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The unique developmental program of the acoel flatworm, Neochildia fusca

机译:阿科尔扁虫独特的发展计划,新孢子虫

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Acoel embryos exhibit a unique form of development that some investigators argue is related to that found in polyclad turbellarians and coelomate spiralians, which display typical quartet spiral cleavage. We generated the first cell-lineage fate map for an acoel flatworm, Neochildia fusca, using modern intracellular lineage tracers to assess the degree of similarity between these distinct developmental programs. N. fusca develops via a "duet" cleavage pattern in which second cleavage occurs in a leiotropically oblique plane relative to the animal-vegetal axis. At the four-cell stage, the plane of first cleavage corresponds to the plane of bilateral symmetry. All remaining cleavages are symmetrical across the sagittal plane. No ectomesoderm is formed; the first three micromere duets generate only ectodermal derivatives. Endomesoderm, including the complex assemblage of circular, longitudinal, and oblique muscle fibers, as well as the peripheral and central parenchyma, is generated by both third duet macromeres. The cleavage pattern, fate map, and origins of mesoderm in N. fusca share little similarity to that exhibited by other spiralians, including the Platyhelminthes (e.g., polyclad turbellarians). These findings are considered in light of the possible evolutionary origins of the acoel duet cleavage program versus the more typical quartet spiral cleavage program. Finally, an understanding of the cell-lineage fate map allows us to interpret the results of earlier cell deletion studies examining the specification of cell fates within these embryos and reveals the existence of cell-cell inductive interactions in these embryos. (C) 2000 Academic Press. [References: 48]
机译:Acoel胚胎表现出独特的发育形式,一些研究人员认为这与多聚体的turbellarians和coelomate Spiralians中发现的发育形式有关,后者表现出典型的四重螺旋分裂。我们使用现代细胞内谱系示踪剂评估了这些独特的发育程序之间的相似程度,从而生成了有鳍扁虫蠕虫Neochildia fusca的第一个细胞谱系命运图。福斯猪笼草通过“二重”分裂模式发展,其中第二次分裂发生在相对于动物-植物轴的亲热斜面上。在四细胞阶段,第一次切割的平面对应于双边对称的平面。所有其余的卵裂在矢状面上均对称。没有形成外胚层;前三个micromere二重唱仅生成外胚层衍生物。内胚层,包括圆形,纵向和斜肌纤维的复杂集合,以及周围和中央的薄壁组织,都是由两个二重体巨人产生的。福斯猪笼草的分裂模式,命运图和中胚层的起源与包括螺旋藻在内的其他螺旋体(例如,聚伞类动物)表现出的相似性很少。考虑到acoel二重切割程序与更典型的四重螺旋切割程序的可能进化起源,考虑了这些发现。最后,对细胞谱系命运图的理解使我们能够解释较早的细胞缺失研究的结果,这些研究检查了这些胚胎内的细胞命运,并揭示了这些胚胎中细胞-细胞诱导相互作用的存在。 (C)2000学术出版社。 [参考:48]

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