盘形星足类软体动物早期壳场形态形成主要依赖于细胞运动和f -肌动蛋白动力学。

Q2 Biochemistry, Genetics and Molecular Biology
Weihong Yang, Pin Huan, Baozhong Liu
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引用次数: 6

摘要

背景:壳场的形态发生是软体动物壳形成的重要步骤,既具有保守性,又具有谱系间的差异性。patellogastropod作为腹足类动物的一个主要谱系,其壳场形态发生与其他腹足类动物(如肺腹足类lynaea alis)不同,这可能与它的外圆原肠形成有关。对patellogastropod壳场形态发生的研究,有助于揭示这一过程中的谱系特异性特征,探索不同软体动物谱系之间的深层保存。结果:采用多种技术对枇杷早期壳场形态发生进行了研究。电镜观察发现,莲座状壳区的中心细胞和外周细胞具有明显的形态学特征。基因表达分析和F-actin染色表明,该物种的壳场形态发生主要依赖于细胞运动和F-actin动力学,而BrdU测定显示细胞增殖对这一过程的影响很小。我们发现,在壳场形态发生的早期阶段,外胚层和中胚层/内胚层组织之间存在持续的接触,这并不支持内胚层组织对壳场的诱导,但表明了一种潜在的阶段特异性诱导。结论:我们的研究结果强调了细胞运动和f -肌动蛋白动力学在Lo壳场形态发生中的作用。goshimai,并建议潜在的调节剂,如扩散因子和f -肌动蛋白调节剂。这些发现反映了不同腹足动物壳场形态发生的差异,并增加了对软体动物幼虫壳形成的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Early shell field morphogenesis of a patellogastropod mollusk predominantly relies on cell movement and F-actin dynamics.

Early shell field morphogenesis of a patellogastropod mollusk predominantly relies on cell movement and F-actin dynamics.

Early shell field morphogenesis of a patellogastropod mollusk predominantly relies on cell movement and F-actin dynamics.

Early shell field morphogenesis of a patellogastropod mollusk predominantly relies on cell movement and F-actin dynamics.

Background: The morphogenesis of the shell field is an essential step of molluscan shell formation, which exhibits both conserved features and interlineage variations. As one major gastropod lineage, the patellogastropods show different characters in its shell field morphogenesis compared to other gastropods (e.g., the pulmonate gastropod Lymnaea stagnalis), likely related to its epibolic gastrulation. The investigation on the shell field morphogenesis of patellogastropods would be useful to reveal the lineage-specific characters in the process and explore the deep conservation among different molluscan lineages.

Results: We investigated the early shell field morphogenesis in the patellogastropod Lottia goshimai using multiple techniques. Electron microscopy revealed distinct morphological characters for the central and peripheral cells of the characteristic rosette-like shell field. Gene expression analysis and F-actin staining suggested that the shell field morphogenesis in this species predominantly relied on cell movement and F-actin dynamics, while BrdU assay revealed that cell proliferation contributed little to the process. We found constant contacts between ectodermal and meso/endodermal tissues during the early stages of shell field morphogenesis, which did not support the induction of shell field by endodermal tissues in general, but a potential stage-specific induction was indicated.

Conclusions: Our results emphasize the roles of cell movement and F-actin dynamics during the morphogenesis of the shell field in Lo. goshimai, and suggest potential regulators such as diffusible factors and F-actin modulators. These findings reflect the differences in shell field morphogenesis of different gastropods, and add to the knowledge of molluscan larval shell formation.

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来源期刊
BMC Developmental Biology
BMC Developmental Biology 生物-发育生物学
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: BMC Developmental Biology is an open access, peer-reviewed journal that considers articles on the development, growth, differentiation and regeneration of multicellular organisms, including molecular, cellular, tissue, organ and whole organism research.
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