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罗氏翼柱头虫(扁形动物门)中的成肌作用。

Myogenesis in the basal bilaterian Symsagittifera roscoffensis (Acoela).

机构信息

University of Copenhagen, Department of Biology, Research Group for Comparative Zoology, Universitetsparken 15, DK-2100 Copenhagen Ø, Denmark.

出版信息

Front Zool. 2008 Sep 19;5:14. doi: 10.1186/1742-9994-5-14.

Abstract

BACKGROUND

In order to increase the weak database concerning the organogenesis of Acoela - a clade regarded by many as the earliest extant offshoot of Bilateria and thus of particular interest for studies concerning the evolution of animal bodyplans - we analyzed the development of the musculature of Symsagittifera roscoffensis using F-actin labelling, confocal laserscanning microscopy, and 3D reconstruction software.

RESULTS

At 40% of development between egg deposition and hatching short subepidermal fibres form. Muscle fibre development in the anterior body half precedes myogenesis in the posterior half. At 42% of development a grid of outer circular and inner longitudinal muscles is present in the bodywall. New circular muscles either branch off from present fibres or form adjacent to existing ones. The number of circular muscles is higher than that of the longitudinal muscles throughout all life cycle stages. Diagonal, circular and longitudinal muscles are initially rare but their number increases with time. The ventral side bears U-shaped muscles around the mouth, which in addition is surrounded by a sphincter muscle. With the exception of the region of the statocyst, dorsoventral muscles are present along the entire body of juveniles and adults, while adults additionally exhibit radially oriented internal muscles in the anterior tip. Outer diagonal muscles are present at the dorsal anterior tip of the adult. In adult animals, the male gonopore with its associated sexual organs expresses distinct muscles. No specific statocyst muscles were found. The muscle mantles of the needle-shaped sagittocysts are situated along the lateral edges of the animal and in the posterior end close to the male gonopore. In both juveniles and adults, non-muscular filaments, which stain positively for F-actin, are associated with certain sensory cells outside the bodywall musculature.

CONCLUSION

Compared to the myoanatomy of other acoel taxa, Symsagittifera roscoffensis shows a very complex musculature. Although data on presumably basal acoel clades are still scarce, the information currently available suggests an elaborated musculature with longitudinal, circular and U-shaped muscles as being part of the ancestral acoel bodyplan, thus increasing the possibility that Urbilateria likewise had a relatively complicated muscular ground pattern.

摘要

背景

为了增加关于 Acoela 器官发生的薄弱数据库 - 许多人认为 Acoela 是后生动物最早的现存分支,因此对于研究动物体节发育特别感兴趣 - 我们使用 F-肌动蛋白标记、共聚焦激光扫描显微镜和 3D 重建软件分析了 Symsagittifera roscoffensis 的肌肉发育。

结果

在卵沉积和孵化之间的 40%发育阶段,会形成短的皮下纤维。前体半的肌肉纤维发育先于后体半的肌发生。在 42%的发育阶段,体壁上存在一个外环形和内纵形肌肉网格。新的环形肌肉要么从现有纤维分支出来,要么形成现有纤维的相邻部位。在整个生命周期阶段,环形肌肉的数量都高于纵形肌肉。斜向、环形和纵形肌肉最初很少见,但随着时间的推移数量会增加。腹侧有围绕口的 U 形肌肉,此外还有括约肌环绕。除了平衡器区域外,背腹肌肉存在于幼体和成虫的整个身体上,而成虫的前部尖端还具有放射状的内部肌肉。成虫的背前部有外斜向肌肉。在成年动物中,带有相关生殖器官的雄性生殖孔表达明显的肌肉。没有发现特定的平衡器肌肉。针状 Sagittocysts 的肌肉套位于动物的侧边缘和靠近雄性生殖孔的后端。在幼体和成虫中,与体壁肌肉无关的非肌肉纤维,与体壁肌肉外的某些感觉细胞呈阳性反应。

结论

与其他 Acoel 分类群的肌解剖结构相比,Symsagittifera roscoffensis 具有非常复杂的肌肉结构。尽管关于假定的基础 Acoel 类群的数据仍然很少,但目前可用的信息表明,具有纵形、环形和 U 形肌肉的复杂肌肉结构是祖先 Acoel 体节发育的一部分,因此增加了 Urbilateria 也具有相对复杂的肌肉基础模式的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab74/2562460/e8037e98c1f7/1742-9994-5-14-1.jpg

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