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临时藤壶(甲壳纲:蔓足亚纲:围胸目)无节幼体肌肉组织的三维重建及无节幼体发育的扫描电子显微镜图谱

Three-dimensional reconstruction of the naupliar musculature and a scanning electron microscopy atlas of nauplius development of Balanus improvisus (Crustacea: Cirripedia: Thoracica).

作者信息

Semmler Henrike, Høeg Jens T, Scholtz Gerhard, Wanninger Andreas

机构信息

Humboldt-Universität zu Berlin, Institut für Biologie, Vergleichende Zoologie, Philippstr. 13, D-10115 Berlin, Germany.

出版信息

Arthropod Struct Dev. 2009 Mar;38(2):135-45. doi: 10.1016/j.asd.2008.09.003. Epub 2008 Nov 17.

Abstract

An atlas of the naupliar development of the cirripede Balanus improvisus Darwin, 1854 using scanning electron microscopy (SEM) is provided. Existing spikes on the hindbody increase in number with each moult and are an applicable character for identification of the different nauplius stages, as is the setation pattern of the first antennae. The naupliar musculature of B. improvisus was stained with phalloidin to visualise F-actin, followed by analysis using confocal laser scanning microscopy (CLSM) with subsequent application of 3D imaging software. The larval musculature is already fully established in the first nauplius stage and remains largely unchanged during all the six nauplius stages. The musculature associated with the feeding apparatus is highly elaborated and the labrum possesses lateral muscles and distal F-actin-positive structures. The alimentary tract is entirely surrounded by circular muscles. The extrinsic limb musculature comprises muscles originating from the dorsal and the ventral sides of the head shield, respectively. The hindbody shows very prominent postero-lateral muscles that insert on the dorso-lateral side of the head shield and bend towards ventro-posterior. We conclude that the key features of the naupliar gross anatomy and muscular architecture of B. improvisus are important characters for phylogenetic inferences if analysed in a comparative evolutionary framework.

摘要

本文提供了一份利用扫描电子显微镜(SEM)对1854年达尔文描述的不等小藤壶无节幼虫发育过程的图谱。随着每次蜕皮,后体上现有的棘刺数量会增加,这是用于识别不同无节幼虫阶段的一个适用特征,第一触角的刚毛排列模式也是如此。用鬼笔环肽对不等小藤壶的无节幼虫肌肉组织进行染色以可视化F - 肌动蛋白,随后使用共聚焦激光扫描显微镜(CLSM)进行分析,并应用3D成像软件。幼虫肌肉组织在第一无节幼虫阶段就已完全形成,并且在所有六个无节幼虫阶段基本保持不变。与摄食器官相关的肌肉组织高度发达,唇叶具有外侧肌肉和远端F - 肌动蛋白阳性结构。消化道完全被环形肌肉包围。附肢外部肌肉组织分别包括起源于头甲背侧和腹侧的肌肉。后体显示出非常突出的后外侧肌肉,这些肌肉插入到头甲的背外侧并向腹后弯曲。我们得出结论,如果在比较进化框架中进行分析,不等小藤壶无节幼虫大体解剖结构和肌肉结构的关键特征是系统发育推断的重要特征。

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