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首页> 外文期刊>Environmental Biology of Fishes >Hypoxia tolerance of two haplochromine cichlids: swamp leakage and potential for interlacustrine dispersal
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Hypoxia tolerance of two haplochromine cichlids: swamp leakage and potential for interlacustrine dispersal

机译:两种单倍铬碱丽鱼科鱼的耐缺氧性:沼泽泄漏和湖间传播的潜力

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The ability to tolerate hypoxia in some haplochromine cichlid fishes contributes to the richness of habitats occupied by the lineage and may be important in interlacustrine dispersal through swampy channels. Lacustrine members of the genus Astatotilapia tend to be ecologically plastic but are rarely encountered in the interior of dense swamps. A notable exception is seen in the swamp corridor that joins Lake Kabaleka with Lake George, Uganda, where one species (Astatotilapia 'wrought-iron') is abundant, and a second species, A. aeneocolor, is rare. Both species are abundant in the open waters of the main lake. In this paper, we compare physiological (oxygen consumption) and behavioral indicators of hypoxia tolerance between A. 'wrought-iron' from swamp and open-water habitats and between the two species of Astatotilapia. When exposed to progressive hypoxia, all fish used aquatic surface respiration (ASR); however, swamp-dwelling A. 'wrought-iron' showed lower gill ventilation rates prior to the initiation of ASR, higher pre-ASR aggression rates, higher swimming speed during ASR, and a higher rate of bubble exchange than both the open-water group of A. 'wrought-iron' and A. aeneocolor. These differences may reflect interpopulational variation in selection pressure for low-oxygen tolerance between swamp and open-water habitats. Several lines of evidence suggest that A. 'wrought-iron' was in general more hypoxia tolerant than A. aeneocolor. These include a lower ASR(9)0 threshold, a drop in gill ventilation rate with the onset of ASR, and lower rate of equilibrium loss under extreme hypoxia in A. 'wrought-iron'. The routine metabolic rate and critical oxygen tension did not differ between swamp-dwelling and open-water A. 'wrought-iron', or between A. 'wrought-iron' and A. aeneocolor. Comparative data on the ASR thresholds and critical oxygen tensions of the Astatotilapia species from Lake Kabaleka and other East African cichlids suggest intermediate hypoxia tolerance. Nevertheless, our study suggests that some generalized lacustrine haplochromines may 'leak' through swamp corridors even under relatively extreme conditions.
机译:某些单倍铬素丽鱼科鱼的耐缺氧能力有助于世系所占据的栖息地的丰富,并且可能在通过沼泽通道扩散湖间环境中发挥重要作用。 stat虫属的Lacustrine成员在生态上趋于可塑性,但在茂密的沼泽内部很少见到。在连接卡巴莱卡湖和乌干达乔治湖的沼泽走廊中可以看到一个明显的例外,那里有一个物种(Astatotilapia的“锻铁”)丰富,而第二个物种,即埃尼埃阿不勒斯(A. ​​aeneocolor)则很少。在主要湖泊的开阔水域中,这两种物种都很丰富。在本文中,我们比较了沼泽和开阔水域生境中的“锻铁”以及两种stat鱼的低氧耐受性的生理(耗氧量)和行为指标。当暴露于进行性缺氧时,所有鱼类均进行水生表面呼吸(ASR)。但是,居住在沼泽地的“锻铁”在启动ASR之前显示出较低的g通风速率,较高的ASR侵略率,较高的ASR游泳速度以及较高的气泡交换率。 A.“锻铁”和A.aeneocolor组。这些差异可能反映了沼泽和开阔水域生境之间低氧耐受性选择压力的种群间变化。有几条证据表明,“锻铁”通常比耐油色耐缺氧性更好。这些包括较低的ASR(9)0阈值,随着ASR的发生而ill呼吸的速率下降以及在A.“锻铁”中的极端低氧下的平衡损失率较低。在沼泽居住区和开阔水域“锻铁”之间,或在“锻铁”和淡色拟南芥之间,常规代谢率和临界氧张力没有差异。来自Kabaleka湖和其他东非丽鱼科鱼的Astatotilapia物种的ASR阈值和临界氧张力的比较数据表明中等耐缺氧性。然而,我们的研究表明,即使在相对极端的条件下,一些泛泛的湖滨单倍铬碱也可能“渗入”沼泽走廊。

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