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Patterns of skull development in anurans: size and shape relationship during postmetamorphic cranial ontogeny in five species of the Leptodactylus fuscus Group (Anura: Leptodactylidae)

机译:无头颅骨颅骨发育的模式:变形双足yl群中5种变态后颅的个体发育过程中的大小和形状关系(无名氏:Leptodactylidae)

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The effect of allometric ontogenetic changes on morphology has been examined primarily in larval stages of anurans. To our knowledge, such studies after metamorphosis are non-existent, and this information is important because the skull acquires its adult configuration in that period. Using geometric morphometrics, we studied postmetamorphic shape changes in the skull of five species of the Leptodactylus fuscus Group (Leptodactylus bufonius, Leptodactylus elenae, Leptodactylus fuscus, Leptodactylus latinasus, and Leptodactylus mystaceus), a group of small- to medium-sized frogs. Size change is an important factor in explaining shape change during postmetamorphic growth in four of these species; ontogenetic trajectories have in general parallel directions and similar rates of shape change. L. latinasus skulls tend to differ in size and shape from the others, and the allometric model, although significant, explains low percentages of shape change. The diverging slope of its ontogenetic trajectory indicates non-heterochronic, allometric repatterning change regarding the ontogenies of L. bufonius, L. elenae, and L. fuscus. Conversely, ontogenetic scaling appears as the main mechanism modeling shape change as regard to L. mystaceus; hence, we suggest that a process of progenesis determines the small, juvenile-like cranium of L. latinasus. The disparity analysis shows a broader morphological divergence in metamorph morphospace than in adults, suggesting that postmetamorphic stages can contribute with informative characters to phylogenetic analysis. Differences in shapes between metamorphs and adults indicate that many changes occur after metamorphosis, but whether these changes result from internal or ecological requirements at different stages remains unknown.
机译:主要在无核幼体阶段检查了异体发育遗传变化对形态的影响。据我们所知,关于变态后的研究尚不存在,并且该信息非常重要,因为头骨在那个时期获得了其成年形态。使用几何形态计量学,我们研究了五种Leptodactylus fuscus组(丁香Leptodactylus bufonius,Leptodactylus elenae,Leptodactylus fuscus,Leptodactylus latinasus和Leptodactylus mystaceus)的头骨的变质后形状变化,这是一组中小型青蛙。大小变化是解释其中四个物种在变质后生长过程中形状变化的重要因素。本体轨迹具有大致平行的方向和相似的形状变化率。拉丁乳杆菌的头骨在大小和形状上往往与其他头骨有所不同,而异速测量模型虽然很重要,但可以解释较低百分比的形状变化。它的发生轨迹的斜率表明,关于bufonius乳杆菌,elenae和fuscus L.个体存在非异时的,异速异谱重复变化。相反,遗传学上的缩放似乎是模拟关于Mystaceus的形状变化的主要机制。因此,我们建议,生殖发育的过程决定了拉丁乳杆菌的幼小,类似颅骨的颅骨。差异分析显示,与成年人相比,变态形态空间的形态差异更大,这表明后变态阶段可以为系统发育分析提供信息性特征。变形体和成虫之间形状的差异表明,变形后发生了许多变化,但是这些变化是由于不同阶段的内部需求还是生态需求所致仍然未知。

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