Department of Comparative Biomedicine and Food Science, University of Padova, Viale dell'Università 16, 35020 Legnaro Padova, Italy.
J Dairy Sci. 2012 Nov;95(11):6801-5. doi: 10.3168/jds.2012-5601. Epub 2012 Sep 7.
The aim of the study was to investigate the effect of composite CSN1S1-CSN3 [α(S1)-κ-casein (CN)] genotype on milk protein composition in Mediterranean water buffalo. Content of α(S1)-CN, α(S2)-CN, β-CN, γ-CN, κ-CN, glycosylated and unglycosylated κ-CN, α-lactalbumin, and β-lactoglobulin was measured by reversed-phase HPLC using 621 individual milk samples. Genotypes at CSN1S1 and CSN3 were also obtained by reversed-phase HPLC. Two alleles were detected at CSN1S1 (corresponding to the A and B variants, O62823: p.Leu193Ser,) and at CSN3 (corresponding to the X1 and X2 variants, CAP12622.1: p.Ile156Thr). Increased proportions of α(S1)-CN in total casein (TCN) were associated with genotypes carrying CSN1S1 A. Genotypes associated with a marked decrease of the proportion of α(S1)-CN in TCN (composite genotypes AB-X1X1 and BB-X1X2) were associated with marked increases in the proportion of α(S2)-CN. In addition, composite genotypes carrying the X1 allele at CSN3 were associated with a greater proportion of α(S2)-CN in TCN relative to those carrying CSN3 X2. Composite genotypes greatly affected also the variability of ratios of κ-CN to TCN, with genotypes carrying the X1 allele at CSN3 being associated with decreased ratios. The decreased content of glycosylated κ-CN associated with CSN3 X1 was responsible for the overall lower content of total κ-CN in milk of X1-carrying animals. Increasing the frequency of specific genotypes might be an effective way to alter milk protein composition, namely the proportion of α(S1)-CN, α(S2)-CN, and κ-CN in TCN, and the degree of glycosylation of κ-CN.
本研究旨在探讨复合 CSN1S1-CSN3[α(S1)-κ-酪蛋白(CN)]基因型对地中海水牛乳蛋白组成的影响。使用 621 个个体乳样,通过反相高效液相色谱法(RP-HPLC)测定α(S1)-CN、α(S2)-CN、β-CN、γ-CN、κ-CN、糖基化和非糖基化κ-CN、α-乳白蛋白和β-乳球蛋白的含量。通过反相高效液相色谱法(RP-HPLC)还获得了 CSN1S1 和 CSN3 的基因型。在 CSN1S1 中检测到两个等位基因(对应于 A 和 B 变体,O62823:p.Leu193Ser),在 CSN3 中检测到两个等位基因(对应于 X1 和 X2 变体,CAP12622.1:p.Ile156Thr)。CSN1S1 A 携带基因型与 TCN 中α(S1)-CN 比例增加有关。与 TCN 中α(S1)-CN 比例显著降低相关的基因型(复合基因型 AB-X1X1 和 BB-X1X2)与α(S2)-CN 比例显著增加有关。此外,CSN3 携带 X1 等位基因的复合基因型与 TCN 中α(S2)-CN 比例较高有关,而携带 CSN3 X2 的基因型则较低。复合基因型也极大地影响了κ-CN 与 TCN 的比值的变异性,携带 CSN3 X1 的基因型与比值降低有关。与 CSN3 X1 相关的糖基化κ-CN 含量降低是导致 X1 携带动物乳中总κ-CN 含量降低的原因。增加特定基因型的频率可能是改变乳蛋白组成的有效方法,即 TCN 中α(S1)-CN、α(S2)-CN 和κ-CN 的比例,以及κ-CN 的糖基化程度。