果蝇卵泡中卵泡细胞的多样化模式。

IF 1.8 3区 医学 Q2 ANATOMY & MORPHOLOGY
Mariusz K. Jaglarz, Agata Kuziak, Wladyslawa Jankowska
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引用次数: 0

摘要

在苍蝇(双翅目)中,卵巢的卵泡上皮细胞的形成和分化有几种不同的模式。在真蝇(Brachycera)中发现了两种主要模式,即 Rhagio 型和果蝇型。这些模式与传统上将 Brachycera 分为 Orthorrhapha 和 Cyclorrhapha 的观点一致。然而,除果蝇外,对环毛虫卵泡上皮细胞形态发生的研究还很少。我们描述了两种属于蝶形目(Brachycera,Cyclorrhapha)的环杓虫中与卵泡细胞(FC)多样性的出现相关的发育变化特征。我们的分析表明,这些物种的卵泡细胞多样化同时显示了Rhagio和果蝇类型的特征。首先,由极性细胞和边界样细胞组成的独特的FC群在卵泡后极分化。这一特征是Rhagio型所独有的,仅在代表Orthorrhapha组的物种中有所报道。其次,形态学标准确定的 FCs 亚群数量明显少于果蝇。此外,虽然FC迁移的一般模式与果蝇相似,但却没有独特的前背向FC迁移。在所研究的表皮细胞中,前极性细胞/边界细胞集群向卵母细胞前极迁移后,主体立方体FCs随之向后迁移,以覆盖不断扩大的卵母细胞。最后,在卵黄发生过程中,一个独特的FC亚群向卵泡中心迁移,以覆盖卵母细胞的前极。我们的研究还突显了一些伴随迁移过程的FCs的特殊作用,这在环膜动物中以前从未有过记录。这些结果支持了这样的假设,即形态上独特的FC亚群的后向和向心迁移产生于环斑蝶的共同祖先。在双翅目的进化过程中,这些事件似乎是最近发生的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The pattern of the follicle cell diversification in ovarian follicles of the true fruit flies, Tephritidae

The pattern of the follicle cell diversification in ovarian follicles of the true fruit flies, Tephritidae

In flies (Diptera), the ovary displays several distinct patterns of the follicular epithelium formation and diversification. Two main patterns have been identified in the true flies or Brachycera, namely the Rhagio type and the Drosophila type. These patterns align with the traditional division of Brachycera into Orthorrhapha and Cyclorrhapha. However, studies of the follicular epithelium morphogenesis in cyclorrhaphans other than Drosophila are scarce. We characterise the developmental changes associated with the emergence of follicle cell (FC) diversity in two cyclorrhaphans belonging to the family Tephritidae (Brachycera, Cyclorrhapha). Our analysis revealed that the diversification of FCs in these species shows characteristics of both the Rhagio and Drosophila types. First, a distinct cluster of FCs, consisting of polar cells and border-like cells, differentiates at the posterior pole of the ovarian follicle. This feature is unique to the Rhagio type and has only been reported in species representing the Orthorrhapha group. Second, morphological criteria have identified a significantly smaller number of subpopulations of FCs than in Drosophila. Furthermore, while the general pattern of FC migration is similar to that of Drosophila, the distinctive migration of the anterior-dorsal FCs is absent. In the studied tephritids, the migration of the anterior polar cell/border cell cluster towards the anterior pole of the oocyte is followed by the posterior migration of the main body cuboidal FCs to cover the expanding oocyte. Finally, during the onset of vitellogenesis, a distinct subset of FCs migrates towards the centre of the ovarian follicle to cover the oocyte's anterior pole. Our study also highlights specific actions of some FCs that accompany the migration process, which has not been previously documented in cyclorrhaphans. These results support the hypothesis that the posterior and centripetal migrations of morphologically unique FC subsets arose in the common ancestor of Cyclorrhapha. These events appear to have occurred fairly recently in the evolutionary timeline of Diptera.

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来源期刊
Journal of Anatomy
Journal of Anatomy 医学-解剖学与形态学
CiteScore
4.80
自引率
8.30%
发文量
183
审稿时长
4-8 weeks
期刊介绍: Journal of Anatomy is an international peer-reviewed journal sponsored by the Anatomical Society. The journal publishes original papers, invited review articles and book reviews. Its main focus is to understand anatomy through an analysis of structure, function, development and evolution. Priority will be given to studies of that clearly articulate their relevance to the anatomical community. Focal areas include: experimental studies, contributions based on molecular and cell biology and on the application of modern imaging techniques and papers with novel methods or synthetic perspective on an anatomical system. Studies that are essentially descriptive anatomy are appropriate only if they communicate clearly a broader functional or evolutionary significance. You must clearly state the broader implications of your work in the abstract. We particularly welcome submissions in the following areas: Cell biology and tissue architecture Comparative functional morphology Developmental biology Evolutionary developmental biology Evolutionary morphology Functional human anatomy Integrative vertebrate paleontology Methodological innovations in anatomical research Musculoskeletal system Neuroanatomy and neurodegeneration Significant advances in anatomical education.
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