Sexual selection leads to positive allometry but not sexual dimorphism in the expression of horn shape in the blue wildebeest, Connochaetes taurinus.

Chloé Gerstenhaber, Andrew Knapp
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Abstract

Sexual selection is thought to be an important driver of adaptation, speciation and extinction. Empirically testing these predictions across macroevolutionary timescales first requires an understanding of the morphology of secondary sexual traits in extant taxa. We used three-dimensional geometric morphometrics to analyse a large sample of the skull of the blue wildebeest, Connochaetes taurinus, in which horns are found in both sexes but only used in intrasexual competition in males. We show that the horns fit several predictions of secondary sexual traits; overall skull shape is significantly correlated with size (R2 = 0.38, p = 0.001), and the sexually selected horns show drastically higher growth rates and variation than any other skull element, supporting previous findings. We also find that despite showing significant sexual dimorphism in shape and size (R2 = 0.21, p = 0.001), allometric growth trajectories of sexes are identical (R2 = 0.01, p = 0.635) and dimorphism is not readily detectable without prior knowledge of sex, and is not possible when shape is corrected for size. Our results show that even with strong sexual selection operating in only one sex, the expression of secondary sexual traits may show characteristic and indistinguishable patterns of growth and variance in both sexes.

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性选择导致蓝角羚(Connochaetes taurinus)在角的形状表现上出现正异形而非性二形。
性选择被认为是适应、物种变异和灭绝的重要驱动力。要在宏观进化时间尺度上对这些预测进行实证检验,首先需要了解现存类群中第二性征的形态。我们使用三维几何形态计量学分析了蓝角羚(Connochaetes taurinus)头骨的大量样本,在这种动物中,雌雄都有角,但只有雄性在性内竞争中才使用角。我们的研究表明,角符合第二性征的几种预测;头骨的整体形状与体型有显著相关性(R2 = 0.38,p = 0.001),而且经过性选择的角的生长率和变化率远远高于其他头骨元素,这支持了之前的研究结果。我们还发现,尽管在形状和大小上显示出显著的性二态性(R2 = 0.21,p = 0.001),但两性的异速生长轨迹是相同的(R2 = 0.01,p = 0.635),而且在没有性别知识的情况下,二态性不容易被发现,当形状被大小校正时,二态性也不可能被发现。我们的研究结果表明,即使只有一种性别在进行强烈的性选择,第二性征的表达也可能在两种性别中都表现出特征性的、难以区分的生长和变异模式。
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