首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Not like Botryllus: indiscriminate post-metamorphic fusion in a compound ascidian
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Not like Botryllus: indiscriminate post-metamorphic fusion in a compound ascidian

机译:不像Botryllus:在复合海鞘中不加区别地进行后变质融合

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摘要

Fusion trials between metamorphs of the aplousobranch compound ascidian Diplosoma listerianum indicated that chimera formation was not dependent on relatedness. Similar, high rates of union were observed between full siblings, half siblings, unrelated individuals from the same population, and individuals from two geographically distant localities. This is in contrast to the well-studied ascidian genus Botryllus, in which a highly polymorphic allorecognition system governing the fusion–non-fusion reaction (colony specificity) largely limits fusion to close relatives. Fusion in Botryllus establishes a vascular chimera throughout which stem cells may circulate, promoting cell lineage competition between the fusion partners. The restriction of fusion to close kin in Botryllus is thought to reduce the inclusive fitness costs of competitive interactions between cell lineages within the chimera. In contrast to Botryllus, modules (zooids) of a D. listerianum colony are not interlinked by blood vessels, seemingly precluding the exchange of stem cells. The apparent absence of strict colony specificity in D. listerianum is thus in keeping with the predictions of the Botryllus model for the maintenance of allorecognition polymorphism. However, colony specificity has been reported in other species of aplousobranch ascidian that also lack a common vascular system. In these, the threat of migrating blood-borne stem cells cannot be responsible for the presence of colony specificity. One possibility, requiring experimental investigation, is that stem cells could perhaps migrate between zooids by another route, such as through the matrix of the colonial tunic. Even in the absence of stem cell exchange, cheating on the costs of colony maintenance and defence could also produce selective forces favouring colony specificity. In compound ascidians, this could involve unequal contribution to extrazooidal structures, principally the tunic and related tissues. This consideration seems potentially relevant to the lack of discrimination during fusion in D. listerianum, since extrazooidal somatic investment in this species appears minimal, severely limiting the scope for this other form of cheating. The various possible modes of exploitative interaction between fused colonies are not mutually exclusive, and offer fundamentally similar explanations for colony specificity. If none of them can be shown to occur in non-botryllid species possessing colony specificity, the generality of the Botryllus model may require re-evaluation.
机译:Aplousobranch化合物海鞘Diplosoma listerianum的变体之间的融合试验表明,嵌合体的形成不依赖于相关性。类似地,在同胞兄弟姐妹,同胞兄弟姐妹,同一个人口中无关的个体以及两个地理上相距遥远的地方的个体之间,观察到很高的结合率。这与经过深入研究的海藻属Botryllus形成鲜明对比,在Botryllus中,一个高度多态的等位基因识别系统控制着融合-非融合反应(菌落特异性),在很大程度上将融合局限于近亲。灰霉病中的融合建立了血管嵌合体,干细胞可在其中循环,从而促进融合伴侣之间的细胞谱系竞争。认为融合限制了葡萄球菌的近亲,以减少嵌合体中细胞谱系之间竞争性相互作用的包容性适应成本。与Botryllus相比,D。listerianum菌落的模块(类动物)不通过血管相互连接,似乎阻止了干细胞的交换。因此,在李斯特菌中明显缺乏严格的菌落特异性与Botryllus模型用于维持同种异体认知多态性的预测相符。然而,在其他也缺乏常见血管系统的棘突性海鞘物种中,已经报道了菌落特异性。在这些情况下,血源性干细胞迁移的威胁不能归因于菌落特异性的存在。需要进行实验研究的一种可能性是,干细胞可能会通过另一种途径(例如通过殖民地外衣的基质)在动物群之间迁移。即使没有干细胞交换,在集落维持和防御成本上作弊也可能产生有利于集落特异性的选择性作用力。在复合海鞘中,这可能涉及到对窦外结构的不平等贡献,主要是外膜和相关组织。这种考虑似乎可能与李斯特菌融合过程中缺乏区分性有关,因为对该物种的类外动物体投资似乎很小,严重限制了这种其他形式的作弊范围。融合菌落之间各种可能的利用性相互作用方式并非互斥的,它们为菌落特异性提供了基本相似的解释。如果它们均未显示在具有菌落特异性的非伯特菌种中,则可能需要重新评估Botryllus模型的普遍性。

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