Department of Biology, Culver-Stockton College, One College Hill, Canton, MO, 63435, USA.
Department of Biological Sciences, University of Alabama, 300 Hackberry Lane, Box 870344, Tuscaloosa, AL, 35487, USA.
Heredity (Edinb). 2019 May;122(5):696-708. doi: 10.1038/s41437-018-0152-4. Epub 2018 Oct 16.
Heritable variation in, and genetic correlations among, traits determine the response of multivariate phenotypes to natural selection. However, as traits develop over ontogeny, patterns of genetic (co)variation and integration captured by the G matrix may also change. Despite this, few studies have investigated how genetic parameters underpinning multivariate phenotypes change as animals pass through major life history stages. Here, using a self-fertilizing hermaphroditic fish species, mangrove rivulus (Kryptolebias marmoratus), we test the hypothesis that G changes from hatching through reproductive maturation. We also test Cheverud's conjecture by asking whether phenotypic patterns provide an acceptable surrogate for patterns of genetic (co)variation within and across ontogenetic stages. For a set of morphological traits linked to locomotor (jumping) performance, we find that the overall level of genetic integration (as measured by the mean-squared correlation across all traits) does not change significantly over ontogeny. However, we also find evidence that some trait-specific genetic variances and pairwise genetic correlations do change. Ontogenetic changes in G indicate the presence of genetic variance for developmental processes themselves, while also suggesting that any genetic constraints on morphological evolution may be age-dependent. Phenotypic correlations closely resembled genetic correlations at each stage in ontogeny. Thus, our results are consistent with the premise that-at least under common environment conditions-phenotypic correlations can be a good substitute for genetic correlations in studies of multivariate developmental evolution.
遗传变异和性状之间的遗传相关性决定了多元表型对自然选择的反应。然而,由于性状在个体发育过程中发展,G 矩阵所捕获的遗传(协)变异性和整合模式也可能发生变化。尽管如此,很少有研究调查支撑多元表型的遗传参数如何随着动物通过主要的生活史阶段而变化。在这里,我们使用一种自交的雌雄同体鱼类,红树林罗非鱼(Kryptolebias marmoratus),来检验 G 从孵化到生殖成熟阶段变化的假设。我们还通过询问表型模式是否可以作为遗传(协)变异性内在和跨个体发育阶段的可接受替代物来检验 Cheverud 的推测。对于一组与运动(跳跃)性能相关的形态特征,我们发现遗传整合的总体水平(通过所有特征的均方相关系数来衡量)在个体发育过程中没有显著变化。然而,我们也发现了一些特征特定的遗传方差和成对遗传相关性确实发生变化的证据。G 的个体发育变化表明存在发育过程本身的遗传方差,同时也表明任何对形态进化的遗传限制可能是年龄依赖性的。表型相关性在个体发育的每个阶段都与遗传相关性密切相关。因此,我们的结果与以下前提一致,即在共同环境条件下,表型相关性至少可以作为研究多元发育进化的遗传相关性的良好替代物。