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Reactive oxygen species production and discontinuous gas exchange in insects

机译:昆虫中的活性氧物质产生和不连续的气体交换

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摘要

While biochemical mechanisms are typically used by animals to reduce oxidative damage, insects are suspected to employ a higher organizational level, discontinuous gas exchange mechanism to do so. Using a combination of real-time, flow-through respirometry and live-cell fluorescence microscopy, we show that spiracular control associated with the discontinuous gas exchange cycle (DGC) in Samia cynthia pupae is related to reactive oxygen species (ROS). Hyperoxia fails to increase mean ROS production, although minima are elevated above normoxic levels. Furthermore, a negative relationship between mean V and mean ROS production indicates that higher ROS production is generally associated with lower V. Our results, therefore, suggest a possible signalling role for ROS in DGC, rather than supporting the idea that DGC acts to reduce oxidative damage by regulating ROS production. © 2011 The Royal Society.
机译:虽然动物通常使用生化机制来减少氧化损伤,但怀疑昆虫会采用较高的组织水平,即不连续的气体交换机制。结合使用实时,流通式呼吸测定法和活细胞荧光显微镜,我们显示与萨米辛yn的不连续气体交换循环(DGC)相关的螺距控制与活性氧(ROS)相关。高氧血症不能增加平均ROS产生,尽管最低值高于常氧水平。此外,平均V与平均ROS产量之间呈负相关关系,表明较高的ROS产量通常与较低的V相关。因此,我们的结果表明ROS在DGC中可能具有信号作用,而不是支持DGC起到减少氧化作用的想法。通过调节ROS的产生来破坏。 ©2011皇家学会。

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