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Sex-Specific Correlations of Individual Heterozygosity, Parasite Load, and Scalation Asymmetry in a Sexually Dichromatic Lizard

机译:性双色蜥蜴中个体杂合性,寄生虫负荷和缩放不对称的性别相关性。

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摘要

Heterozygosity-fitness correlations (HFCs) provide insights into the genetic bases of individual fitness variation in natural populations. However, despite decades of study, the biological significance of HFCs is still under debate. In this study, we investigated HFCs in a large population of the sexually dimorphic lizard Takydromus viridipunctatus (Lacertidae). Because of the high prevalence of parasitism from trombiculid mites in this lizard, we expect individual fitness (i.e., survival) to decrease with increasing parasite load. Furthermore, because morphological asymmetry is likely to influence individuals' mobility (i.e., limb asymmetry) and male biting ability during copulation (i.e., head asymmetry) in this species, we also hypothesize that individual fitness should decrease with increasing morphological asymmetry. Although we did not formally test the relationship between morphological asymmetry and fitness in this lizard, we demonstrated that survival decreased with increasing parasite load using a capture-mark-recapture data set. We used a separate sample of 140 lizards to test the correlations between individual heterozygosity (i.e., standardized mean d2 and HL based on 10 microsatellite loci) and the two fitness traits (i.e., parasite load and morphological asymmetry). We also evaluated and excluded the possibility that single-locus effects produced spurious HFCs. Our results suggest male-only, negative correlations between individual heterozygosity and parasite load and between individual heterozygosity and asymmetry, suggesting sex-specific, positive HFCs. Male T. viridipunctatus with higher heterozygosity tend to have lower parasite loads (i.e., higher survival) and lower asymmetry, providing a rare example of HFC in reptiles.
机译:杂合度-适合度相关性(HFC)提供了对自然种群中个体适应性变异的遗传基础的见解。但是,尽管进行了数十年的研究,但氢氟碳化合物的生物学意义仍在争论中。在这项研究中,我们调查了性二态蜥蜴Takydromus viridipunctatus(Lacertidae)的大量种群中的HFC。由于该蜥蜴中的菱形螨引起的寄生虫病高发,我们预计个体健康度(即存活率)会随着寄生虫负荷的增加而降低。此外,由于形态不对称可能会影响该物种在交配过程中个体的活动性(即肢体不对称)和雄性咬人能力(即头部不对称),因此我们还假设个体适应性应随着形态不对称性的增加而降低。尽管我们没有正式测试这种蜥蜴​​的形态不对称性与适应性之间的关系,但我们使用捕获标记-捕获数据集证明,随着寄生虫负荷的增加,生存率下降。我们使用140个蜥蜴的单独样本来测试个体杂合性(即基于10个微卫星基因座的标准均值d 2 和HL)与两个适应性状(即寄生虫负荷和形态不对称)之间的相关性)。我们还评估并排除了单基因座效应产生伪造HFC的可能性。我们的研究结果表明,个体杂合性和寄生虫负荷之间以及个体杂合性和不对称性之间只有男性呈负相关,表明性别特异性的HFC阳性。杂合度较高的雄性拟南芥倾向于具有较低的寄生虫负荷(即较高的存活率)和较低的不对称性,这为爬行动物中的HFC提供了罕见的例子。

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