Stoop W M, van Arendonk J A M, Heck J M L, van Valenberg H J F, Bovenhuis H
Animal Breeding and Genomics Centre, Wageningen University, PO Box 338, 6700 AH Wageningen, The Netherlands.
J Dairy Sci. 2008 Jan;91(1):385-94. doi: 10.3168/jds.2007-0181.
The objective of this study was to estimate genetic parameters for major milk fatty acids and milk production traits. One morning milk sample was collected from 1,918 Holstein-Friesian heifers located in 398 commercial herds in The Netherlands. Each sample was analyzed for total percentages of fat and protein, and for detailed fatty acid percentages (computed as fatty acid weight as a proportion of total fat weight). Intraherd heritabilities were high for C4:0 to C16:0, ranging from 0.42 for C4:0 to 0.71 for C10:0. Saturated and unsaturated C18 fatty acids had intraherd heritability estimates of approximately 0.25, except for C18:2 cis-9, trans-11, which was 0.42. Standard errors of the heritabilities were between 0.07 and 0.12. Genetic correlations were high and positive among C4:0 to C14:0, as well as among unsaturated C18, but correlations of C4:0 to C14:0 with unsaturated C18 were generally weak. The genetic correlation of C16:0 with fat percentage was positive (0.65), implying that selection for fat percentage should result in a correlated increase of C16:0, whereas unsaturated C18 fatty acids decreased with increasing fat percentage (-0.74). Milk fat composition can be changed by means of selective breeding, which offers opportunities to meet consumer demands regarding health and technological aspects.
本研究的目的是估计主要乳脂肪酸和产奶性状的遗传参数。从荷兰398个商业牛群中的1918头荷斯坦-弗里生小母牛身上采集了一份早晨的乳样。对每个样品分析了脂肪和蛋白质的总百分比,以及详细的脂肪酸百分比(计算为脂肪酸重量占总脂肪重量的比例)。C4:0至C16:0的群体内遗传力较高,范围从C4:0的0.42到C10:0的0.71。饱和和不饱和C18脂肪酸的群体内遗传力估计值约为0.25,但C18:2顺-9,反-11为0.42。遗传力的标准误在0.07至0.12之间。C4:0至C14:0之间以及不饱和C18之间的遗传相关性较高且为正,但C4:0至C14:0与不饱和C18之间的相关性通常较弱。C16:0与脂肪百分比的遗传相关性为正(0.65),这意味着选择脂肪百分比应导致C16:0的相关增加,而不饱和C18脂肪酸则随着脂肪百分比的增加而减少(-0.74)。乳脂肪组成可以通过选择性育种来改变,这为满足消费者在健康和技术方面的需求提供了机会。