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斑马鱼缺乏缺氧诱导因子 1-α时,水生表面呼吸可提高其在低氧环境下的存活率。

Aquatic surface respiration improves survival during hypoxia in zebrafish () lacking hypoxia-inducible factor 1-α.

机构信息

Department of Animal Science, University of California Davis, 2251 Meyer Hall, Davis, CA 95616, USA.

Department of Biology, University of Ottawa, 30 Marie Curie, Ottawa, Ontario, Canada K1N6N5.

出版信息

Proc Biol Sci. 2022 Jan 12;289(1966):20211863. doi: 10.1098/rspb.2021.1863.

Abstract

Hypoxia-inducible factor 1-α (Hif-1α), an important transcription factor regulating cellular responses to reductions in O, previously was shown to improve hypoxia tolerance in zebrafish (). Here, we examined the contribution of Hif-1α to hypoxic survival, focusing on the benefit of aquatic surface respiration (ASR). Wild-type and Hif-1α knockout lines of adult zebrafish were exposed to two levels (moderate or severe) of intermittent hypoxia. Survival was significantly compromised in Hif-1α knockout zebrafish prevented from accessing the surface during severe (16 mmHg) but not moderate (23 mmHg) hypoxia. When allowed access to the surface in severe hypoxia, survival times did not differ between wild-type and Hif-1α knockouts. Performing ASR mitigated the negative effects of the loss of Hif-1α with the knockouts initiating ASR at a higher O threshold and performing ASR for longer than wild-types. The loss of Hif-1α had little impact on survival in fish between 1 and 5 days post-fertilization, but as the larvae aged, their reliance on Hif-1α increased. Similar to adult fish, ASR compensated for the loss of Hif-1α on survival. Together, these results demonstrate that age, hypoxia severity and, in particular, the ability to perform ASR significantly modulate the impact of Hif-1α on survival in hypoxic zebrafish.

摘要

缺氧诱导因子 1-α(Hif-1α)是一种重要的转录因子,可调节细胞对 O2 减少的反应,先前已被证明可提高斑马鱼的耐缺氧能力()。在这里,我们研究了 Hif-1α 对缺氧存活的贡献,重点关注水生表面呼吸(ASR)的益处。将成年斑马鱼的野生型和 Hif-1α 敲除系暴露于两种间歇性缺氧水平(中度或重度)下。在严重(16 mmHg)但不是中度(23 mmHg)缺氧时,无法进行表面呼吸的 Hif-1α 敲除系斑马鱼的存活受到严重影响。当允许在严重缺氧时进行表面呼吸时,野生型和 Hif-1α 敲除系之间的存活时间没有差异。进行 ASR 减轻了 Hif-1α 缺失的负面影响,敲除系在更高的 O2 阈值下开始进行 ASR,并且进行 ASR 的时间比野生型长。在受精后 1 至 5 天的幼鱼中,Hif-1α 的缺失对存活几乎没有影响,但随着幼虫的生长,它们对 Hif-1α 的依赖增加。与成年鱼相似,ASR 补偿了 Hif-1α 缺失对存活的影响。总之,这些结果表明,年龄、缺氧严重程度以及特别是进行 ASR 的能力显著调节了 Hif-1α 对缺氧斑马鱼存活的影响。

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