Institute of Animal Physiology and Genetics, Academy of Sciences of the Czech Republic, Libechov, Czech Republic.
Anim Genet. 2010 Dec;41(6):646-51. doi: 10.1111/j.1365-2052.2010.02052.x.
NAMPT encodes an enzyme catalysing the rate-limiting step in NAD biosynthesis. The extracellular form of the enzyme is known as adipokine visfatin. We detected SNP AM999341:g.669T>C (referred to as 669T>C) in intron 9 and SNP FN392209:g.358A>G (referred to as 358A>G) in the promoter of the gene. RH mapping linked the gene to microsatellite SW944. Linkage analysis placed the gene on the current USDA – USMARC linkage map at position 92 cM on SSC9. Association analyses were performed in a wild boar × Meishan F2 family (W × M), with 45 traits recorded (growth and fattening, fat deposition, muscling, meat quality, stress resistance and other traits), and in a commercial Landrace × Chinese-European (LCE) synthetic population with records for 15 traits (growth, fat deposition, muscling, intramuscular fat, meat colour and backfat fatty acid content). In the W × M, SNP 669T>C was associated with muscling, fat deposition, growth and fattening, meat quality and other traits and in the LCE with muscling, meat quality and backfat fatty acid composition. In the W × M, SNP 358A>G was associated with muscling, fat deposition, growth and other traits. After correction for multiple testing, the NAMPT haplotypes were associated in the W × M with, in descending order, muscling (q = 0.0056), growth (q = 0.0056), fat deposition (q = 0.0109), fat-to-meat ratio (q = 0.0135), cooling losses (q = 0.0568) and longissimus pHU (q = 0.0695). The SNPs are hypothesized to be in linkage disequilibrium with a causative mutation affecting energy metabolism as a whole rather than fat metabolism alone.
NAMPT 编码一种酶,催化 NAD 生物合成的限速步骤。该酶的细胞外形式被称为脂肪因子 visfatin。我们在基因的 9 号内含子中检测到 SNP AM999341:g.669T>C(称为 669T>C),在启动子中检测到 SNP FN392209:g.358A>G(称为 358A>G)。RH 图谱将该基因与微卫星 SW944 连锁。连锁分析将该基因定位在当前 USDA- USMARC 连锁图谱的 SSC9 上 92cM 的位置。关联分析在野猪 × 梅山 F2 家系(W × M)中进行,记录了 45 个性状(生长和育肥、脂肪沉积、肌肉发育、肉质、抗应激和其他性状),并在商业长白猪 × 中欧(LCE)合成群体中进行,记录了 15 个性状(生长、脂肪沉积、肌肉发育、肌内脂肪、肉色和背脂脂肪酸含量)。在 W × M 中,SNP 669T>C 与肌肉发育、脂肪沉积、生长和育肥、肉质和其他性状相关,在 LCE 中与肌肉发育、肉质和背脂脂肪酸组成相关。在 W × M 中,SNP 358A>G 与肌肉发育、脂肪沉积、生长和其他性状相关。在多重检验校正后,NAMPT 单倍型在 W × M 中与肌肉发育(q = 0.0056)、生长(q = 0.0056)、脂肪沉积(q = 0.0109)、脂肪与肌肉比(q = 0.0135)、冷却损失(q = 0.0568)和最长肌 pHU(q = 0.0695)呈显著相关。这些 SNP 被假设与影响整个能量代谢而不仅仅是脂肪代谢的致病突变处于连锁不平衡状态。