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Phylogenetic patterns and correlation of key structures for jumping: bone crests and cross‐sectional areas of muscles in Leptodactylus (Anura Leptodactylidae)

机译:系统发育模式和跳跃关键结构的相关性:腹足类动物(阿努拉腹足类科)的骨顶和肌肉横截面积

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摘要

Anurans are characterized by their saltatory mode of locomotion, which is associated with a specific morphology. The coordinated action of the muscles and bones of the pelvic girdle is key to the transmission of the force of the hindlimbs to the axial skeleton during jumping. Two features are critical for optimal locomotory performance: the cross‐sectional area of muscle and the bone crest attachment sites. The first character is a proxy of the force exerted by the muscle, whereas the crests are muscle attachments sites related to muscle force. The provisory relationship between these features has previously been identified and bone crest size can be used to infer the magnitude and, therefore, muscle force in fossils records. In this work, we explore the correlation between the cross‐sectional area of essential muscles to the jumping mechanism (longissimus dorsi, extensor iliotibialis B, tenuissimus, puboischiofemoralis internus B, coccygeo‐sacralis and coccygeo‐iliacus) and the bone crests where these muscles are inserted (dorsal tubercle, dorsal crest and urostylar crest) in species of the genus . This genus, along with other leptodactylids, exhibits a diversity of locomotor modes, including jumping, hopping, swimming and burrowing. We therefore analyzed the morphometric variation in the two features, cross‐sectional area and bone crest area, expecting a correlation with different locomotor types. Our results showed: (i) a correlation between the urostylar crest and the cross‐sectional area of the related muscles; (ii) that the bone crest surface area of urostyle and ilium and the cross‐sectional area of the corresponding muscles can be utilized to infer locomotor faculties in leptodactylid frogs; and (iii) that the evolution of both characters demonstrates a general tendency from lower values in leptodactylid ancestors to higher values in the genus. The results attest to the importance of the comparison of current ecological and phylogenetic analogues as they allow us to infer functionality and behavior in fossil and extant groups based on skeletal evidence. Phylogenetic patterns in character evolution and their correlation with locomotory types could imply that functional restrictions are also inherited in leptodactylid.
机译:无脊椎动物的特征是其运动的咸化模式,这与特定的形态有关。骨盆带的肌肉和骨骼的协调作用是跳跃过程中将后肢的力传递到轴向骨骼的关键。对于最佳机车性能而言,两个关键要素是:肌肉的横截面积和骨rest附着部位。第一个角色是肌肉施加的力量的代表,而波峰是与肌肉力量有关的肌肉附着部位。这些特征之间的临时关系已经被确定,并且骨顶的大小可以用来推断化石记录的大小,从而推断出肌肉的力量。在这项工作中,我们探讨了基本肌肉的横截面积与跳跃机制(背最长肌,ex肌伸肌B,腱鞘,耻骨内股骨B,尾骨sa骨和尾骨ilia骨)之间的相关性以及这些肌肉所在的骨顶之间的相关性。在属的种类中插入(结节,背do和尿突sty)。该属,与其他瘦肌肽一样,表现出多种运动模式,包括跳跃,跳跃,游泳和挖洞。因此,我们分析了横截面积和骨顶面积这两个特征的形态学变化,并期望与不同类型的运动相关。我们的研究结果表明:(i)尾骨顶与相关肌肉的横截面积之间存在相关性; (ii)可利用尿路型和i骨的骨顶表面积和相应肌肉的横截面积来推断瘦指蛙的运动能力; (iii)这两个字符的进化都显示出总体趋势,即从肽触角祖先的较低值到属中的较高值。结果证明了比较当前生态和系统发育类似物的重要性,因为它们使我们能够基于骨骼证据推断化石和现存群体的功能和行为。字符进化中的系统发育模式及其与机体类型的相关性可能暗示着功能限制也被继承于脂肽。

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