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Single nucleotide polymorphism (SNP) in growth hormone gene of Jakhrana, a prominent milk goat breed in India

机译:印度著名的奶山羊品种贾赫拉纳(Jakhrana)生长激素基因中的单核苷酸多态性(SNP)

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PCR-SSCP patterns on non-degenerative PAGE revealed 6 amplicons in caprine GH exon-4 and 3 alleles A, B and C were identified. In exon-5, six SSCP variants revealed three alleles A, B, and C. Out of 54 AA sites of GH-4 coding region, six codons werepolymorphic. At codon-6, nucleotide substitution of G/A resulted in to genotypes 6RR, 6HH and G/C into genotypes 6PP, 6RP. At codon-36, A/G nucleotide substitution resulted in to newer genotypes 36GG from that of 36DD in reference Genbank sample. At codon-54, C/T nucleotide substitution caused change of amino acid (AA) from arginine (R) to tryptophan (W) resulted into a new genotype of 54WW in comparison to 54RR of Genbank reference sample. In exon-5, out of 67 AA sites 8 codons were polymorphic, but the codons 14 and 60 were preponderant. At codon-14, A/G substitution resulted into 3 genotypes 14KK, 14EE and 14KE with frequency of 0.52, 0.38 and 0.10, respectively. At codon-60, G/C and G/A substitutions resulted in to 3 genotypes 60GG, 60RR and 60GRwith frequencies of 0.48, 0.42 and 0.10, respectively. Synonymous mutations as compared to Genbank accession D00476.1 were present at codons 25, 31 and 62 in all the animals of Jakhrana goats. The high genetic variability in GH gene exon-4 and exon-5 maybe useful in exploring their associations with milk and growth traits in goat for further genetic improvement.
机译:非变性PAGE上的PCR-SSCP模式显示,在山羊GH exon-4中有6个扩增子,并鉴定了3个等位基因A,B和C。在外显子5中,六个SSCP变异体揭示了三个等位基因A,B和C。在GH-4编码区的54个AA位点中,六个密码子是多态的。在密码子6处,G / A的核苷酸取代导致基因型6RR,6HH和G / C成为基因型6PP,6RP。在第36位密码子处,A / G核苷酸取代产生了比参考Genbank样品中36DD的新基因型36GG。与Genbank参考样品的54RR相比,C / T核苷酸置换导致C / T核苷酸取代导致氨基酸(AA)从精氨酸(R)变为色氨酸(W)的变化,从而产生了54WW的新基因型。在外显子5中,在67个AA位点中,有8个密码子是多态的,但14和60位密码子占优势。在第14位密码子处,A / G取代产生3种基因型14KK,14EE和14KE,频率分别为0.52、0.38和0.10。在第60位密码子处,G / C和G / A取代产生3个基因型60GG,60RR和60GR,频率分别为0.48、0.42和0.10。在Jakhrana山羊的所有动物中,与Genbank登录号D00476.1相比,同义突变均出现在密码子25、31和62处。 GH基因exon-4和exon-5的高遗传变异性可能有助于探索它们与山羊的牛奶和生长性状的关联,以进一步改善遗传。

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