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Sequence Characterization of Coding Regions of the Myostatin Gene (GDF8) from Bakerwal Goats (Capra hircus) and Comparison with the Sheep (Ovis aries) Sequence

Sequence Characterization of Coding Regions of the Myostatin Gene (GDF8) from Bakerwal Goats (Capra hircus) and Comparison with the Sheep (Ovis aries) Sequence
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摘要 The Bakerwal breed of goat in Kashmir valley is a good meat purpose breed of goat. That attains an appreciable body weight under a low input production system. As these goats are mainly reared by Gujjar and Bakarwal tribes of the J & K state, so they usually are fed with the weeds, herbs, shrubs and grasses of pastures that will otherwise go waste. These goats constitute the main livestock wealth. With the good productive and reproductive potential, it makes these animals an important animal protein source for developing countries like India. The myostatin gene (GDF8) is important in the physiology of stock animals because its product produces a direct effect on muscle development and consequently also on meat production. The myostatin sequence is known in several mammalian species and shows a high degree of amino acid sequence conservation, although several alterations in the intron and exon regions have been identified. The objective of our work is to characterize the myostatin coding regions using gene sequencing and polymerase chain reaction methods of Capra hircus (Bakerwal breed) and to compare them with the Ovis aries and other livestock species of animal, looking for variations in nucleotide and protein sequences. As mutations in the myostatin gene can inactivate its expression and result in a non-functional protein, which leads to increase in muscle growth in many species. In this way, we are able to identify 3 alterations on the presumed myostatin protein sequence as compared to non double-muscled ovine sequences. The Bakerwal breed of goat in Kashmir valley is a good meat purpose breed of goat. That attains an appreciable body weight under a low input production system. As these goats are mainly reared by Gujjar and Bakarwal tribes of the J & K state, so they usually are fed with the weeds, herbs, shrubs and grasses of pastures that will otherwise go waste. These goats constitute the main livestock wealth. With the good productive and reproductive potential, it makes these animals an important animal protein source for developing countries like India. The myostatin gene (GDF8) is important in the physiology of stock animals because its product produces a direct effect on muscle development and consequently also on meat production. The myostatin sequence is known in several mammalian species and shows a high degree of amino acid sequence conservation, although several alterations in the intron and exon regions have been identified. The objective of our work is to characterize the myostatin coding regions using gene sequencing and polymerase chain reaction methods of Capra hircus (Bakerwal breed) and to compare them with the Ovis aries and other livestock species of animal, looking for variations in nucleotide and protein sequences. As mutations in the myostatin gene can inactivate its expression and result in a non-functional protein, which leads to increase in muscle growth in many species. In this way, we are able to identify 3 alterations on the presumed myostatin protein sequence as compared to non double-muscled ovine sequences.
作者 Wani A. Ahad Sajad A. Beigh Mir Mehraj Masroor Hussain Hina F. Bhat Riaz A. Shah Ahmad S. Mudasir Wani A. Ahad;Sajad A. Beigh;Mir Mehraj;Masroor Hussain;Hina F. Bhat;Riaz A. Shah;Ahmad S. Mudasir(Division of Animal Biotechnology, Faculty of Veterinary Sciences and Animal Husbandry, Sher-e-Kashmir University of Agricultural Sciences & Technology of Kashmir, Shuhama Alusteng, India;Faculty of Veterinary Sciences and Animal Husbandry, Sher-e-Kashmir University of Agricultural Sciences & Technology of Jammu, R S Pura, India)
出处 《Open Journal of Animal Sciences》 2016年第3期157-162,共6页 动物科学期刊(英文)
关键词 GOAT GDF8 MYOSTATIN Bakerwal INTRON EXON Goat GDF8 Myostatin Bakerwal Intron Exon
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