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1)  GH and IGF-I gene
GH和IGF-I基因
2)  IGF-I gene
IGF-I基因
1.
Relationship between polymorphism of IGF-I gene and growth traits in Datong yak;
大通牦牛IGF-I基因多态性及其与生长性能相关性的研究
2.
Single nucleotide polymorphisms of 127 Laiwu pigs and 132 Yimeng black pigs at exon3 and exon4 of IGF-I gene are tested by PCR-SSCP.
因此,推测IGF-I基因对个体的初生重存在一定的影响,选择带有B等位基因的个体,有望提高个体的初生重。
3.
In this research, GH gene and IGF-I gene were selected as candidate genes affecting correlate traits in Jinghai yellow chicken.
本研究以京海黄鸡为研究对象,以GH基因和IGF-I基因为候选基因,采用PCR-SSCP方法检测候选基因的单核苷酸多态性,探讨不同基因型以及基因型组合与京海黄鸡主要生产性能的相关性。
3)  antisense IGF-I gene
反义IGF-I基因
4)  growth hormone gene
GH基因
1.
The polymorphism in the region-119~+486 bp of growth hormone gene in line I(154),line Ⅱ(41) and lineⅢ(53) of Jinhua piⅠgs were detected using PCR-RFLP-ApaⅠ method.
采用PCR-RFLP-ApaⅠ方法检测金华猪Ⅰ系(154头)、Ⅱ系(41头)和Ⅲ系(53头)GH基因-119~+486bp片段的多态性,发现2个等位基因:A(449bp)和B(316+133bp)。
2.
By the technology of polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) , genetic polymorphism of HaeⅢ site of growth hormone gene in ChengduMa goats and Boer goats was tested.
结果表明:成都麻羊和波尔山羊2个山羊群体中均存在GH基因HaeⅢ酶切位点的多态性,且均有A、B两个等位基因。
5)  gH gene
gH基因
1.
Genetic diversity and differentiation of Leiqiong cattle based on the fifth exon sequences of GH gene;
雷琼牛GH基因第五外显子遗传多样性及其分化
2.
Single nucleotide polymorphisms of porcine GH genes by denaturing high performance liquid chromatography and its relationship with production performance;
变性高效液相色谱分析猪GH基因单核苷酸多态性及与生产性能的关系
3.
A pair of primers was designed and synthesized according to the published sequences data of the gH gene of a vaccine duck plague virus (DPV) strain.
根据发表的鸭瘟病毒弱毒gH基因序列,设计、合成一对引物。
6)  Intron4 of GH gene
GH基因Intron4
1.
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.
检测结果显示,GH基因Intron4的这个位点同时具有M-ASP和SacI-RFLP多态。
补充资料:IGF
分子式:
CAS号:

性质:分子量7000的生长因子,IGF-I来源于成年的肝和其他部位平滑肌细胞,IGF-Ⅱ来源于胚胎肝、胎盘。靶细胞都是上皮细胞之间质细胞,刺激分化细胞的生长与修复,结构上约有50%的氨基酸序列与胰岛素同源,同时还与葡萄糖转运及代谢有关。也可用于Ⅱ型糖尿病的治疗。

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