Department of Animal Science, Aarhus University, Postboks 50, 8830, Tjele, Denmark.
Immunogenetics. 2014 Mar;66(3):171-84. doi: 10.1007/s00251-014-0758-5. Epub 2014 Jan 31.
The mannose-binding lectins (MBLs) are central components of innate immunity, facilitating phagocytosis and inducing the lectin activation pathway of the complement system. Previously, it has been found that certain single-nucleotide polymorphisms (SNPs) in porcine MBL1 and MBL2 (pMBL1, pMBL2) affect mRNA expression, serum concentration, and susceptibility to disease, but the combinatory effect of pMBL1 and pMBL2 genotypes needs further elucidation. In the present study, pMBL1 and pMBL2 alleles, combined pMBL haplotypes, and MBL-A concentration in serum were analyzed in purebred Landrace (N = 30) and Duroc (N = 10) pigs. Furthermore, the combined pMBL haplotypes of 89 Piètrain × (Large White × Landrace) crossbred pigs were studied, and the genotypes of 67 crossbreds challenged with Escherichia coli were compared to their individual disease records. In the purebred animals, three non-synonymous SNPs and a two-nucleotide deletion were detected in the coding sequence of pMBL2. The two-nucleotide deletion was present at a frequency of 0.88 in the Landrace pigs and 0.90 in the Duroc pigs, respectively. In the crossbreds, the T allele of the SNP G949T in pMBL1-previously shown to have profound effect on MBL-A concentration even in the heterozygote condition-was detected in 47 % of the animals. Finally, an association was found between low-producing MBL genotypes and low body weight on the day of weaning in the same animals.
甘露糖结合凝集素(MBLs)是先天免疫系统的重要组成部分,有助于吞噬作用,并诱导补体系统的凝集素激活途径。先前发现,猪 MBL1 和 MBL2(pMBL1、pMBL2)中的某些单核苷酸多态性(SNPs)会影响 mRNA 表达、血清浓度和疾病易感性,但 pMBL1 和 pMBL2 基因型的组合效应仍需进一步阐明。在本研究中,分析了纯种长白猪(N=30)和杜洛克猪(N=10)的 pMBL1 和 pMBL2 等位基因、组合 pMBL 单倍型和血清中 MBL-A 浓度。此外,还研究了 89 头皮特兰×(大白猪×长白猪)杂交猪的组合 pMBL 单倍型,并比较了 67 头杂交猪在大肠杆菌攻毒后的基因型与其个体疾病记录。在纯种动物中,在 pMBL2 的编码序列中检测到三个非同义 SNP 和一个两核苷酸缺失。两核苷酸缺失在长白猪中的频率为 0.88,在杜洛克猪中的频率为 0.90。在杂交猪中,先前显示在杂合子条件下对 MBL-A 浓度有深远影响的 pMBL1 中的 SNP G949T 的 T 等位基因在 47%的动物中被检测到。最后,在同一批动物中发现低产 MBL 基因型与断奶日体重较低之间存在关联。