Shanxia long black pig

  • 文章类型: Journal Article
    猪腕腺在地域识别中起着至关重要的作用,生殖行为,和信息交流;然而,它们对生产性状和潜在遗传机制的影响仍不清楚。在这项研究中,对来自六个群体的1028只猪的左(CGDNL)和右(CGDNR)腿上的腕腺憩室数(CGDNs)进行计数,并对其胴体和肉质性状进行了评价。CGDN在人群中存在显著差异,利查黑猪的CGDN比巴马香品种低。性别差异也很大,男性的憩室比女性多(p≤0.0391)。此外,数字是不对称的,CGDNR显著高于CGDNL。值得注意的是,CGDNs在表型和遗传学上以及与24小时pH值显着相关,24小时肉色评分,24小时大理石花纹得分,脂肪含量,水分含量,钠盐含量,和表型中饱和脂肪酸含量。此外,全基因组关联分析确定了与CGDNs关联的7个SNPs在5%的全基因组显著性水平,所有这些都位于1号染色体上的1.78-Mb(35.347-37.129Mb)区域。CNC10010837和CNC10010840是顶部SNP:两者对CGDNR具有0.789±0.120的累加效应,p=8.31E-10。这些发现为猪腕腺的功能和潜在的遗传机制提供了重要的见解。
    Pig carpal glands play crucial roles in territorial recognition, reproductive behavior, and information exchange; however, their effects on production traits and underlying genetic mechanisms remain unclear. In this study, 1028 pigs from six populations were counted for the carpal gland diverticular numbers (CGDNs) on the left (CGDNL) and right (CGDNR) legs, and their carcass and meat quality traits were assessed. The CGDNs were significantly different among the populations, and Licha Black pigs had a lower CGDN than the Bama Xiang breed. It was also significantly different between sexes, with males having more diverticula than females (p ≤ 0.0391). Moreover, the number was asymmetric, with CGDNR being significantly higher than CGDNL. Notably, CGDNs was significantly correlated with each other in phenotype and genetics and with 24-h pH, 24-h meat color score, 24-h marbling score, fat content, moisture content, sodium salt content, and saturated fatty acid content in phenotype. Furthermore, genome-wide association analyses identified seven SNPs in association with CGDNs at a 5% genome-wide significance level, all of which were located in a 1.78-Mb (35.347-37.129 Mb) region on chromosome 1. CNC10010837 and CNC10010840 were the top SNPs: both had an additive effect of 0.789 ± 0.120 on CGDNR with p = 8.31E-10. These findings provide important insights into the functions and underlying genetic mechanisms of swine carpal glands.
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  • 文章类型: Journal Article
    背景:外套颜色,作为猪的独特表型特征,经常受到偏好和选择的影响,例如在新品种的育种过程中。山下长黑猪来源于伯克希尔公猪和利查黑猪母猪的杂交,它被培育为具有优质肉类和黑色外套颜色的父系。尽管在F1代交叉中,外套颜色为黑色,它在后代中隔离。本研究旨在揭示皮毛颜色分离的遗传基础,并开发一种区分山下长黑猪中黑猪和斑点的方法。
    结果:只有一个QTL定位在6号染色体的近端,并挑选出MC1R基因作为功能候选基因。MC1R基因共鉴定出11个多态位点,只有c.67_68insCC变体与涂层颜色共分离。这个基因座不被任何限制性内切酶识别,所以它不能通过PCR-RFLP进行基因分型。c.370G>A多态性位点也与毛色显著相关,并与c.67_68insCC紧密连锁不平衡。此外,它被BSPHI认可。因此,建立了PCR-RFLP方法来对该基因座进行基因分型。除了175个测序的个体,用PCR-RFLP对另外1,391头猪进行了基因分型,所有GG(一条带)的猪都是黑色的。
    结论:MC1R基因(c.67_68insCC)是毛色分离的致病基因(突变),c.370G>A的PCR-RFLP可用于山夏长黑猪的育种程序。
    Coat color, as a distinct phenotypic characteristic of pigs, is often subject to preference and selection, such as in the breeding process of new breed. Shanxia long black pig was derived from an intercross between Berkshire boars and Licha black pig sows, and it was bred as a paternal strain with high-quality meat and black coat color. Although the coat color was black in the F1 generation of the intercross, it segregated in the subsequent generations. This study aims to decode the genetic basis of coat color segregation and develop a method to distinct black pigs from the spotted in Shanxia long black pig.
    Only a QTL was mapped at the proximal end of chromosome 6, and MC1R gene was picked out as functional candidate gene. A total of 11 polymorphic loci were identified in MC1R gene, and only the c.67_68insCC variant was co-segregating with coat color. This locus isn\'t recognized by any restriction endonuclease, so it can\'t be genotyped by PCR-RFLP. The c.370G > A polymorphic locus was also significantly associated with coat color, and has been in tightly linkage disequilibrium with the c.67_68insCC. Furthermore, it is recognized by BspHI. Therefore, a PCR-RFLP method was set up to genotype this locus. Besides the 175 sequenced individuals, another more 1,391 pigs were genotyped with PCR-RFLP, and all of pigs with GG (one band) were black.
    MC1R gene (c.67_68insCC) is the causative gene (mutation) for the coat color segregation, and the PCR-RFLP of c.370G > A could be used in the breeding program of Shanxia long black pig.
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