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Formation of body appendages during caudal regeneration in Platynereis dumerilii: adaptation of conserved molecular toolsets

机译:杜美氏侧尾生殖过程中肢体附件的形成:保守分子工具集的适应

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摘要

Background: Platynereis and other polychaete annelids with homonomous segmentation are regarded to closely resemble ancestral forms of bilateria. The head region comprises the prostomium, the peristomium, a variable number of cephalized body segments and several appendages, like cirri, antennae and palps. The trunk of such polychaetes shows numerous, nearly identical segments. Each segment bears a parapodium with species-specific morphology on either side. The posterior end of the trunk features a segment proliferation zone and a terminal pygidium with the anus and anal cirri. The removal of a substantial part of the posterior trunk is by no means lethal. Cells at the site of injury dedifferentiate and proliferate forming a blastema to regenerate both the pygidium and the proliferation zone. The pygidium forms new anal cirri, and the proliferation zone generates new segments at a rapid pace. The formation of body appendages like the cirri and the segmental parapodia can thus be studied in the caudal regenerate of Platynereis within only a few days. Results: The development of body appendages in Platynereis is regulated by a network of genes common to polychaetes but also shared by distant taxa. We isolated DNA sequences from P. dumerilii of five genes known to be involved in appendage formation within other groups: Meis/homothorax, Pbx1/extradenticle, Dlx/Distal-less, decapentaplegic and specific protein 1/buttonhead. Analyses of expression patterns during caudal regeneration by in situ hybridization reveal striking similarities related to expression in arthropods and vertebrates. All genes exhibit transient expression during differentiation and growth of segments. As was shown previously in other phyla Pdu-Meis/hth and Pdu-Pbx1/exd are co-expressed, although the expression is not limited to the proximal part of the parapodia. Pdu-Dll is prominent in parapodia but upregulated in the anal cirri. No direct dependence concerning Pdu-Dll and Pdu-sp/btd expression is observed in Platynereis. Pdu-dpp shows an expression pattern not comparable to its expression in other taxa. Conclusions: The expression patterns observed suggest conserved roles of these genes during appendage formation across different clades, but the underlying mechanisms utilizing this toolset might not be identical. Some genes show broad expression along the proximodistal axis indicating a possible role in proximodistal patterning of body appendages. Other genes exhibit expression patterns limited to specific parts and tissues of the growing parapodia, thus presumably being involved in formation of taxon-specific morphological differences.
机译:背景:均等分割的侧柏和其他多毛类小动物被认为与祖先的祖先形式非常相似。头部区域包括假体,假体,可变数量的头状身体节段和一些附属物,如卷毛,触角和触角。这种多毛猎犬的躯干显示出许多几乎相同的部分。每个片段的两侧都带有具有特定物种形态的副足。躯干的后端具有一个段增生区,末端有一个带有肛门和肛门围线的py突。切除后躯干的大部分绝不是致命的。损伤部位的细胞去分化并增殖,形成胚细胞,从而使和增殖区再生。 pygidium形成新的肛门cirri,并且增殖区迅速产生新的片段。因此,仅在几天内就可以在侧柏再生的尾鳍再生中研究身体附件的形成,如触毛和节段性伪足。结果:鸭嘴兽的肢体附件的发育受多毛et共有的基因网络调节,但也与远处的类群共享。我们从杜氏疟原虫中分离了五个基因,该基因已知与其他组内的附属物形成有关:五个基因:Meis /高胸,Pbx1 /牙外,Dlx /远距,去功能性和特定蛋白质1 /纽扣。通过原位杂交分析尾regeneration再生过程中的表达模式,发现节肢动物和脊椎动物的表达具有惊人的相似性。所有基因在片段的分化和生长过程中均表现出瞬时表达。如先前在其他门所显示的,Pdu-Meis / hth和Pdu-Pbx1 / exd共表达,尽管该表达不限于伪足的近端部分。 Pdu-Dll在足旁症中很显着,但在肛门cirri中却上调。在侧柏中未观察到与Pdu-Dll和Pdu-sp / btd表达直接相关的现象。 Pdu-dpp显示的表达模式与其在其他分类单元中的表达不相上下。结论:观察到的表达模式表明这些基因在不同分支的附属物形成过程中的保守作用,但是利用该工具集的潜在机制可能并不相同。一些基因沿近前轴显示广泛的表达,表明在肢体附件的近前模式中可能发挥作用。其他基因表现出的表达模式仅限于正在生长的伪足动物的特定部位和组织,因此推测可能参与了分类群特异性形态差异的形成。

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