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主要组织相容性复合体重组 R13 抗体对牛红细胞的反应。

Major histocompatibility complex recombinant R13 antibody response against bovine red blood cells.

机构信息

Department of Animal and Nutritional Sciences, University of New Hampshire, Durham, NH, USA.

Department of Biological Sciences, Northern Illinois University, DeKalb, IL, USA.

出版信息

Poult Sci. 2020 Oct;99(10):4804-4808. doi: 10.1016/j.psj.2020.06.069. Epub 2020 Jul 31.

Abstract

Recombination within the chicken major histocompatibility complex (MHC) has enabled more precise identification of genes controlling immune responses. Chicken MHC genes include BF, MHC class I; BL, MHC class II; and BG, MHC class IV that are closely linked on chromosome 16. A new recombination occurred during the 10th backcross generation to develop congenic lines on the inbred Line UCD 003 (B17B17) background. Recombinant R13 (BF17-BG23) was found in a single male chick from the Line 003.R1 (BF24-BG23) backcross. An additional backcross of this male to Line UCD 003 females increased the number of R13 individuals. Two trials tested this new recombinant for antibody production against the T cell-dependent antigen, bovine red blood cells. Fifty-one progeny segregating for R13R13 (n = 10), R13B17 (n = 26), and B17B17 (n = 15) genotypes were produced by a single R13B17 male mated to 5 R13B17 dams. One milliliter of 2.5% bovine red blood cell was injected intravenously into all genotypes at 4 and 11 wk of age to stimulate primary and secondary immune responses, respectively. Blood samples were collected 7 d after injection. Serum total and mercaptoethanol-resistant antibodies against bovine red blood cell were measured by microtiter methods. The least squares ANOVA used to evaluate all antibody titers included trial and B genotype as main effects. Significant means were separated by Fisher's protected least significant difference at P < 0.05. R13R13 chickens had significantly lower primary total and mercaptoethanol-resistant antibodies than did the R13B17 and B17B17 genotypes. Secondary total and mercaptoethanol-resistant antibodies were significantly lower in R13R13 chickens than in R13B17 but not B17B17 chickens. Gene differences generated through recombination impacted the antibody response of R13 compared with B17. Secondary antibody titers were not substantially higher than the primary titers suggesting that the memory response had waned in the 7-wk interval between injections. Overall, the results suggest that the lower antibody response in R13R13 homozygotes may be caused by recombination affecting a region that contributes to higher antibody response.

摘要

鸡主要组织相容性复合体(MHC)内的重组使我们能够更精确地识别控制免疫反应的基因。鸡 MHC 基因包括 BF、MHC 类 I;BL、MHC 类 II;以及 BG、MHC 类 IV,它们紧密连锁在 16 号染色体上。在第 10 次回交代中,发生了一次新的重组,以在近交系 UCD 003(B17B17)背景上开发同系物系。在来自系 003.R1(BF24-BG23)回交的一只雄性小鸡中发现了重组 R13(BF17-BG23)。将这只雄性鸡与 UCD 003 雌性鸡进行额外的回交增加了 R13 个体的数量。两次试验测试了这种新重组对 T 细胞依赖性抗原,牛红细胞的抗体产生情况。通过单一的 R13B17 雄性与 5 只 R13B17 雌性交配,产生了 51 只分离出 R13R13(n=10)、R13B17(n=26)和 B17B17(n=15)基因型的后代。在 4 周和 11 周龄时,通过静脉内注射 1 毫升 2.5%的牛红细胞,分别刺激初次和二次免疫反应。在注射后 7 天收集血液样本。通过微量滴定法测量血清总抗体和巯基乙醇抗性抗体。用于评估所有抗体滴度的最小二乘方差分析包括试验和 B 基因型作为主效应。Fisher 保护最小显著差异在 P<0.05 时分离显著均值。R13R13 鸡的初次总抗体和巯基乙醇抗性抗体明显低于 R13B17 和 B17B17 基因型。R13R13 鸡的二次总抗体和巯基乙醇抗性抗体明显低于 R13B17,但不低于 B17B17 鸡。通过重组产生的基因差异影响了 R13 与 B17 相比的抗体反应。二次抗体滴度并没有明显高于初次滴度,这表明在两次注射之间 7 周的间隔内,记忆反应已经减弱。总的来说,结果表明,R13R13 纯合子中较低的抗体反应可能是由于重组影响了一个有助于更高抗体反应的区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b8c/7598299/9256b8ff1b02/gr1.jpg

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