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首页> 外文期刊>The Journal of Experimental Biology >Hemoglobin enhances oxygen uptake in larval zebrafish (Danio rerio) but only under conditions of extreme hypoxia
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Hemoglobin enhances oxygen uptake in larval zebrafish (Danio rerio) but only under conditions of extreme hypoxia

机译:血红蛋白可提高幼虫斑马鱼(达尼奥里奥)的氧气吸收,但仅在极端缺氧的条件下

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摘要

The role of hemoglobin (Hb) in O(2) uptake by zebrafish larvae ranging in age from 5 to 42 days postfertilization was assessed under conditions of normoxia, moderate hypoxia and extreme hypoxia. This was achieved by exposing larvae with and without functional Hb to continuously declining oxygen levels (P(O(2))) in closed-system respirometers. Exposure to 5% CO for 2-4 h was used to render Hb effectively non-functional in terms of its ability to transport O(2). Routine metabolic rate (rM(O(2))), critical dissolved oxygen level (P(c)) and residual oxygen level (P(r)) were determined and used, respectively, as indicators of response in normoxia, moderate hypoxia and extreme hypoxia. rM(O(2)) was defined as the average rate of O(2) uptake before O(2) became limiting (i.e. at high P(O(2))s). P(c) is the P(O(2)) at which rM(O(2)) first becomes O(2)-limited and P(r) is the P(O(2)) below which larvae are no longer able to extract O(2) from the ambient medium. CO poisoning had no significant impact on rM(O(2)) or P(c) at any age, indicating that the lack of functional Hb does not impair routine O(2) usage in normoxia or at moderate levels of hypoxia [down to at least 25-50 torr (1 torr approximately 0.133 kPa), depending on age]. P(r), however, was significantly lower overall for control larvae (6.7+/-1.1 torr; mean +/- 95%CI) than for CO-poisoned larvae (11.2+/-2.1 torr). It would appear that the presence of functional Hb allows zebrafish larvae to extract O(2) from water down to lower P(O(2))s under conditions of extreme hypoxia. This is the first documented (as opposed to inferred) benefit of Hb in developing zebrafish. However, given the relatively small magnitude of the effect it is unclear if this benefit on its own is sufficient to balance the costs associated with Hb production and maintenance.
机译:在正常氧,中度缺氧和极端缺氧的条件下评估了年龄从受精后5至42天的斑马鱼幼虫摄取O(2)的血红蛋白(Hb)的作用。这是通过在封闭系统呼吸计中将具有和不具有功能性Hb的幼虫暴露于连续下降的氧气水平(P(O(2)))来实现的。暴露于5%的CO中2-4小时被用来使Hb在运输O(2)的能力方面有效地失去功能。确定并使用常规代谢率(rM(O(2))),临界溶解氧水平(P(c))和残余氧水平(P(r))作为正常氧,中度低氧和正常氧的反应指标。极端缺氧。 rM(O(2))定义为在O(2)变得受限之前(即在高P(O(2))s下)吸收O(2)的平均速率。 P(c)是P(O(2)),其中rM(O(2))首先变为O(2)限制,而P(r)是P(O(2)),其下幼虫不再能够从环境介质中提取O(2)。一氧化碳中毒对任何年龄的rM(O(2))或P(c)均无显着影响,表明缺乏功能性Hb不会损害常氧或中度低氧水平下常规O(2)的使用[低至至少25至50托(1托,约0.133 kPa),具体取决于年龄]。然而,对照幼虫(6.7 +/- 1.1 torr;平均+/- 95%CI)的P(r)总体上低于CO中毒幼虫(11.2 +/- 2.1 torr)的总体。似乎功能性血红蛋白的存在允许斑马鱼幼虫在极端缺氧的条件下从水中提取O(2)降至较低的P(O(2))s。这是Hb在开发斑马鱼中的第一个有据可查的(相对于推断的)好处。但是,鉴于影响的程度相对较小,尚不清楚这种好处是否足以平衡与Hb生产和维护相关的成本。

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