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如“滚石”一般:海绵动物威尔海姆苔海绵身体运动与骨骼动力学的定量分析

Like a 'rolling stone': quantitative analysis of the body movement and skeletal dynamics of the sponge Tethya wilhelma.

作者信息

Nickel Michael

机构信息

Department of Zoology, Biological Institute, Stuttgart University, 70550 Stuttgart, Germany.

出版信息

J Exp Biol. 2006 Aug;209(Pt 15):2839-46. doi: 10.1242/jeb.02337.

Abstract

Although sponges (Porifera) are basal Metazoa without muscles and a central nervous system, they are able to locomote, which is generally correlated to drastic morphological changes. This behaviour has been known for more almost 150 years, but it is only partly understood. The sponge T. wilhelma displays extraordinary movement and rhythmic body contractions, and is thus a valuable model for the investigation of sponge movement. The aims of the present study were to track T. wilhelma quantitatively on natural and artificial substrates, to test for a peristaltic movement mechanism and to check for the influence of morphological changes. T. wilhelma displays a unique mode of locomotion among sponges, without reorganizing the whole sponge body. The overall morphology was stable, and skeletal rotation during movement was shown; this is the first time that such movement has been demonstrated in a sponge. The stability of the skeletal superstructure arrangement during movement suggests that only the cortical tissue is involved in movement, with only local tissue rearrangements. The movement track followed a straight direction for long periods, but directions could be altered instantly. It is most likely that environmental conditions play an important roll in induction of movement. In summary, T. wilhelma resembles the proverbial ;rolling stone' that stays at a given location if the conditions are favourable and starts moving when conditions change for the worse.

摘要

尽管海绵动物(多孔动物门)是没有肌肉和中枢神经系统的基础后生动物,但它们能够移动,这通常与剧烈的形态变化相关。这种行为已为人所知近150年,但人们对其了解仍不全面。海绵动物威廉管海绵表现出非凡的移动能力和有节奏的身体收缩,因此是研究海绵动物移动的宝贵模型。本研究的目的是在天然和人工基质上对威廉管海绵进行定量追踪,测试其蠕动运动机制,并检查形态变化的影响。威廉管海绵在海绵动物中展现出独特的移动方式,无需对整个海绵体进行重组。整体形态稳定,且在移动过程中显示出骨骼旋转;这是首次在海绵动物中证明这种移动方式。移动过程中骨骼上层结构排列的稳定性表明,只有皮层组织参与移动,仅发生局部组织重排。移动轨迹在很长一段时间内沿直线方向,但方向可以瞬间改变。很可能环境条件在诱导移动方面起着重要作用。总之,威廉管海绵类似于那句谚语所说的“滚石”:如果条件有利,它会停留在给定位置;而当条件变差时,它就开始移动。

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