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Single locus typing of MHC class I and class II B loci in a population of red jungle fowl.

机译:在红色野禽种群中,MHC I类和II B类基因座的单基因座分型。

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摘要

In species with duplicated major histocompatibility complex (MHC) genes, estimates of genetic variation often rely on multilocus measures of diversity. It is possible that such measures might not always detect more detailed patterns of selection at individual loci. Here, we describe a method that allows us to investigate classical MHC diversity in red jungle fowl (Gallus gallus), the wild ancestor of the domestic chicken, using a single locus approach. This is possible due to the well-characterised gene organisation of the 'minimal essential' MHC (BF/BL region) of the domestic chicken, which comprises two differentially expressed duplicated class I (BF) and two class II B (BLB) genes. Using a combination of reference strand-mediated conformation analysis, cloning and sequencing, we identify nine BF and ten BLB alleles in a captive population of jungle fowl. We show that six BF and five BLB alleles are from the more highly expressed locus of each gene, BF2 and BLB2, respectively. An excess of non-synonymous substitutions across the jungle fowl BF/BL region suggests that diversifying selection has acted on this population. Importantly, single locus screening reveals that the strength of selection is greatest on the highly expressed BF2 locus. This is the first time that a population of red jungle fowl has been typed at the MHC region, laying the basis for further research into the underlying processes acting to maintain MHC diversity in this and other species.
机译:在具有重复的主要组织相容性复合体(MHC)基因的物种中,对遗传变异的估计通常依赖于多样性的多位点测量。此类措施可能无法始终检测到各个基因座的更详细的选择模式。在这里,我们描述了一种方法,该方法允许我们使用单一基因座方法研究家养鸡的野生祖先红色丛林鸡(Gallus gallus)中的经典MHC多样性。这可能是由于家禽的“最小必需” MHC(BF / BL区)的基因组织特征明确,该组织包含两个差异表达的重复I类(BF)和两个II B类(BLB)基因。使用参考链介导的构象分析,克隆和测序的组合,我们在圈养的家禽种群中鉴定出9个BF和10个BLB等位基因。我们显示六个BF和五个BLB等位基因分别来自每个基因BF2和BLB2的较高表达位点。整个家禽BF / BL地区出现过多的非同义替换,表明多样化的选择已对该种群起作用。重要的是,单基因座筛选显示在高表达的BF2基因座上选择强度最大。这是第一次在MHC地区输入红色的家禽种群,为进一步研究维持该物种和其他物种MHC多样性的基础过程奠定了基础。

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