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纯种猪与杂交猪的肉质及营养品质比较

Meat and nutritional quality comparison of purebred and crossbred pigs.

作者信息

Zhang Jie, Chai Jie, Luo Zonggang, He Hang, Chen Lei, Liu Xueqin, Zhou Qinfei

机构信息

College of Animal Science, Southwest University, Rongchang, Chongqing, China.

Chongqing Academy of Animal Science, Rongchang, Chongqing, China.

出版信息

Anim Sci J. 2018 Jan;89(1):202-210. doi: 10.1111/asj.12878. Epub 2017 Aug 30.

Abstract

Crossbreeding is an effective method of improving the efficiency and profit of production in commercial pig operations. To understand the effect of crossbreeding on meat and nutrient quality, a combination including three purebred (Duroc, D; Landrace, L; Yorkshire, Y) and two crossbred pig lines (Landrace × Yorkshire, LY; Duroc × (Landrace × Yorkshire), DLY) frequently used internationally were studied. The results showed that meat from the LY and DLY crosses had lower values for lightness L24h∗, shear force and epinephrine and higher values for drip loss, C18:1, insulin, glucagon and monounsaturated fatty acids than D, L and Y pigs. Moreover, LY had higher values for post mortem pH and lower values for a* and b* than the purebreds. In contrast, DLY had lower values for pH and higher values for a* and b* than the purebreds. Meat quality-related gene analysis showed that the CAST, IGF2 and MC4R gene expression levels in the LY and DLY pigs were significantly higher than those in the D, L and Y pigs. These results indicate that crossbreeding can alter the meat quality, nutritive value, energy metabolism and gene expression of pigs. Future research should focus on microRNA expression and DNA methylation that regulate gene expression and thus affect the meat quality.

摘要

杂交是提高商业养猪生产效率和利润的有效方法。为了解杂交对猪肉和营养品质的影响,研究了一个组合,其中包括国际上常用的三个纯种猪(杜洛克猪,D;长白猪,L;大白猪,Y)和两个杂交猪品系(长白猪×大白猪,LY;杜洛克猪×(长白猪×大白猪),DLY)。结果表明,与D、L和Y猪相比,LY和DLY杂交猪的肉在24小时亮度L*、剪切力和肾上腺素方面的值较低,而在滴水损失、C18:1、胰岛素、胰高血糖素和单不饱和脂肪酸方面的值较高。此外,与纯种猪相比,LY宰后pH值较高,a和b值较低。相比之下,DLY的pH值较低,a和b值较高。肉质相关基因分析表明,LY和DLY猪中CAST、IGF2和MC4R基因的表达水平显著高于D、L和Y猪。这些结果表明,杂交可以改变猪的肉质、营养价值、能量代谢和基因表达。未来的研究应集中在调节基因表达从而影响肉质的微小RNA表达和DNA甲基化上。

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