氧气水平对亚马逊两种呼吸方式的鱼的热耐受性的影响:生理和行为变化
Mayara Cristina Moraes de Lima1, Derek Felipe Campos1,2, Daiani Kochhann3
1Laboratory of Ecophysiology and Molecular Evolution, Brazilian National Institute for Research of the Amazon-INPA, 69060-001 Manaus, Brazil.
空气呼吸增强了亚马逊鱼类的热耐受性,但仅限于具有更大的空气呼吸能力的物种. 低氧对具有有限呼吸能力的物种的热耐受性产生负面影响.
科学领域:
- 环境生理学环境生理学
- 水生呼吸系统 水生呼吸系统
- 鱼类生物学 鱼类生物学
背景情况:
- 种类对不利条件的耐受性影响了对环境变化的脆弱性.
- 由于缺氧,水生呼吸鱼的热耐受性有限.
- 缺氧对双模呼吸鱼的热耐受性的影响还未得到充分研究.
研究的目的:
- 评估缺氧对两个可选的呼吸空气的亚马逊鱼类物种的热耐受性的影响.
- 研究这些影响背后的生理和行为机制.
- 探索胃形态如何影响呼吸空气的热耐受性.
主要方法:
- 在不同水平的溶氧下对耐热的比较分析.
- 测量整个动物的新陈代谢率和线粒体呼吸.
- 对低氧和正常氧条件的行为反应的观察.
主要成果:
- 在空气进入的情况下,Pterygoplichthys pardalis表现出不受影响的热耐受性,但在没有表面进入的情况下,在缺氧下耐受性降低.
- 在临界氧气水平以下,Ancistrus dolichopterus的热耐受性降低,即使有空气接入.
- 胃适应的形态差异与呼吸空气的能力及其对热耐受性的影响相关.
结论:
- 选择性空气呼吸显著提高了鱼类的耐热性.
- 空气呼吸对热耐受性的好处是特定于物种的,取决于空气呼吸能力.
- 胃形态在类动物利用空气呼吸的能力中起着至关重要的作用,以提高热耐受性.
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