journal: Int J Genomics ISSN: 2314-436X Impact factor: 2.326
Basic information of the athlete group.
| Groups | No. of people | Age (year) | Height (cm) | Weight (kg) | Type of sports | Athletic level | ||
|---|---|---|---|---|---|---|---|---|
| 5, 10 km | Marathon | International | National | |||||
| Athlete (total) | 123 | 23.10 ± 5.10 | 169.29 ± 7.50 | 55.53 ± 7.45 | 92 | 31 | 43 | 79 |
| Athlete (male) | 62 | 24.27 ± 11.87 | 174.95 ± 5.13 | 61.48 ± 4.77 | 47 | 15 | 11 | 51 |
| Athlete (female) | 61 | 20.84 ± 5.31 | 163.53 ± 4.56 | 49.48 ± 3.97 | 45 | 16 | 32 | 29 |
Note: data are expressed in average ± standard deviation.
Basic information of the control group.
| Groups | No. of people | Age (year) | Height (cm) | Weight (kg) |
|---|---|---|---|---|
| Controls (total) | 102 | 20.31 ± 1.20 | 168.88 ± 8.11 | 62.84 ± 11.87 |
| Controls (male) | 52 | 20.29 ± 1.15 | 174.60 ± 5.88 | 68.36 ± 12.24 |
| Controls (female) | 50 | 20.33 ± 1.27 | 162.57 ± 4.86 | 56.80 ± 7.90 |
Note: data are expressed in average ± standard deviation.
Figure 1A presentative agarose picture of the PCR product of the DMT1 gene STR polymorphism.
Figure 2Representative picture of the GeneScan genotype data of the DMT1 gene STR polymorphism.
The genotype distribution of the DMT1 gene STR polymorphism in the athlete group.
| Groups | No. of people | Genotype (bp) | Hardy-Weinberg balance inspection | |||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 258/258 | 254/258 | 254/254 | 258/262 | 258/260 | 254/260 | 254/262 | 256/258 |
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| Athlete (total) | 123 | 68 (55.29)∗ | 33 (26.83) | 9 (7.32) | 6 (4.88) | 3 (2.44) | 1 (0.81) | 2 (1.63) | 1 (0.81) | 2.00 | 7 | 0.96 |
| Athlete (male) | 62 | 33 (53.23)# | 18 (29.03) | 5 (8.07) | 4 (6.45) | 1 (1.61) | 0 (0.00) | 1 (1.61) | 0 (0.00) | 2.00 | 5 | 0.85 |
| Athlete (female) | 61 | 35 (57.38)& | 15 (24.59) | 4 (6.56) | 2 (3.28) | 2 (3.28) | 1 (1.64) | 1 (1.64) | 1 (1.64) | 2.00 | 7 | 0.96 |
| 5.10 km group | 92 | 54 (58.70)∗ | 22 (23.91) | 6 (6.52) | 5 (5.43) | 2 (2.17) | 1 (1.09) | 1 (1.09) | 1 (1.09) | 2.00 | 7 | 0.96 |
| Marathon group | 31 | 14 (45.16) | 11 (35.48) | 3 (9.68) | 1 (3.23) | 1 (3.23) | 0 (0.00) | 1 (3.23) | 0 (0.00) | 0.00 | 6 | 1.00 |
Note: data are shown in N (%); ∗p < 0.05when compared with the control group; #p < 0.05 when compared with the males of the control group; &p < 0.05 when compared with the males of the control group.
The genotype distribution of the DMT1 gene STR polymorphism in the control group.
| Groups | No. of people | Genotype (bp) | Hardy-Weinberg balance inspection | ||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 258/258 | 254/258 | 254/254 | 258/262 | 258/260 | 254/260 | 254/262 | 256/258 | 262/262 |
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| Controls (total) | 134 | 55 (41.04) | 31 (23.13) | 9 (6.72) | 19 (14.18) | 10 (7.46) | 2 (1.49) | 5 (3.73) | 1 (0.75) | 2 (1.49) | 0.00 | 8 | 1.00 |
| Controls (male) | 70 | 29 (41.43) | 17 (24.29) | 3 (4.29) | 9 (12.86) | 8 (11.43) | 0 (0.00) | 3 (4.29) | 0 (0.00) | 1 (1.43) | 0.00 | 8 | 1.00 |
| Controls (female) | 64 | 26 (40.63) | 14 (21.88) | 6 (9.38) | 10 (15.63) | 2 (3.13) | 2 (3.13) | 2 (3.13) | 1 (1.56) | 1 (1.56) | 0.00 | 9 | 1.00 |
Note: data are shown in N (%).
The allele distribution of the DMT1 gene STR polymorphism.
| Groups | No. of people | Allele (bp) | |||||
|---|---|---|---|---|---|---|---|
| 254 | 256 | 258 | 260 | 262 | 266 | ||
| Athlete (total) | 123 | 54 (21.95) | 1 (0.41) | 179 (72.76)∗∗ | 4 (1.63) | 8 (3.25) | — |
| Athlete (male) | 62 | 29 (23.39) | 0 (0.00) | 89 (71.77)# | 1 (0.81) | 5 (4.03) | — |
| Athlete (female) | 61 | 25 (20.49) | 1 (0.82) | 90 (73.77)& | 3 (2.46) | 3 (2.46) | — |
| 5, 10 km group | 92 | 36 (19.57) | 1 (0.54) | 138 (75.00)∗ | 3 (1.63) | 6 (3.26) | — |
| Marathon group | 31 | 18 (29.03) | 0 (0.00) | 41 (66.13) | 1 (1.61) | 2 (3.23) | — |
| Control (total) | 134 | 56 (20.90) | 1 (0.37) | 172 (64.18) | 12 (4.48) | 26 (9.70) | 1 (0.37) |
| Control (male) | 70 | 26 (18.57) | 0 (0.00) | 92 (65.71) | 8 (5.71) | 14 (10.00) | 0 (0.00) |
| Control (female) | 64 | 30 (23.44) | 1 (0.78) | 80 (62.50) | 4 (3.13) | 12 (9.38) | 1 (0.78) |
Note: data are shown in N (%); ∗p < 0.05 when compared with the control group; ∗∗p < 0.01 when compared with the control group; #p < 0.05 when compared with the male controls.