首页> 外文期刊>Journal of Morphology >Development of the cypriniform protrusible jaw complex in Danio rerio: constructional insights for evolution.
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Development of the cypriniform protrusible jaw complex in Danio rerio: constructional insights for evolution.

机译:达尼奥里约(Danio rerio)的鲤形突状颚复合体的发展:进化的构造见解。

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Studies on the evolution of complex biological systems are difficult because the construction of these traits cannot be observed during the course of evolution. Complex traits are defined as consisting of multiple elements, often of differing embryological origins, with multiple linkages integrated to form a single functional unit. An example of a complex system is the cypriniform oral jaw apparatus. Cypriniform fishes possess an upper jaw characterized by premaxillary protrusion during feeding. Cypriniforms effect protrusion via the kinethmoid, a synapomorphy for the order. The kinethmoid is a sesamoid ossification suspended by ligaments attaching to the premaxillae, maxillae, palatines, and neurocranium. Upon mouth opening, the kinethmoid rotates as the premaxillae move anteriorly. Along with bony and ligamentous elements, there are three divisions of the adductor mandibulae that render this system functional. It is unclear how cypriniform jaws evolved because although the evolution of sesamoid elements is common, the incorporation of the kinethmoid into the protrusible jaw results in a function that is atypical for sesamoids. Developmental studies can show how biological systems are assembled within individuals and offer clues about how traits might have been constructed during evolution. We investigated the development of the protrusible upper jaw in zebrafish to generate hypotheses regarding the evolution of this character. Early in development, the adductor mandibulae arises as a single unit. The muscle divides after ossification of the maxillae, on which the A1 division will ultimately insert. A cartilaginous kinethmoid first develops within the intermaxillary ligament; it later ossifies at points of ligamentous attachment. We combine our structural developmental data with published kinematic data at key developmental stages and discuss potential functional advantages in possessing even the earliest stages of a system for protrusion.
机译:对复杂生物系统的进化进行研究是困难的,因为在进化过程中无法观察到这些特性的构建。复杂的性状定义为通常由不同的胚胎学起源的多个元素组成,具有整合成一个功能单元的多个连锁。复杂系统的一个例子是鲤形口腔颌骨器械。楔形鱼类具有上颚,其特征在于在进食期间上颌前突。鲤形目通过类动因(该阶的突触型)影响突起。类动素是由附着于上颌前突,上颌突,palatines和神经颅的韧带悬浮的芝麻样骨化。开口后,类动因会随着前颌前移而旋转。除骨骼和韧带元素外,内收肌下颌的三个部分使该系统起作用。目前尚不清楚鲤形钳口如何演变,因为尽管芝麻样元素的进化很普遍,但将类蠕动蛋白掺入可凸出的颌骨中却会产生非典型的芝麻样功能。发展研究可以表明生物系统是如何在个体中组装的,并提供有关进化过程中特质如何构建的线索。我们调查了斑马鱼上颚突出的发展,以产生有关此字符演变的假设。在发展的早期,内收肌下颌作为一个整体出现。上颌骨骨化后,肌肉分裂,A1分裂最终将插入该肌肉。软骨类动素首先在颌间韧带内发育;然后在软骨间生长。后来在韧带附着点骨化。我们在关键的发展阶段将结构发展数据与已发布的运动学数据相结合,并讨论甚至在拥有突出系统的最早阶段中潜在的功能优势。

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