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野生哺乳动物种群中的杂合度-适合度相关性:考虑亲代和环境效应。

Heterozygosity-fitness correlations in a wild mammal population: accounting for parental and environmental effects.

机构信息

Wildlife Conservation Research Unit, Department of Zoology, Recanati-Kaplan Centre, University of Oxford Tubney House, Abingdon Road, Tubney, Abingdon, Oxfordshire, OX13 5QL, U.K ; NERC Biomolecular Analysis Facility, Department of Animal and Plant Sciences, University of Sheffield Sheffield, S10 2TN, U.K ; Faculty of Science, Department of Biology, University of Putra Malaysia UPM 43400, Serdang, Selangor, Malaysia.

Wildlife Conservation Research Unit, Department of Zoology, Recanati-Kaplan Centre, University of Oxford Tubney House, Abingdon Road, Tubney, Abingdon, Oxfordshire, OX13 5QL, U.K.

出版信息

Ecol Evol. 2014 Jun;4(12):2594-609. doi: 10.1002/ece3.1112. Epub 2014 May 27.

Abstract

HFCs (heterozygosity-fitness correlations) measure the direct relationship between an individual's genetic diversity and fitness. The effects of parental heterozygosity and the environment on HFCs are currently under-researched. We investigated these in a high-density U.K. population of European badgers (Meles meles), using a multimodel capture-mark-recapture framework and 35 microsatellite loci. We detected interannual variation in first-year, but not adult, survival probability. Adult females had higher annual survival probabilities than adult males. Cubs with more heterozygous fathers had higher first-year survival, but only in wetter summers; there was no relationship with individual or maternal heterozygosity. Moist soil conditions enhance badger food supply (earthworms), improving survival. In dryer years, higher indiscriminate mortality rates appear to mask differential heterozygosity-related survival effects. This paternal interaction was significant in the most supported model; however, the model-averaged estimate had a relative importance of 0.50 and overlapped zero slightly. First-year survival probabilities were not correlated with the inbreeding coefficient (f); however, small sample sizes limited the power to detect inbreeding depression. Correlations between individual heterozygosity and inbreeding were weak, in line with published meta-analyses showing that HFCs tend to be weak. We found support for general rather than local heterozygosity effects on first-year survival probability, and g2 indicated that our markers had power to detect inbreeding. We emphasize the importance of assessing how environmental stressors can influence the magnitude and direction of HFCs and of considering how parental genetic diversity can affect fitness-related traits, which could play an important role in the evolution of mate choice.

摘要

HFCs(杂合度-适合度相关性)衡量个体遗传多样性和适合度之间的直接关系。目前对亲代杂合性和环境对 HFCs 的影响研究不足。我们使用多模型捕获-标记-重捕框架和 35 个微卫星位点,在英国一个高密度的欧洲獾(Meles meles)种群中对此进行了研究。我们检测到第一年但不是成年的生存概率存在年际变化。成年雌性的年生存率高于成年雄性。具有更多杂合父亲的幼崽第一年的生存率更高,但仅在潮湿的夏季;与个体或母体杂合性没有关系。潮湿的土壤条件增强了獾的食物供应(蚯蚓),提高了生存率。在干燥的年份,更高的无差别死亡率似乎掩盖了与异质相关的生存效应差异。这种父本相互作用在最支持的模型中是显著的;然而,模型平均估计的相对重要性为 0.50,略微重叠于零。第一年的生存率与近交系数(f)无关;然而,样本量小限制了检测近交衰退的能力。个体杂合性与近交之间的相关性较弱,与发表的荟萃分析一致,表明 HFCs 往往较弱。我们发现支持一般而非局部杂合性对第一年生存率的影响,并且 g2 表明我们的标记有能力检测近交。我们强调评估环境胁迫因子如何影响 HFCs 的幅度和方向的重要性,并考虑亲代遗传多样性如何影响与适合度相关的特征,这在配偶选择的进化中可能起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bc5/4203301/755acc0906c7/ece30004-2594-f1.jpg

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