Acta Agriculturae Zhejiangensis ›› 2024, Vol. 36 ›› Issue (7): 1502-1510.DOI: 10.3969/j.issn.1004-1524.20230760
• Animal Science • Previous Articles Next Articles
MA Li1(), LAN Yi2, XIE Bingxin2, ZHOU Chunlu2, LUO Shuyuan2, XU Wenkun3, DONG Xinxing2,*(
), YAN Dawei2,4,*(
)
Received:
2023-06-12
Online:
2024-07-25
Published:
2024-08-05
CLC Number:
MA Li, LAN Yi, XIE Bingxin, ZHOU Chunlu, LUO Shuyuan, XU Wenkun, DONG Xinxing, YAN Dawei. Study of polymorphism in the VRTN gene and its association with production traits in (Duroc×Saba)♂×[Yorkshire×(Landrace×Saba)]♀[J]. Acta Agriculturae Zhejiangensis, 2024, 36(7): 1502-1510.
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URL: http://www.zjnyxb.cn/EN/10.3969/j.issn.1004-1524.20230760
引物名 Name of primer | 引物序列 Sequence of primer(5'→3') | 退火引物 Annealing temperature/℃ | 产物长度 Length of PCR product/bp | 位置 Site |
---|---|---|---|---|
VRTN-1F | GGCAGGGAAGGTGTTTGTTA[ | 60.0 | 120/411 | 启动子Promoter |
VRTN-1R | GACTGGCCTCTGTCCCTTG | |||
VRTN-2F | GCCTGGCTTCAGACTCTCTT | 61.2 | 593 | 外显子1 Exon1 |
VRTN-2R | TCGTTTGGGTCACTCCTTG | |||
VRTN-3F | AACAGAGGAACCAGAAGCAT | 62.0 | 1 412 | 外显子2-1 Exon2-1 |
VRTN-3R | TCCAGGCATAATAGGTAGAGC | |||
VRTN-4F | CCAATGTGTGGCACTTGT | 61.2 | 1 537 | 外显子2-2 Exon2-2 |
VRTN-4R | TGTAGTAGGTAGAGCGAGCAGT | |||
VRTN-5F | AGGAGGTGGAGGAGAAACAG | 62.0 | 1 407 | 外显子2-3 Exon2-3 |
VRTN-5R | AGAAATGGTCACAGTCAGTCC |
Table 1 Primer information of VRTN gene amplification
引物名 Name of primer | 引物序列 Sequence of primer(5'→3') | 退火引物 Annealing temperature/℃ | 产物长度 Length of PCR product/bp | 位置 Site |
---|---|---|---|---|
VRTN-1F | GGCAGGGAAGGTGTTTGTTA[ | 60.0 | 120/411 | 启动子Promoter |
VRTN-1R | GACTGGCCTCTGTCCCTTG | |||
VRTN-2F | GCCTGGCTTCAGACTCTCTT | 61.2 | 593 | 外显子1 Exon1 |
VRTN-2R | TCGTTTGGGTCACTCCTTG | |||
VRTN-3F | AACAGAGGAACCAGAAGCAT | 62.0 | 1 412 | 外显子2-1 Exon2-1 |
VRTN-3R | TCCAGGCATAATAGGTAGAGC | |||
VRTN-4F | CCAATGTGTGGCACTTGT | 61.2 | 1 537 | 外显子2-2 Exon2-2 |
VRTN-4R | TGTAGTAGGTAGAGCGAGCAGT | |||
VRTN-5F | AGGAGGTGGAGGAGAAACAG | 62.0 | 1 407 | 外显子2-3 Exon2-3 |
VRTN-5R | AGAAATGGTCACAGTCAGTCC |
引物 Primer | 预变性 Pre-denaturation | 变性 Denaturation | 退火 Annealing | 延伸 Extension | 循环 Cycles | 后延伸 Post-extension |
---|---|---|---|---|---|---|
VRTN-1 VRTN-2 VRTN-3 VRTN-4 VRTN-5 | 94 ℃ 4 min 94 ℃ 4 min 94 ℃ 4 min 94 ℃ 4 min 94 ℃ 4 min | 94 ℃ 30 s 94 ℃ 40 s 94 ℃ 90 s 94 ℃ 98 s 94 ℃ 90 s | 60.0 ℃ 30 s 61.2 ℃ 40 s 62.0 ℃ 90 s 61.2 ℃ 98 s 62.0 ℃ 90 s | 72 ℃ 30 s 72 ℃ 40 s 72 ℃ 90 s 72 ℃ 98 s 72 ℃ 90 s | 35 35 35 35 35 | 72 ℃ 8 min 72 ℃ 8 min 72 ℃ 8 min 72 ℃ 8 min 72 ℃ 8 min |
Table 2 PCR reaction conditions of VRTN gene
引物 Primer | 预变性 Pre-denaturation | 变性 Denaturation | 退火 Annealing | 延伸 Extension | 循环 Cycles | 后延伸 Post-extension |
---|---|---|---|---|---|---|
VRTN-1 VRTN-2 VRTN-3 VRTN-4 VRTN-5 | 94 ℃ 4 min 94 ℃ 4 min 94 ℃ 4 min 94 ℃ 4 min 94 ℃ 4 min | 94 ℃ 30 s 94 ℃ 40 s 94 ℃ 90 s 94 ℃ 98 s 94 ℃ 90 s | 60.0 ℃ 30 s 61.2 ℃ 40 s 62.0 ℃ 90 s 61.2 ℃ 98 s 62.0 ℃ 90 s | 72 ℃ 30 s 72 ℃ 40 s 72 ℃ 90 s 72 ℃ 98 s 72 ℃ 90 s | 35 35 35 35 35 | 72 ℃ 8 min 72 ℃ 8 min 72 ℃ 8 min 72 ℃ 8 min 72 ℃ 8 min |
指标Index | 样本量 | 平均数±标准差 | 最小值 | 最大值 |
---|---|---|---|---|
30~100 kg日增重Average daily gain of 30-100 kg/(g·d-1) | 321 | 520.69±10.39 | 490.74 | 551.18 |
100 kg活体背膘厚Backfat thickness of 100 kg body weight/mm | 321 | 29.46±0.14 | 29.10 | 29.80 |
屠宰率Dressing ratio/% | 321 | 75.56±0.26 | 74.80 | 76.32 |
肋骨数/对Rib numbers/pair | 321 | 14.03±0.17 | 13.00 | 15.00 |
胴体直长Carcass straight length/cm | 321 | 97.93±0.90 | 95.50 | 100.00 |
胴体斜长Carcass oblique length/cm | 321 | 84.88±0.91 | 82.50 | 87.00 |
平均背膘厚Average backfat/mm | 321 | 33.61±0.81 | 31.19 | 36.39 |
6~7肋膘厚6-7 intercostal fat thickness/mm | 321 | 36.24±1.01 | 33.30 | 39.20 |
皮厚Skin thickness/mm | 321 | 3.67±0.23 | 30.00 | 43.40 |
眼肌面积Area of longissimus dorsi/cm2 | 321 | 34.51±2.14 | 28.19 | 40.92 |
瘦肉率Lean meat percentage/% | 321 | 54.35±0.82 | 51.90 | 56.74 |
脂率Fat percentage/% | 321 | 26.74±0.94 | 23.92 | 29.46 |
皮率Skin percentage/% | 321 | 8.84±0.22 | 8.18 | 9.47 |
骨率Bone percentage/% | 321 | 9.85±0.23 | 9.17 | 10.54 |
pH | 321 | 6.15±0.04 | 6.03 | 6.27 |
肉色/分Meat colour | 321 | 3.27±0.05 | 3.00 | 3.50 |
大理石纹/分Marbling score | 321 | 2.92±0.05 | 2.50 | 3.50 |
失水率Water loss ratio/% | 321 | 16.09±0.35 | 15.05 | 17.12 |
熟肉率Cooked meat percentage/% | 321 | 60.57±0.44 | 59.25 | 61.89 |
滴水损失Drop loss/% | 321 | 2.17±0.09 | 1.90 | 2.43 |
Table 3 Phenotypic statistical results of the DS×YLS population
指标Index | 样本量 | 平均数±标准差 | 最小值 | 最大值 |
---|---|---|---|---|
30~100 kg日增重Average daily gain of 30-100 kg/(g·d-1) | 321 | 520.69±10.39 | 490.74 | 551.18 |
100 kg活体背膘厚Backfat thickness of 100 kg body weight/mm | 321 | 29.46±0.14 | 29.10 | 29.80 |
屠宰率Dressing ratio/% | 321 | 75.56±0.26 | 74.80 | 76.32 |
肋骨数/对Rib numbers/pair | 321 | 14.03±0.17 | 13.00 | 15.00 |
胴体直长Carcass straight length/cm | 321 | 97.93±0.90 | 95.50 | 100.00 |
胴体斜长Carcass oblique length/cm | 321 | 84.88±0.91 | 82.50 | 87.00 |
平均背膘厚Average backfat/mm | 321 | 33.61±0.81 | 31.19 | 36.39 |
6~7肋膘厚6-7 intercostal fat thickness/mm | 321 | 36.24±1.01 | 33.30 | 39.20 |
皮厚Skin thickness/mm | 321 | 3.67±0.23 | 30.00 | 43.40 |
眼肌面积Area of longissimus dorsi/cm2 | 321 | 34.51±2.14 | 28.19 | 40.92 |
瘦肉率Lean meat percentage/% | 321 | 54.35±0.82 | 51.90 | 56.74 |
脂率Fat percentage/% | 321 | 26.74±0.94 | 23.92 | 29.46 |
皮率Skin percentage/% | 321 | 8.84±0.22 | 8.18 | 9.47 |
骨率Bone percentage/% | 321 | 9.85±0.23 | 9.17 | 10.54 |
pH | 321 | 6.15±0.04 | 6.03 | 6.27 |
肉色/分Meat colour | 321 | 3.27±0.05 | 3.00 | 3.50 |
大理石纹/分Marbling score | 321 | 2.92±0.05 | 2.50 | 3.50 |
失水率Water loss ratio/% | 321 | 16.09±0.35 | 15.05 | 17.12 |
熟肉率Cooked meat percentage/% | 321 | 60.57±0.44 | 59.25 | 61.89 |
滴水损失Drop loss/% | 321 | 2.17±0.09 | 1.90 | 2.43 |
品种(组合) Breed (Combination) | 基因型 Genotype | 基因型频率(个体数) Genotypic frequency (Numbers) | 等位基因 Allele | 等位基因频率 Allelic frequency | 杂合度 H | 多态信息含量 PIC |
---|---|---|---|---|---|---|
杜撒×大长撒DS×YLS | Q/Q | 0.040 5(13) | Q | 0.386 3 | 0.474 1 | 0.361 7 |
Q/Wt | 0.691 6(222) | |||||
Wt/Wt | 0.267 9(86) | Wt | 0.613 7 | |||
杜洛克Duroc | Q/Q | 0.220 6(15) | Q | 0.558 8 | 0.493 1 | 0.371 5 |
Q/Wt | 0.676 5(46) | |||||
Wt/Wt | 0.102 9(7) | Wt | 0.441 2 | |||
长白Landrace | Q/Q | 0.134 6(14) | Q | 0.432 7 | 0.490 9 | 0.370 4 |
Q/Wt | 0.596 2(62) | |||||
Wt/Wt | 0.269 2(28) | Wt | 0.567 3 | |||
大白Large White | Q/Q | 0.442 5(50) | Q | 0.663 7 | 0.446 4 | 0.346 8 |
Q/Wt | 0.442 5(50) | |||||
Wt/Wt | 0.115 0(13) | Wt | 0.336 3 |
Table 4 Genetic diversity test results of g. 97615896_97615897ins291 sites of VRTN gene in four pigs
品种(组合) Breed (Combination) | 基因型 Genotype | 基因型频率(个体数) Genotypic frequency (Numbers) | 等位基因 Allele | 等位基因频率 Allelic frequency | 杂合度 H | 多态信息含量 PIC |
---|---|---|---|---|---|---|
杜撒×大长撒DS×YLS | Q/Q | 0.040 5(13) | Q | 0.386 3 | 0.474 1 | 0.361 7 |
Q/Wt | 0.691 6(222) | |||||
Wt/Wt | 0.267 9(86) | Wt | 0.613 7 | |||
杜洛克Duroc | Q/Q | 0.220 6(15) | Q | 0.558 8 | 0.493 1 | 0.371 5 |
Q/Wt | 0.676 5(46) | |||||
Wt/Wt | 0.102 9(7) | Wt | 0.441 2 | |||
长白Landrace | Q/Q | 0.134 6(14) | Q | 0.432 7 | 0.490 9 | 0.370 4 |
Q/Wt | 0.596 2(62) | |||||
Wt/Wt | 0.269 2(28) | Wt | 0.567 3 | |||
大白Large White | Q/Q | 0.442 5(50) | Q | 0.663 7 | 0.446 4 | 0.346 8 |
Q/Wt | 0.442 5(50) | |||||
Wt/Wt | 0.115 0(13) | Wt | 0.336 3 |
品种(组合) Breed (Combination) | 基因型 Genotype | 基因型频率(个体数) Genotypic frequency (Numbers) | 等位基因 Allele | 等位基因频率 Allelic frequency | 杂合度 H | 多态信息含量 PIC |
---|---|---|---|---|---|---|
杜撒×大长撒DS×YLS | GG | 0.912 8(293) | G | 0.956 4 | 0.083 4 | 0.079 9 |
GA | 0.087 2(28) | |||||
AA | 0(0) | A | 0.043 6 | |||
杜洛克Duroc | GG | 1.000 0(68) | G | 1.000 0 | 0 | 0 |
GA | 0(0) | |||||
AA | 0(0) | A | 0 | |||
长白Landrace | GG | 1.000 0(104) | G | 1.000 0 | 0 | 0 |
GA | 0(0) | |||||
AA | 0(0) | A | 0 | |||
大白Large White | GG | 1.000 0(113) | G | 1.000 0 | 0 | 0 |
GA | 0(0) | |||||
AA | 0(0) | A | 0 |
Table 5 Genetic diversity test results of g.97622607G>A sites of VRTN gene in four pigs
品种(组合) Breed (Combination) | 基因型 Genotype | 基因型频率(个体数) Genotypic frequency (Numbers) | 等位基因 Allele | 等位基因频率 Allelic frequency | 杂合度 H | 多态信息含量 PIC |
---|---|---|---|---|---|---|
杜撒×大长撒DS×YLS | GG | 0.912 8(293) | G | 0.956 4 | 0.083 4 | 0.079 9 |
GA | 0.087 2(28) | |||||
AA | 0(0) | A | 0.043 6 | |||
杜洛克Duroc | GG | 1.000 0(68) | G | 1.000 0 | 0 | 0 |
GA | 0(0) | |||||
AA | 0(0) | A | 0 | |||
长白Landrace | GG | 1.000 0(104) | G | 1.000 0 | 0 | 0 |
GA | 0(0) | |||||
AA | 0(0) | A | 0 | |||
大白Large White | GG | 1.000 0(113) | G | 1.000 0 | 0 | 0 |
GA | 0(0) | |||||
AA | 0(0) | A | 0 |
指标 Index | 基因型Genotype | ||
---|---|---|---|
Wt/Wt | Q/Wt | Q/Q | |
样本量Number | 86 | 222 | 13 |
30~100 kg日增重Average daily gain of 30-100 kg/(g·d-1) | 513.56±10.49 | 523.80±6.54 | 514.70±26.98 |
100 kg活体背膘厚Backfat thickness of 100 kg body weight/mm | 29.64±0.10 a | 29.40±0.06 ab | 29.28±0.26 b |
屠宰率Dressing ratio/% | 75.69±0.27 | 75.53±0.17 | 75.12±0.70 |
肋骨数/对Rib numbers/pair | 13.78±0.06 B | 14.11±0.04 A | 14.41±0.15 A |
胴体直长Carcass straight length/cm | 97.18±0.80 | 98.30±0.50 | 96.63±2.07 |
胴体斜长Carcass oblique length/cm | 83.78±0.66 b | 85.34±0.41 a | 84.22±1.70 ab |
平均背膘厚Average backfat/mm | 34.10±0.80 | 33.50±0.50 | 32.20±2.10 |
6~7肋膘厚6-7 intercostal fat thickness/mm | 37.30±0.90 | 35.90±0.50 | 35.00±2.20 |
皮厚Skin thickness/mm | 3.60±0.20 | 3.70±0.20 | 3.60±0.60 |
眼肌面积Area of longissimus dorsi/cm2 | 31.33±1.66 b | 35.67±0.40 a | 35.71±0.65 a |
瘦肉率Lean meat percentage/% | 54.18±0.59 b | 54.24±0.39 b | 57.41±1.52 a |
脂率Fat percentage/% | 27.39±0.61 a | 26.69±0.38 a | 23.29±1.56 b |
皮率Skin percentage/% | 8.64±0.20 | 8.91±0.13 | 8.94±0.52 |
骨率Bone percentage/% | 9.68±0.22 | 9.88±0.13 | 10.34±0.56 |
pH | 6.19±0.03 | 6.14±0.02 | 6.09±0.08 |
肉色/分Meat colour | 3.29±0.05 | 3.25±0.03 | 3.38±0.13 |
大理石纹/分Marbling score | 2.91±0.06 | 2.92±0.04 | 2.87±0.15 |
失水率Water loss ratio/% | 16.28±0.36 | 15.99±0.22 | 16.46±0.92 |
熟肉率Cooked meat percentage/% | 60.22±0.36 | 60.76±0.23 | 59.67±0.94 |
滴水损失Drop loss/% | 2.09±0.09 | 2.19±0.06 | 2.26±0.23 |
Table 6 Different genotypes of VRTN g.97615896_97615897ins291 gene with production traits in DS×YLS
指标 Index | 基因型Genotype | ||
---|---|---|---|
Wt/Wt | Q/Wt | Q/Q | |
样本量Number | 86 | 222 | 13 |
30~100 kg日增重Average daily gain of 30-100 kg/(g·d-1) | 513.56±10.49 | 523.80±6.54 | 514.70±26.98 |
100 kg活体背膘厚Backfat thickness of 100 kg body weight/mm | 29.64±0.10 a | 29.40±0.06 ab | 29.28±0.26 b |
屠宰率Dressing ratio/% | 75.69±0.27 | 75.53±0.17 | 75.12±0.70 |
肋骨数/对Rib numbers/pair | 13.78±0.06 B | 14.11±0.04 A | 14.41±0.15 A |
胴体直长Carcass straight length/cm | 97.18±0.80 | 98.30±0.50 | 96.63±2.07 |
胴体斜长Carcass oblique length/cm | 83.78±0.66 b | 85.34±0.41 a | 84.22±1.70 ab |
平均背膘厚Average backfat/mm | 34.10±0.80 | 33.50±0.50 | 32.20±2.10 |
6~7肋膘厚6-7 intercostal fat thickness/mm | 37.30±0.90 | 35.90±0.50 | 35.00±2.20 |
皮厚Skin thickness/mm | 3.60±0.20 | 3.70±0.20 | 3.60±0.60 |
眼肌面积Area of longissimus dorsi/cm2 | 31.33±1.66 b | 35.67±0.40 a | 35.71±0.65 a |
瘦肉率Lean meat percentage/% | 54.18±0.59 b | 54.24±0.39 b | 57.41±1.52 a |
脂率Fat percentage/% | 27.39±0.61 a | 26.69±0.38 a | 23.29±1.56 b |
皮率Skin percentage/% | 8.64±0.20 | 8.91±0.13 | 8.94±0.52 |
骨率Bone percentage/% | 9.68±0.22 | 9.88±0.13 | 10.34±0.56 |
pH | 6.19±0.03 | 6.14±0.02 | 6.09±0.08 |
肉色/分Meat colour | 3.29±0.05 | 3.25±0.03 | 3.38±0.13 |
大理石纹/分Marbling score | 2.91±0.06 | 2.92±0.04 | 2.87±0.15 |
失水率Water loss ratio/% | 16.28±0.36 | 15.99±0.22 | 16.46±0.92 |
熟肉率Cooked meat percentage/% | 60.22±0.36 | 60.76±0.23 | 59.67±0.94 |
滴水损失Drop loss/% | 2.09±0.09 | 2.19±0.06 | 2.26±0.23 |
指标 Trait | 基因型Genotype | |
---|---|---|
GG | GA | |
样本量Number | 293 | 28 |
30~100 kg日增重Average daily gain of 30-100 kg/(g·d-1) | 576.74±18.08 A | 515.31±5.60 B |
100 kg活体背膘厚Backfat thickness of 100 kg body weight/mm | 29.47±0.05 | 29.43±0.18 |
屠宰率Dressing ratio/% | 75.63±0.15 | 74.69±0.48 |
肋骨数/对Rib numbers/pair | 14.05±0.03 | 13.84±0.11 |
胴体直长Carcass straight length/cm | 97.85±0.44 | 98.72±1.42 |
胴体斜长Carcass oblique length/cm | 84.72±0.36 | 86.55±1.16 |
平均背膘厚Average backfat/mm | 33.70±0.40 | 32.60±1.40 |
6-7肋膘厚6-7 intercostal fat thickness/mm | 36.40±0.50 | 35.10±1.50 |
皮厚Skin thickness/mm | 3.60±0.10 | 3.90±0.40 |
眼肌面积Area of longissimus dorsi/cm2 | 35.66±0.35 | 33.98±1.14 |
瘦肉率Lean meat percentage/% | 54.58±0.32 a | 52.05±1.04 b |
脂率Fat percentage/% | 26.67±0.33 | 27.41±1.08 |
皮率Skin percentage/% | 8.83±0.11 | 8.94±0.36 |
骨率Bone percentage/% | 9.88±0.12 | 9.54±0.38 |
pH | 6.14±0.02 | 6.28±0.06 |
肉色/分Meat colour | 3.26±0.03 | 3.37±0.09 |
大理石纹/分Marbling score | 2.90±0.03 | 3.02±0.10 |
失水率Water loss ratio/% | 16.07±0.19 | 16.31±0.63 |
熟肉率Cooked meat percentage/% | 60.58±0.20 | 60.52±0.64 |
滴水损失Drop loss/% | 2.17±0.05 | 2.20±0.17 |
Table 7 Different genotypes of VRTN g.97622607G>A gene with production traits in DS×YLS
指标 Trait | 基因型Genotype | |
---|---|---|
GG | GA | |
样本量Number | 293 | 28 |
30~100 kg日增重Average daily gain of 30-100 kg/(g·d-1) | 576.74±18.08 A | 515.31±5.60 B |
100 kg活体背膘厚Backfat thickness of 100 kg body weight/mm | 29.47±0.05 | 29.43±0.18 |
屠宰率Dressing ratio/% | 75.63±0.15 | 74.69±0.48 |
肋骨数/对Rib numbers/pair | 14.05±0.03 | 13.84±0.11 |
胴体直长Carcass straight length/cm | 97.85±0.44 | 98.72±1.42 |
胴体斜长Carcass oblique length/cm | 84.72±0.36 | 86.55±1.16 |
平均背膘厚Average backfat/mm | 33.70±0.40 | 32.60±1.40 |
6-7肋膘厚6-7 intercostal fat thickness/mm | 36.40±0.50 | 35.10±1.50 |
皮厚Skin thickness/mm | 3.60±0.10 | 3.90±0.40 |
眼肌面积Area of longissimus dorsi/cm2 | 35.66±0.35 | 33.98±1.14 |
瘦肉率Lean meat percentage/% | 54.58±0.32 a | 52.05±1.04 b |
脂率Fat percentage/% | 26.67±0.33 | 27.41±1.08 |
皮率Skin percentage/% | 8.83±0.11 | 8.94±0.36 |
骨率Bone percentage/% | 9.88±0.12 | 9.54±0.38 |
pH | 6.14±0.02 | 6.28±0.06 |
肉色/分Meat colour | 3.26±0.03 | 3.37±0.09 |
大理石纹/分Marbling score | 2.90±0.03 | 3.02±0.10 |
失水率Water loss ratio/% | 16.07±0.19 | 16.31±0.63 |
熟肉率Cooked meat percentage/% | 60.58±0.20 | 60.52±0.64 |
滴水损失Drop loss/% | 2.17±0.05 | 2.20±0.17 |
[1] | BORCHERS N, REINSCH N, KALM E. The number of ribs and vertebrae in a Piétrain cross: variation, heritability and effects on performance traits[J]. Journal of Animal Breeding and Genetics, 2004, 121(6): 392-403. |
[2] | KING J W B, ROBERTS R C. Carcass length in the bacon pig; its association with vertebrae numbers and prediction from radiographs of the young pig[J]. Animal Production, 1960, 2(1): 59-65. |
[3] | SATO S, UEMOTO Y, KIKUCHI T, et al. SNP- and haplotype-based genome-wide association studies for growth, carcass, and meat quality traits in a Duroc multigenerational population[J]. BMC Genetics, 2016, 17: 60. |
[4] | BERGE S. Genetical researches on the number of vertebrae in the pig[J]. Journal of Animal Science, 1948, 7(2): 233-238. |
[5] | SATO S, OYAMADA Y, ATSUJI K, et al. Quantitative trait loci analysis for growth and carcass traits in a Meishan×Duroc F2 resource population[J]. Journal of Animal Science, 2003, 81(12): 2938-2949. |
[6] | MIKAWA S, SATO S, NII M, et al. Identification of a second gene associated with variation in vertebral number in domestic pigs[J]. BMC Genetics, 2011, 12: 5. |
[7] | 欧阳子璇. 猪7号染色体上影响脊椎数变异的VRTN因果突变位点的筛选与验证[D]. 南昌: 江西农业大学, 2012. |
OUYANG Z X. Identification of VRTN causal variations for vertebral numbers on pig Chromosome7[D]. Nanchang: Jiangxi Agricultural University, 2012.(in Chinese with English abstract) | |
[8] | 范寅. 鉴别猪7号染色体影响脊椎数变异的因果突变位点[D]. 南昌: 江西农业大学, 2014. |
FAN Y. Identification of the causative mutation underlying the QTL for vertebral numbers on pig Chromosome7[D]. Nanchang: Jiangxi Agricultural University, 2014.(in Chinese with English abstract) | |
[9] | SHAO M, WANG M, LIU Y Y, et al. Vegetally localised VRTN functions as a novel repressor to modulate bmp2b transcription during dorsoventral patterning in zebrafish[J]. Development, 2017, 144(18): 3361-3374. |
[10] | 张慧. 解析VRTN基因因果突变调控猪胸椎数的分子机理[D]. 南昌: 江西农业大学, 2018. |
ZHANG H. Unravelling the molecular mechanism of VRTN causative mutations for thoracic vertebral number in pigs[D]. Nanchang: Jiangxi Agricultural University, 2018.(in Chinese with English abstract) | |
[11] | DUAN Y Y, ZHANG H, ZHANG Z, et al. VRTN is required for the development of thoracic vertebrae in mammals[J]. International Journal of Biological Sciences, 2018, 14(6): 667-681. |
[12] | 韩云珍, 洪渊, 薛永钦, 等. 美系大白猪VRTN和MC4R基因多态性及其与生长和胴体性状的关联分析[J]. 畜牧与兽医, 2022, 54(12): 9-14. |
HAN Y Z, HONG Y, XUE Y Q, et al. Association between polymorphism of the VRTN and MC4R genes and the growth and carcass traits of American Large White pigs[J]. Animal Husbandry & Veterinary Medicine, 2022, 54(12): 9-14.(in Chinese with English abstract) | |
[13] | 陈伟, 陈才, 王宵燕, 等. 猪VRTN基因SINE转座子插入多态与生长和繁殖性状的关联分析[J]. 农业生物技术学报, 2019, 27(3): 464-470. |
CHEN W, CHEN C, WANG X Y, et al. Association analysis of the SINE insertion polymorphism in VRTN gene with growth and reproductive traits in pig(Sus scrofa domesticus)[J]. Journal of Agricultural Biotechnology, 2019, 27(3): 464-470.(in Chinese with English abstract) | |
[14] | 闫德超. 大白猪MC4R、IGF2和VRTN基因的多态性及其与生产性状的关联分析[D]. 武汉: 华中农业大学, 2017. |
YAN D C. Polymorphism and association analysis of MC4R, IGF2 and VRTN genes with production traits in large white pigs[D]. Wuhan: Huazhong Agricultural University, 2017.(in Chinese with English abstract) | |
[15] | HIROSE K, MIKAWA S, OKUMURA N, et al. Association of swine vertnin (VRTN) gene with production traits in Duroc pigs improved using a closed nucleus breeding system[J]. Animal Science Journal, 2013, 84(3): 213-221. |
[16] | NAKANO H, SATO S, UEMOTO Y, et al. Effect of VRTN gene polymorphisms on Duroc pig production and carcass traits, and their genetic relationships[J]. Animal Science Journal, 2015, 86(2): 125-131. |
[17] | YANG J, HUANG L S, YANG M, et al. Possible introgression of the VRTN mutation increasing vertebral number, carcass length and teat number from Chinese pigs into European pigs[J]. Scientific Reports, 2016, 6: 19240. |
[18] | 莫家远, 高九昱, 孙乐, 等. 巴马香猪VRTN基因克隆、表达及其多态性与繁殖性状的关联分析[J]. 畜牧兽医学报, 2020, 51(5): 1007-1018. |
MO J Y, GAO J Y, SUN L, et al. Cloning, expression of VRTN gene and association analysis of its polymorphism with reproductive traits in Bama Xiang pigs[J]. Chinese Journal of Animal and Veterinary Sciences, 2020, 51(5): 1007-1018.(in Chinese with English abstract) | |
[19] | 中华人民共和国农业部. 瘦肉型猪胴体性状测定技术规范: NY/T 825—2004[S]. 北京: 中国农业出版社, 2004. |
[20] | 中华人民共和国农业部. 猪肌肉品质测定技术规范: NY/T 821—2004[S]. 北京: 中国农业出版社, 2004. |
[21] | FAN Y, XING Y Y, ZHANG Z Y, et al. A further look at porcine chromosome 7 reveals VRTN variants associated with vertebral number in Chinese and Western pigs[J]. PLoS One, 2013, 8(4): e62534. |
[22] | 吴一尘, 杜星, 李平华, 等. 苏淮猪VRTN基因克隆、组织表达特征与多态性分析[J]. 中国农业科学, 2016, 49(18): 3639-3648. |
WU Y C, DU X, LI P H, et al. Sequence cloning, tissue expression profile and polymorphism of VRTN gene in suhuai pig[J]. Scientia Agricultura Sinica, 2016, 49(18): 3639-3648.(in Chinese with English abstract) | |
[23] | 卢世豪, 崔浩, 闫耀晖, 等. VRTN基因型对猪生长和繁殖性能的影响[J]. 石河子大学学报(自然科学版), 2022, 40(4): 460-465. |
LU S H, CUI H, YAN Y H, et al. Association of VRTN gene polymorphisms with growth and reproductive trait in pig[J]. Journal of Shihezi University(Natural Science), 2022, 40(4): 460-465.(in Chinese with English abstract) | |
[24] | JIANG N, LIU C, LAN T, et al. Polymorphism of VRTN gene g.20311_20312ins291 was associated with the number of ribs, carcass diagonal length and cannon bone circumference in Suhuai pigs[J]. Animals, 2020, 10(3):484. |
[25] | 李龙云. 山下黑猪主要产肉性状的遗传解析及其产业化应用[D]. 南昌: 江西农业大学, 2021. |
LI L Y. Genetic analysis of main meat-producing traits and industrialization application in Shanxia black pigs[D]. Nanchang: Jiangxi Agricultural University, 2021.(in Chinese with English abstract) | |
[26] | 郝小静, 韩丽娟, 王彦平, 等. VRTN基因SINE插入突变与杜洛克肋骨数、胴体及肉质性状关联分析[J]. 西南农业学报, 2022, 35(5): 1216-1221. |
HAO X J, HAN L J, WANG Y P, et al. Association analysis of SINE insertion mutation in VRTN gene with number of ribs, carcass and meat quality traits in Duroc[J]. Southwest China Journal of Agricultural Sciences, 2022, 35(5): 1216-1221.(in Chinese with English abstract) |
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