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The evolution of genital shape variation in female cetaceans

机译:雌性鲸类生殖器形状变异的演变

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Male genital diversification is likely the result of sexual selection. Female genital diversification may also result from sexual selection, although it is less well studied and understood. Female genitalia are complex among whales, dolphins, and porpoises, especially compared to other vertebrates. The evolutionary factors affecting the diversity of vaginal complexity could include ontogeny, allometry, phylogeny, sexual selection, and natural selection. We quantified shape variation in female genitalia using 2D geometric morphometric analysis, and validated the application of this method to study soft tissues. We explored patterns of variation in the shape of the cervix and vagina of 24 cetacean species (n = 61 specimens), and found that genital shape varies primarily in the relative vaginal length and overall aspect ratio of the reproductive tract. Extensive genital shape variation was partly explained by ontogenetic changes and evolutionary allometry among sexually mature cetaceans, whereas phylogenetic signal, relative testis size, and neonate size were not significantly associated with genital shape. Female genital shape is diverse and evolves rapidly even among closely related species, consistent with predictions of sexual selection models and with findings in invertebrate and vertebrate taxa. Future research exploring genital shape variation in 3D will offer new insights into evolutionary mechanisms because internal vaginal structures are variable and can form complex spirals.
机译:男性生殖器多样化可能是性选择的结果。女性生殖器多样化也可能由性选择产生,尽管它的研究较小并理解。女性生殖器在鲸鱼,海豚和豚鼠中是复杂的,特别是与其他脊椎动物相比。影响阴道复杂性多样性的进化因素可包括组来,各种,动力发生,性选择和自然选择。我们使用2D几何形态学分析量化雌性生殖器的形状变异,并验证了该方法的应用研究软组织。我们探讨了宫颈和阴道形状的变化模式(n = 61样本),发现生殖器形状主要在生殖道的相对阴道长度和整体纵横比中变化。通过血细胞发生的变化和进化的含量,部分地解释了广泛的生殖器形状变异,而性发育信号,相对睾丸尺寸和新生儿大小没有显着与生殖器形状显着相关。甚至在密切相关的物种中,女性生殖器形状是多种多样的,并且迅速发展,与对性选择模型的预测和无脊椎动物和脊椎动物分类群中的调查结果一致。未来的研究探索了3D的生殖器形状变化将为进化机制提供新的见解,因为内部阴道结构是可变的并且可以形成复杂的螺旋。

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