首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Development of the neuromuscular system during asexual propagation in an invertebrate chordate.
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Development of the neuromuscular system during asexual propagation in an invertebrate chordate.

机译:无脊椎无脊椎动物在无性繁殖过程中神经肌肉系统的发育。

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摘要

Botryllus schlosseri is a colonial ascidian, and the closest relative to vertebrates that can completely regenerate its entire body, including all somatic and germline tissues, using an asexual developmental pathway called blastogenesis. This regenerative potential exhibited by Botryllus and other colonial ascidians does not exist in any other chordate and makes B. schlosseri a promising model to investigate the cellular and molecular basis of regeneration. In this report, we describe postembryonic myogenesis and characterized the development of the neural system during blastogenic development. alpha-Tubulin immunoreactivity revealed a high correlation with previous studies on the motor nervous system. The pattern of the serotoninergic system in the adult reflects that observed in solitary ascidians, but in early blastogenesis suggests a morphogenic role of this monoamine. In summary, this study provides the morphological framework to dissect the mechanisms underlying the ability to regenerate entire organ systems as an adult in a chordate model.
机译:Botryllus schlosseri是一种殖民地海生动物,是与脊椎动物最接近的物种,可以使用一种称为胚发生的无性发育途径,使包括所有体细胞和种系组织在内的整个身体完全再生。 Botryllus和其他殖民地海藻显示的这种再生潜力在其他任何碳酸盐中均不存在,这使得Schlosseri B.成为研究再生的细胞和分子基础的有前途的模型。在这份报告中,我们描述了胚后肌发生,并描述了胚细胞发育过程中神经系统的发育。 α-Tubulin的免疫反应性与以前对运动神经系统的研究高度相关。在成年人中,5-羟色胺能系统的模式反映了在单独的海鞘中观察到的模式,但在早期成胚过程中提示这种单胺具有形态发生作用。总而言之,这项研究提供了形态学框架,剖析了在碳酸盐模型中成年后再生整个器官系统的能力的机制。

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