Suppr超能文献

抗微管蛋白标记显示了后鳃亚纲幼虫的壶腹神经元纤毛束以及一种与顶神经节相关的新的假定神经结构。

Anti-tubulin labeling reveals ampullary neuron ciliary bundles in opisthobranch larvae and a new putative neural structure associated with the apical ganglion.

作者信息

Kempf Stephen C, Page Louise R

机构信息

Department of Biological Sciences, 331 Funchess Hall, Auburn University, Auburn, Alabama 36849, USA.

出版信息

Biol Bull. 2005 Jun;208(3):169-82. doi: 10.2307/3593149.

Abstract

This investigation examines tubulin labeling associated with the apical ganglion in a variety of planktotrophic and lecithotrophic opisthobranch larvae. Emphasis is on the ampullary neurons, in which ciliary bundles within the ampulla are strongly labeled. The larvae of all but one species have five ampullary neurons and their associated ciliary bundles. The anaspid Phyllaplysia taylori, a species with direct development and an encapsulated veliger stage, has only four ampullary neurons. The cilia-containing ampulla extends to the pretrochal surface via a long, narrow canal that opens to the external environment through a very small pore (0.1 microm diameter). Cilia within the canal were never observed to project beyond the opening of the apical pore. The ampullary canals extend toward and are grouped with the ciliary tuft cells and remain in this location as planktotrophic larvae feed and grow. If, as has been reported, the ciliary tuft is motile, the pores may be continually bathed in fresh seawater. Such an arrangement would increase sensitivity to environmental chemical stimuli if the suggested chemosensory function of these neurons is correct. In general, ciliary bundles of newly hatched veligers are smaller in planktotrophic larvae than in lecithotrophic larvae. In planktotrophic larvae of Melibe leonina, the ciliary bundles increase in length and width as the veligers feed and grow. This may be related to an increase in sensitivity for whatever sensory function these neurons fulfill. An unexpected tubulin-labeled structure, tentatively called the apical nerve, was also found to be associated with the apical ganglion. This putative nerve extends from the region of the visceral organs to a position either within or adjacent to the apical ganglion. One function of the apical nerve might be to convey the stimulus resulting from metamorphic induction to the visceral organs.

摘要

本研究考察了多种浮游营养型和卵黄营养型后鳃亚纲幼虫顶神经节相关的微管蛋白标记。重点关注壶腹神经元,其中壶腹内的纤毛束被强烈标记。除了一个物种外,所有物种的幼虫都有五个壶腹神经元及其相关的纤毛束。直接发育且具包被面盘幼虫期的无壳海牛 Phyllaplysia taylori 只有四个壶腹神经元。含纤毛的壶腹通过一条细长的管道延伸至口前表面,该管道通过一个非常小的孔(直径 0.1 微米)通向外部环境。从未观察到管道内的纤毛伸出顶孔开口之外。壶腹管道朝着纤毛束细胞延伸并与之聚集,在浮游营养型幼虫摄食和生长时保持在这个位置。如果如报道的那样纤毛束是可运动的,那么这些孔可能会不断被新鲜海水冲洗。如果这些神经元的化学感受功能的推测正确,这样的一种排列会增加对环境化学刺激的敏感性。一般来说,新孵化的面盘幼虫的纤毛束在浮游营养型幼虫中比在卵黄营养型幼虫中更小。在海葵 Melibe leonina 的浮游营养型幼虫中,随着面盘幼虫摄食和生长,纤毛束在长度和宽度上都会增加。这可能与这些神经元所履行的任何感觉功能的敏感性增加有关。还发现一个意外的微管蛋白标记结构,暂称为顶神经,与顶神经节相关。这条假定的神经从内脏器官区域延伸至顶神经节内或其附近的一个位置。顶神经的一个功能可能是将变态诱导产生的刺激传递到内脏器官。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验