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对于吸空气的甲鲶科鱼类艾氏翼甲鲶来说,最有效的呼吸器官是鳃还是胃?一项定量形态学研究。

What is the most efficient respiratory organ for the loricariid air-breathing fish Pterygoplichthys anisitsi, gills or stomach? A quantitative morphological study.

作者信息

da Cruz André Luis, Fernandes Marisa Narciso

机构信息

Institute of Biology, Department of Zoology, Federal University of Bahia, Rua Barão de Geremoabo 147, 40170-115 Salvador, Bahia, Brazil.

Department of Physiological Sciences, Federal University of São Carlos, Rod. Washington Luis km 235, 13565-905 São Carlos, São Paulo, Brazil.

出版信息

Zoology (Jena). 2016 Dec;119(6):526-533. doi: 10.1016/j.zool.2016.08.003. Epub 2016 Aug 23.

Abstract

The purpose of the present study was to evaluate the morphometric respiratory potential of gills compared to the stomach in obtaining oxygen for aerobic metabolism in Pterygoplichthys anisitsi, a facultative air-breathing fish. The measurements were done using stereological methods. The gills showed greater total volume, volume-to-body mass ratio, potential surface area, and surface-to-volume ratio than the stomach. The water-blood diffusion barrier of the gills is thicker than the air-blood diffusion barrier of the stomach. Taken together, the surface area, the surface-to-volume ratio and the diffusion distance for O transfer from the respiratory medium to blood yield a greater diffusing capacity for gills than for the stomach, suggesting greater importance of aquatic respiration in this species. On the other hand, water breathing is energetically more expensive than breathing air. Under severe hypoxic conditions, O uptake by the stomach is more efficient than by the gills, although the stomach has a much lower diffusing capacity. Thus, P. anisitsi uses gills under normoxic conditions but the stomach may also support aerobic metabolism depending on environmental conditions.

摘要

本研究的目的是评估兼性空气呼吸鱼类安氏翼甲鲶的鳃与胃在为有氧代谢获取氧气方面的形态测量呼吸潜力。测量采用体视学方法进行。鳃的总体积、体积与体重比、潜在表面积和表面积与体积比均大于胃。鳃的水 - 血扩散屏障比胃的气 - 血扩散屏障更厚。综合来看,从呼吸介质到血液的氧气转移的表面积、表面积与体积比以及扩散距离表明,鳃的扩散能力比胃更强,这表明水生呼吸在该物种中更为重要。另一方面,水呼吸在能量上比空气呼吸更昂贵。在严重缺氧条件下,尽管胃的扩散能力低得多,但胃对氧气的摄取比鳃更有效。因此,安氏翼甲鲶在常氧条件下使用鳃,但根据环境条件,胃也可能支持有氧代谢。

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