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Focusing On Casein Gene Cluster And Protein Profile In Garganica Goat Milk

机译:着重研究山羊山羊奶中酪蛋白基因簇和蛋白质谱

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A survey was carried out in eight goat dairy farms, a total of 71 individual Garganica goat milk samples were collected for genomic DNA extraction. Casein alleles and haplotype frequencies of Garganica population were estimated. Individual milks were also analysed for chemical composition, rheological properties, and protein profile. The strong A~* allele of CSN1S1 was predominant in the population investigated, the weak allele F of CSN1S1 showed a relatively high frequency and the null alleles N and 01 were first observed in this breed. At CSN1S2 locus the strong A~* allele was the most frequent, followed by the F allele and the null allele. The strong A~* allele was predominant at CSN2 locus, and relatively high incidence of null allele 0 was observed. CSN3 locus was monomorphic for B allele. The exact test of sample differentiation based on haplotype frequencies discriminate the farms into two groups characterized by the highest frequency of strong (S-CSN1S1) or weak (W-CSN1S1) alleles at CSN1S1. Protein and casein contents were higher in the group characterized by strong allele than in the group with weak allele at CSN1S1. The 2D electrophoresis technique was performed to screen goat casein variability at the protein level and to evaluate global casein genotype (αs1, αs2, β and κ-CN). Gels displayed the protein profile associated with casein genotype, and demonstrated differences in the protein expression deriving from interactions between loci. The variability of goat casein loci in Garganica goat breed could be exploited to differentiate the population on the basis of milk utilization and could represent a strategy to preserve the genotype of this autochthonous breed.
机译:在八个山羊奶场进行了一项调查,总共收集了71个Garganica山羊奶样品,用于基因组DNA提取。估计酪蛋白等位基因和Garganica种群的单倍型频率。还分析了每种牛奶的化学成分,流变特性和蛋白质谱。 CSN1S1的强A〜*等位基因在该种群中占主导地位,CSN1S1的弱等位基因F表现出相对较高的频率,并且在该品种中首次观察到无效等位基因N和01。在CSN1S2位点,强A〜*等位基因频率最高,其次是F等位基因和无效等位基因。强烈的A〜*等位基因在CSN2位点占主导地位,并且观察到无效等位基因0的发生率相对较高。 CSN3基因座对于B等位基因是单态的。基于单倍型频率的样品区分的精确测试将农场分为两组,其特征是CSN1S1上的强(S-CSN1S1)和弱(W-CSN1S1)等位基因的最高频率。在CSN1S1中,等位基因强的组的蛋白质和酪蛋白含量高于等位基因弱的组。进行了2D电泳技术,以筛选山羊酪蛋白在蛋白质水平上的变异性并评估整体酪蛋白基因型(αs1,αs2,β和κ-CN)。凝胶显示出与酪蛋白基因型相关的蛋白质谱,并证明了来自基因座之间相互作用的蛋白质表达差异。可以利用Garganica山羊品种中山羊酪蛋白基因座的变异性来利用牛奶利用来区分种群,并可以代表一种保留该本地种基因型的策略。

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