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透孔螺科腹足纲动物外套腔的水流解剖结构及模式

Anatomy of and patterns of water currents through the mantle cavities of pleurotomariid gastropods.

作者信息

Voltzow Janice, Morris Paul J, Linsley Robert M

机构信息

Department of Biology, University of Scranton, Scranton, Pennsylvania 18510-4625, USA.

出版信息

J Morphol. 2004 Nov;262(2):659-66. doi: 10.1002/jmor.10267.

Abstract

The paired pallial organs of pleurotomariids (slit shells) are generally interpreted as representing the primitive gastropod condition. Relatively few individual pleurotomariids have been observed alive; most anatomical descriptions have been based on retracted, preserved material. In this study, live animals were observed in still and moving water, videotaped, photographed, and relaxed prior to anatomical description. The pleurotomariid Perotrochus maureri formed a siphon with its mantle at the posterior end of the slit in the shell. As expected, water was expelled from the mantle cavity through this siphon. Dye released along the aperture, the area traditionally considered to be the incurrent window, was never observed to enter the mantle cavity. Instead, water entered through the slit just anterior to the siphon. A similar pattern was observed in the deep-slit pleurotomariid Entemnotrochus adansonianus. Thus the "anal" slit provided the sites for the incurrent as well as the excurrent windows. This surprising flow pattern is inconsistent with the traditional scenario of early gastropod evolution.

摘要

穿孔螺类(裂隙壳)成对的外套膜器官通常被解释为代表了原始腹足纲动物的状态。相对而言,很少有活着的穿孔螺个体被观察到;大多数解剖学描述都是基于缩回的、保存下来的材料。在这项研究中,对活的动物在静止和流动的水中进行了观察、录像、拍照,并在进行解剖描述之前使其松弛。穿孔螺类的毛氏佩罗螺利用其外套膜在壳上裂隙的后端形成了一个虹吸管。正如预期的那样,水通过这个虹吸管从外套腔中排出。沿着传统上被认为是进水口的壳口释放的染料从未被观察到进入外套腔。相反,水是通过虹吸管前方的裂隙进入的。在深裂隙穿孔螺类的阿达松氏恩特螺中也观察到了类似的模式。因此,“肛门”裂隙既提供了进水口也提供了出水口。这种令人惊讶的水流模式与早期腹足纲动物进化的传统情形不一致。

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