Scientia Agricultura Sinica ›› 2005, Vol. 38 ›› Issue (11): 2327-2332 .

• ANIMAL SCIENCE·VETERINARY SCIENCERE·SOURCE INSECT • Previous Articles     Next Articles

SNP Detection in Tibetan Chicken and Recessive Chicken GH Gene and Its Associations with Growth Traits

,,,,,,,,   

  • Received:2004-11-22 Revised:1900-01-01 Online:2005-11-10 Published:2005-11-10

Abstract: SNP of growth hormone (GH) gene Intron4 of Tibetan chicken and recessive white chicken were detected by using modified allele specific PCR (M-ASP), PCR-RFLP and sequencing reaction and its associations with growth traits of Tibetan chicken was done. The results indicated that there were M-ASP and SacI-RFLP polymorphisms in Intron4 of GH gene and there was a C/G mutation by DNA sequencing and resulted in 3 genotypes CC, CG and GG. The distributions of three genotypes and two alleles between two chicken breeds were very similar and the frequencies of genotype CC and allele C were highest among them. The results χ2 showed that there were not significant differences in the frequencies of genotypes or alleles between the two chicken breeds (P>0.05), however, there were significant differences within each of the two chicken breeds (P<0.05), respectively. The results of analysis of variance showed that genotypes had significant effect on twelve growth traits of Tibetan chicken at 0.05 or 0.01 levels, and there was a positive relationship between genotype CC and body weight of Tibetan chicken at the age of 7 weeks (P<0.05). It implies that GH gene is the major gene affecting growth traits of Tibetan chicken or it links with the major gene, and the mutation could be used as the molecular genetic marker to select Tibetan chicken for high body weight at the age of 7 weeks.

Key words: Tibetan chicken and recessive white chicken, SNP, M-ASP, Intron4 of GH gene, Growth traits, Association analysis

[1] LIN Ping, WANG KaiLiang, YAO XiaoHua, REN HuaDong. Development of DNA Molecular ID in Camellia oleifera Germplasm Based on Transcriptome-Wide SNPs [J]. Scientia Agricultura Sinica, 2023, 56(2): 217-235.
[2] LI ZhouShuai,DONG Yuan,LI Ting,FENG ZhiQian,DUAN YingXin,YANG MingXian,XU ShuTu,ZHANG XingHua,XUE JiQuan. Genome-Wide Association Analysis of Yield and Combining Ability Based on Maize Hybrid Population [J]. Scientia Agricultura Sinica, 2022, 55(9): 1695-1709.
[3] TANG HuaPing,CHEN HuangXin,LI Cong,GOU LuLu,TAN Cui,MU Yang,TANG LiWei,LAN XiuJin,WEI YuMing,MA Jian. Unconditional and Conditional QTL Analysis of Wheat Spike Length in Common Wheat Based on 55K SNP Array [J]. Scientia Agricultura Sinica, 2022, 55(8): 1492-1502.
[4] ZHI Lei,ZHE Li,SUN NanNan,YANG Yang,Dauren Serikbay,JIA HanZhong,HU YinGang,CHEN Liang. Genome-Wide Association Analysis of Lead Tolerance in Wheat at Seedling Stage [J]. Scientia Agricultura Sinica, 2022, 55(6): 1064-1081.
[5] TU YunJie,JI GaiGe,ZHANG Ming,LIU YiFan,JU XiaoJun,SHAN YanJu,ZOU JianMin,LI Hua,CHEN ZhiWu,SHU JingTing. Screening of Wnt3a SNPs and Its Association Analysis with Skin Feather Follicle Density Traits in Chicken [J]. Scientia Agricultura Sinica, 2022, 55(23): 4769-4780.
[6] XiaoChuan LI,ChaoHai WANG,Ping ZHOU,Wei MA,Rui WU,ZhiHao SONG,Yan MEI. Deciphering of the Genetic Diversity After Field Late Blight Resistance Evaluation of Potato Breeds [J]. Scientia Agricultura Sinica, 2022, 55(18): 3484-3500.
[7] CHEN Xu,HAO YaQiong,NIE XingHua,YANG HaiYing,LIU Song,WANG XueFeng,CAO QingQin,QIN Ling,XING Yu. Association Analysis of Main Characteristics of Bur and Nut with SSR Markers in Chinese Chestnut [J]. Scientia Agricultura Sinica, 2022, 55(13): 2613-2628.
[8] WANG Juan, MA XiaoMei, ZHOU XiaoFeng, WANG Xin, TIAN Qin, LI ChengQi, DONG ChengGuang. Genome-Wide Association Study of Yield Component Traits in Upland Cotton (Gossypium hirsutum L.) [J]. Scientia Agricultura Sinica, 2022, 55(12): 2265-2277.
[9] LIANG Peng,ZHANG TianWen,MENG Ke,SHAO ShunCheng,ZOU ShiFan,RONG Xuan,QIANG Hao,FENG DengZhen. Association Analysis of the ADIPOQ Variation with Sheep Growth Traits [J]. Scientia Agricultura Sinica, 2022, 55(11): 2239-2256.
[10] FAN XiaoJing, YU WenTao, CAI ChunPing, LIN Yi, WANG ZeHan, FANG WanPing, ZHANG JianMing, YE NaiXing. Construction of Molecular ID for Tea Cultivars by Using of Single- nucleotide Polymorphism (SNP) Markers [J]. Scientia Agricultura Sinica, 2021, 54(8): 1751-1760.
[11] XU ZhiYing,WANG BaiCui,MA XiaoLan,JIA ZiMiao,YE XingGuo,LIN ZhiShan,HU HanQiao. Polymorphism Analysis Among Chromosomes of Dasypyrum villosum 6V#2 and 6V#4 and Wheat 6A and 6D Based on Wheat SNP Chip [J]. Scientia Agricultura Sinica, 2021, 54(8): 1579-1589.
[12] LIU YouChun,LIU WeiSheng,WANG XingDong,SUN Bin,LIU XiuLi,YANG YanMin,WEI Xin,YANG YuChun,ZHANG Duo,LIU Cheng,LI TianZhong. Identification of F1 Hybrids in Blueberry (Vaccinium corymbosum L.) Based on Specific-Locus Amplified Fragment Sequencing (SLAF-seq) [J]. Scientia Agricultura Sinica, 2021, 54(2): 370-378.
[13] YAN YongLiang,SHI XiaoLei,ZHANG JinBo,GENG HongWei,XIAO Jing,LU ZiFeng,NI ZhongFu,CONG Hua. Genome-Wide Association Study of Grain Quality Related Characteristics of Spring Wheat [J]. Scientia Agricultura Sinica, 2021, 54(19): 4033-4047.
[14] SONG ChunHui,CHEN XiaoFei,WANG MeiGe,ZHENG XianBo,SONG ShangWei,JIAO Jian,WANG MiaoMiao,MA FengWang,BAI TuanHui. Identification of Candidate Genes for Waterlogging Tolerance in Apple Rootstock by Using SLAF-seq Technique [J]. Scientia Agricultura Sinica, 2021, 54(18): 3932-3944.
[15] WANG JiQing,REN Yi,SHI XiaoLei,WANG LiLi,ZHANG XinZhong,SULITAN· GuZhaLiAYi,XIE Lei,GENG HongWei. Genome-Wide Association Analysis of Superoxide Dismutase (SOD) Activity in Wheat Grain [J]. Scientia Agricultura Sinica, 2021, 54(11): 2249-2260.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!