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首页> 外文期刊>Developmental biology >Cranial neural crest cells contribute to connective tissue in cranial muscles in the anuran amphibian, Bombina orientalis
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Cranial neural crest cells contribute to connective tissue in cranial muscles in the anuran amphibian, Bombina orientalis

机译:颅神经c细胞有助于无性两栖动物Bombina Orientalis的颅骨肌肉结缔组织

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摘要

The contribution of cranial neural crest cells to the development and patterning of cranial muscles in amphibians was investigated in the phylogenetically basal and morphologically generalized frog, Bombina orientalis. Experimental methods included fluorescent marking of premigratory cranial neural crest and extirpation of individual migratory streams. Neural crest cells contributed to the connective tissue component, but not the myofibers, of many larval muscles within the first two branchial arches (mandibular and hyoid), and complex changes in muscle patterning followed neural crest extirpation. Connective tissue components of individual muscles of either arch originate from the particular crest migratory stream that is associated with that arch, and this relationship is maintained regardless of the segmental identity-or embryonic derivation-of associated skeletal components. These developmental relations define a pattern of segmentation in the head of larval anurans that is similar to that previously described in the domestic chicken, the only vertebrate that has been thoroughly investigated in this respect. The fundamental role of the neural crest in patterning skeleton and musculature may represent a primitive feature of cranial development in vertebrates. Moreover, the corresponding developmental processes and cell fates appear to be conserved even when major evolutionary innovations-such as the novel cartilages and muscles of anuran larvae-result in major differences in cranial form.
机译:在系统发育的基础和形态广义的青蛙,Bombina Orientalis中,研究了颅神经c细胞对两栖动物颅骨肌肉的发育和模式的影响。实验方法包括前颅神经mig的荧光标记和单个迁徙流的灭绝。神经rest细胞是前两个branch弓(下颌骨和舌骨)内许多幼虫肌肉的结缔组织成分,而不是肌纤维,而神经c根切除后肌肉图案的复杂变化。任一足弓的各个肌肉的结缔组织成分都源自与该足弓相关的特定c游移流,并且无论相关的骨骼成分是节段同一性还是胚胎衍生的,这种关系都得以维持。这些发育关系定义了幼虫无头动物头部的分割模式,该模式与先前在家禽中描述的相似,这是唯一在这方面进行了彻底研究的脊椎动物。神经c在构图骨骼和肌肉系统中的基本作用可能代表了脊椎动物颅骨发育的原始特征。此外,即使主要的进化创新(例如新的软骨和无尾幼虫的肌肉)导致颅骨形式存在重大差异,相应的发育过程和细胞命运似乎也得以保留。

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