Ward J E, Newell R I E, Thompson R J, Macdonald B A
Biol Bull. 1994 Apr;186(2):221-240. doi: 10.2307/1542056.
Suspension-feeding processes in the eastern oyster Crassostrea virginica (Gmelin, 1791) were examined, in vivo, with an endoscope linked to a video image-analysis system. We found that many of the previously published concepts of particle transport and processing in this species, obtained using surgically altered specimens or isolated organs, are incomplete or inaccurate. In particular, our observations demonstrate that (1) captured particles are transported along the gills by both mucociliary (marginal grooves) and hydrodynamic (basal tracts) processes; (2) the labial palps accept material from the gills both in mucus-bound particle strings (transported in marginal grooves), and suspended in particle slurries (transported in basal tracts); (3) the labial palps reduce the cohesive integrity of the mucous strings and disperse and sort the entrapped particles; (4) particles are ingested in the form of a slurry; and (5) ciliary activity on the labial palps is independent of that on the lips, allowing the oyster to filter particles from suspension and produce pseudofeces without ingesting any particulate matter. Because many ostreids have the same plicate gill structure, we believe that our conclusions are applicable to other oyster species. In addition, the present observations are consistent with other endoscopic examinations recently made on bivalves in different families. We conclude that accepted theories of particle handling in suspension-feeding bivalve mollusks must be modified to accommodate observations made with the endoscope.
利用连接到视频图像分析系统的内窥镜,对美国牡蛎(Crassostrea virginica,Gmelin,1791)的悬浮摄食过程进行了活体研究。我们发现,许多以前使用手术改变的标本或离体器官得出的关于该物种颗粒运输和处理的概念是不完整或不准确的。特别是,我们的观察结果表明:(1)捕获的颗粒通过黏液纤毛(边缘沟)和流体动力学(基部通道)过程沿着鳃运输;(2)唇瓣从鳃接收物质,这些物质既存在于黏液结合的颗粒串中(在边缘沟中运输),也存在于悬浮的颗粒浆液中(在基部通道中运输);(3)唇瓣降低了黏液串的内聚完整性,并分散和分选截留的颗粒;(4)颗粒以浆液的形式被摄取;(5)唇瓣上的纤毛活动与唇上的纤毛活动无关,这使得牡蛎能够从悬浮液中过滤颗粒并产生假粪便而不摄取任何颗粒物。由于许多牡蛎科动物具有相同的褶鳃结构,我们认为我们的结论适用于其他牡蛎物种。此外,目前的观察结果与最近对不同科双壳类动物进行的其他内窥镜检查结果一致。我们得出结论,必须修改关于悬浮摄食双壳类软体动物颗粒处理的公认理论,以适应内窥镜观察结果。