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MHC 多样性与麦哲伦企鹅(Spheniscus magellanicus)的配偶选择。

MHC diversity and mate choice in the magellanic penguin, Spheniscus magellanicus.

机构信息

Bowling Green State University, Bowling Green, OH, USA.

出版信息

J Hered. 2012 Nov-Dec;103(6):759-68. doi: 10.1093/jhered/ess054. Epub 2012 Sep 4.

DOI:10.1093/jhered/ess054
PMID:22952272
Abstract

We estimated levels of diversity at the major histocompatibility complex (MHC) class II DRß1 gene in 50 breeding pairs of the Magellanic penguin and compared those to estimates from Humboldt and Galapagos penguins. We tested for positive selection and 2 conditions required for the evolution of MHC-based disassortative mating: 1) greater MHC diversity between breeding pairs compared to random mating, and 2) associations between MHC genotype and fitness. Cloning and sequencing of the DRß1 gene showed that Magellanic penguins had higher levels of genetic variation than Galapagos and Humboldt penguins. Sequence analysis revealed 45 alleles with 3.6% average proportion of nucleotide differences, nucleotide diversity of 0.030, and observed heterozygosity of 0.770. A gene phylogeny showed 9 allelic lineages with interspersed DRß1 sequences from Humboldt and Galapagos penguins, indicating ancestral polymorphisms. d (N)/d (S) ratios revealed evidence for positive selection. Analysis of breeding pairs showed no disassortative mating preferences. Significant MHC genotype/fitness associations in females suggest, however, that selection for pathogen resistance plays a more important role than mate choice in maintaining diversity at the MHC in the Magellanic penguin. The differential effect of MHC heterozygosity on fitness between the sexes is likely associated with the relative role of hatching and fledging rates as reliable indicators of overall fitness in males and females.

摘要

我们在 50 对麦哲伦企鹅的繁殖对中估计了主要组织相容性复合体 (MHC) 类 II DRß1 基因的多样性水平,并将其与洪堡企鹅和加拉帕戈斯企鹅的估计值进行了比较。我们测试了正选择和 MHC 基于的异配交配进化所需的 2 个条件:1)繁殖对之间的 MHC 多样性大于随机交配,2)MHC 基因型与适应性之间的关联。DRß1 基因的克隆和测序表明,麦哲伦企鹅的遗传变异水平高于加拉帕戈斯企鹅和洪堡企鹅。序列分析显示有 45 个等位基因,平均核苷酸差异比例为 3.6%,核苷酸多样性为 0.030,观察杂合度为 0.770。基因系统发育树显示有 9 个等位基因谱系,其中有洪堡企鹅和加拉帕戈斯企鹅的 DRß1 序列穿插,表明存在祖先多态性。d (N)/d (S) 比值显示正选择的证据。对繁殖对的分析表明,不存在异配交配偏好。然而,雌性中 MHC 基因型/适应性的显著关联表明,对病原体抗性的选择在维持麦哲伦企鹅 MHC 多样性方面比配偶选择更为重要。MHC 杂合性对雌雄适应性的差异影响可能与孵化率和育雏率作为雄性和雌性整体适应性可靠指标的相对作用有关。

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