Allelic diversity and patterns of selection at the major histocompatibility complex class I and II loci in a threatened shorebird, the Snowy Plover (Charadrius nivosus).

IF 3.4 Q1 Agricultural and Biological Sciences BMC Evolutionary Biology Pub Date : 2020-09-10 DOI:10.1186/s12862-020-01676-7
Medardo Cruz-López, Guillermo Fernández, Helen Hipperson, Eduardo Palacios, John Cavitt, Daniel Galindo-Espinosa, Salvador Gómez Del Angel, Raya Pruner, Oscar Gonzalez, Terry Burke, Clemens Küpper
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引用次数: 3

Abstract

Background: Understanding the structure and variability of adaptive loci such as the major histocompatibility complex (MHC) genes is a primary research goal for evolutionary and conservation genetics. Typically, classical MHC genes show high polymorphism and are under strong balancing selection, as their products trigger the adaptive immune response in vertebrates. Here, we assess the allelic diversity and patterns of selection for MHC class I and class II loci in a threatened shorebird with highly flexible mating and parental care behaviour, the Snowy Plover (Charadrius nivosus) across its broad geographic range.

Results: We determined the allelic and nucleotide diversity for MHC class I and class II genes using samples of 250 individuals from eight breeding population of Snowy Plovers. We found 40 alleles at MHC class I and six alleles at MHC class II, with individuals carrying two to seven different alleles (mean 3.70) at MHC class I and up to two alleles (mean 1.45) at MHC class II. Diversity was higher in the peptide-binding region, which suggests balancing selection. The MHC class I locus showed stronger signatures of both positive and negative selection than the MHC class II locus. Most alleles were present in more than one population. If present, private alleles generally occurred at very low frequencies in each population, except for the private alleles of MHC class I in one island population (Puerto Rico, lineage tenuirostris).

Conclusion: Snowy Plovers exhibited an intermediate level of diversity at the MHC, similar to that reported in other Charadriiformes. The differences found in the patterns of selection between the class I and II loci are consistent with the hypothesis that different mechanisms shape the sequence evolution of MHC class I and class II genes. The rarity of private alleles across populations is consistent with high natal and breeding dispersal and the low genetic structure previously observed at neutral genetic markers in this species.

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濒危滨鸟雪鸻(Charadrius nivosus)主要组织相容性复合体I和II类位点的等位基因多样性和选择模式
背景:了解适应性位点(如主要组织相容性复合体(MHC)基因)的结构和变异性是进化和保护遗传学的主要研究目标。在脊椎动物中,典型的MHC基因表现出高度多态性,并处于强烈的平衡选择下,因为它们的产物会引发适应性免疫反应。在这里,我们评估了一种具有高度灵活的交配和亲代照顾行为的濒危滨鸟,雪鸻(Charadrius nivosus)在其广泛的地理范围内的MHC I类和II类位点的等位基因多样性和选择模式。结果:利用雪鸻8个繁殖种群的250个个体样本,测定了MHCⅰ类和ⅱ类基因的等位基因和核苷酸多样性。我们发现MHC I类有40个等位基因,MHC II类有6个等位基因,MHC I类个体携带2 - 7个不同的等位基因(平均3.70),MHC II类个体携带最多2个等位基因(平均1.45)。多肽结合区多样性较高,说明存在平衡选择。MHC I类位点比MHC II类位点表现出更强的正选择和负选择特征。大多数等位基因存在于多个种群中。除了一个岛屿人群(波多黎各,tenuirostris谱系)中MHC I类的私有等位基因外,如果存在,则在每个人群中通常以非常低的频率出现。结论:雪鸻在MHC上表现出中等水平的多样性,与其他鸻形目相似。在I类和II类位点之间的选择模式差异的发现与MHC I类和II类基因序列进化的不同机制的假设是一致的。个体等位基因在种群间的罕见性与高出生和繁殖分散以及先前在该物种中性遗传标记上观察到的低遗传结构一致。
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来源期刊
BMC Evolutionary Biology
BMC Evolutionary Biology 生物-进化生物学
CiteScore
5.80
自引率
0.00%
发文量
0
审稿时长
6 months
期刊介绍: BMC Evolutionary Biology is an open access, peer-reviewed journal that considers articles on all aspects of molecular and non-molecular evolution of all organisms, as well as phylogenetics and palaeontology.
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