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缺氧对一年生鳉鱼Austrofundulus limnaeus不同发育阶段心率的差异影响,这些发育阶段对缺氧的耐受性不同。

Differential effects of anoxia on heart rate in developmental stages of the annual killifish Austrofundulus limnaeus that differ in their tolerance of anoxia.

作者信息

Fergusson-Kolmes Linda, Podrabsky Jason E

机构信息

Biology Department, Portland Community College, Portland, OR, USA.

出版信息

J Exp Zool A Ecol Genet Physiol. 2007 Jul 1;307(7):419-23. doi: 10.1002/jez.395.

Abstract

Embryos of the annual killifish Austrofundulus limnaeus can experience oxygen deprivation as part of their normal developmental environment. We exposed embryos to anoxia and monitored heart activity for 48 hr, and subsequent aerobic recovery from anoxia for 40 hr. Embryos were tested at four different developmental stages that differ in their tolerance of anoxia. Our results indicate that high tolerance of anoxia is associated with an arrest of heart contractility during the first 24 hr of anoxia. These embryos recover to normoxic levels of heart rate within 16 hr of aerobic recovery. In contrast, embryos from later developmental stages that have a highly reduced ability to survive long-term anoxia experience a severe bradycardia but not an arrest of heart rate. These data illustrate a new and potentially powerful model for investigating the effects of anoxia on the developing cardiovascular system in vertebrates.

摘要

一年生鳉鱼南美湖鳉的胚胎在其正常发育环境中会经历缺氧。我们将胚胎暴露于缺氧环境中,监测其心脏活动48小时,随后监测从缺氧状态进行需氧恢复的情况40小时。在四个对缺氧耐受性不同的不同发育阶段对胚胎进行了测试。我们的结果表明,高缺氧耐受性与缺氧最初24小时内心脏收缩力的停止有关。这些胚胎在需氧恢复的16小时内恢复到正常氧水平的心率。相比之下,来自后期发育阶段、长期缺氧存活能力大大降低的胚胎会出现严重心动过缓,但不会出现心率停止。这些数据说明了一个新的、可能强大的模型,用于研究缺氧对脊椎动物发育中心血管系统的影响。

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