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Genetic parameters for tissue and fatty acid composition of backfat, perirenal fat and longissimus muscle in Large White and Landrace pigs

机译:大白猪和长白猪背脂,肾周脂肪和长肌的组织和脂肪酸组成的遗传参数

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摘要

Genetic parameters pertaining to the same chemical characteristics of three porcine tissues, that is backfat (BF), perirenal fat (PF) and longissimus muscle (LM), were estimated in centrally tested Large White and Landrace pigs. Animals were fed ad libitum. They were slaughtered at an average BW of 99.6 kg, and samples of BF (both inner and outer layers) and LM were removed at the 13th to 14th rib level of the carcass on the day after slaughter. The data set included 2483 animals recorded for average daily gain (ADG; 35 to 100 kg), estimated carcass lean percentage (LEAN) and lean tissue growth rate (LTGR). Among these animals, around 950 pigs were recorded for lipid content (L%) and water content (W%) of BF and LM and for fatty acid composition (FAC) of BF, whereas FAC of LM was measured on 297 pigs and L%, W%, and FAC of PF on around 210 pigs. Heritabilities (h2) and genetic correlations (ra) were estimated using REML-animal model methodology. Estimates of h2 for L%, W% and FAC of BF, PF and LM were of moderate-to-high magnitude: for example 0.47 ± 0.09 for L% of LM, 0.59 ± 0.11 for W% of BF, 0.45 ± 0.08 for the ratio of polyunsaturated to saturated fatty acids (P/S) of BF, 0.61 ± 0.15 and 0.29 ± 0.10 for the coefficient of unsaturation of lipids (UNSAT, average number of double bonds of unsaturated fatty acids) of PF and LM, respectively. Genetic correlations of L% with P/S or UNSAT were strongly negative (from −0.4 to −0.9) in BF and LM, but not in PF. The ‘between-tissue’ genetic correlations for homologous compositional traits were far from being unity (e.g. ra = 0.57 ± 0.05 ‘between’ BF and PF for UNSAT). Genetic relationships between ADG and tissue compositional traits were globally weak. By contrast, genetic correlations were moderate-to-high between carcass leanness and tissue compositional traits, especially those of fat depots: for example −0.66 ± 0.14 between LEAN and L% of BF, 0.50 ± 0.07 between LEAN and UNSAT of PF, −0.44 ± 0.08 between LEAN and L% of LM, and 0.27 ± 0.03 between LEAN and UNSAT of LM. On the basis of the parameter estimates found here, breeding for higher LTGR is expected to increase the ratio of water to lipids and the unsaturation degree of lipids in subcutaneous BF and, to a lesser extent, in PF. Tissue composition and FAC of LM would be less affected.
机译:在集中测试的大型白猪和长白猪中,估计了与三种猪组织的相同化学特性有关的遗传参数,即背脂(BF),肾周脂肪(PF)和长肌(LM)。随意喂养动物。屠宰后第二天,他们平均屠宰体重为99.6千克,并在the体的第13至14肋骨水平上去除了高炉(内层和外层)和LM样品。数据集包括记录的2483只动物的平均日增重(ADG; 35至100公斤),估计的体瘦肉率(LEAN)和瘦肉组织生长率(LTGR)。在这些动物中,记录了约950头猪的BF和LM的脂质含量(L%)和水含量(W%)以及BF的脂肪酸组成(FAC),而LM的FAC在297头猪和L%处测得约210头猪的PF,W%和FAC。使用REML-动物模型方法估计遗传力(h2)和遗传相关性(ra)。 BF,PF和LM的L%,W%和FAC的h2估计为中到高幅度:例如,LM的L%为0.47±0.09,BF的W%为0.59±0.11,BF为0.45±0.08 BF的多不饱和脂肪酸与饱和脂肪酸(P / S)之比分别为PF和LM的脂质的不饱和系数(UNSAT,不饱和脂肪酸的平均双键平均数)为0.61±0.15和0.29±0.10。在BF和LM中,L%与P / S或UNSAT的遗传相关性显着为负(从-0.4到-0.9),而在PF中则不是。同源组成性状的“组织间”遗传相关性远非统一(例如,UNSAT的BF和PF之间的ra = 0.57±0.05)。 ADG与组织组成性状之间的遗传关系整体较弱。相比之下,car体瘦度与组织组成性状,尤其是脂肪库的组织性状之间的遗传相关性为中到高:例如,LEAN和BF的L%之间为-0.66±0.14,PF的UNSAT的LEAN和UNSAT之间为-0.56±0.07,- LEAN和LM的L%之间为0.44±0.08,LEAN和LM的UNSAT之间为0.27±0.03。根据此处发现的参数估计值,较高的LTGR的育种有望增加皮下BF和PF中水与脂质的比例以及脂质的不饱和度。 LM的组织组成和FAC将受到较小的影响。

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