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Sulfide-Resistant Respiration in Leaves of Elodea canadensis Michx

机译:加拿大伊乐藻叶片的抗硫化物呼吸作用

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摘要

The rate of dark O2 uptake of Elodea canadensis leaves was titrated with either cyanide or sulfide in the presence and in the absence of 5 millimolar salicylhydroxamic acid (SHAM), an inhibitor of the alternative oxidase. The inhibition of O2 uptake by SHAM alone was very small (3-6%), suggesting that actual respiration mainly occurred through the cytochrome pathway. O2 uptake was slightly stimulated by cyanide at concentrations of 50 micromolar or higher, but in the presence of SHAM respiration was strongly suppressed. The effects of sulfide on O2 uptake were similar to those of cyanide, except that the percent stimulation of O2 uptake by sulfide alone was somewhat higher than that of cyanide. However, the estimates of the capacity of the alternative pathway were similar with both inhibitors. Another difference is that maximal inhibition of respiration in the presence of SHAM was observed with lower concentrations of sulfide (50 micromolar) than cyanide (250 micromolar). The results suggest that sulfide can be used as a suitable inhibitor of cytochrome c oxidase in studies with intact plant tissues, and that sulfide does not apparently inhibit the alternative oxidase.
机译:在存在和不存在5毫摩尔水杨基异羟肟酸(SHAM)(一种替代氧化酶的抑制剂)的情况下,用氰化物或硫化物滴定加拿大伊乐藻的暗O2吸收速率。仅SHAM对O2吸收的抑制作用很小(3-6%),这表明实际呼吸主要通过细胞色素途径发生。在浓度为50微摩尔或更高的情况下,氰化物会轻微刺激O2的吸收,但是在存在SHAM的情况下,呼吸作用会受到强烈抑制。硫化物对O 2吸收的影响与氰化物相似,不同的是仅硫化物对O 2吸收的刺激百分率略高于氰化物。然而,两种抑制剂对替代途径的能力的估计均相似。另一个区别是,与氰化物(250微摩尔)相比,硫化物(50微摩尔)浓度较低时,观察到在SHAM存在下对呼吸的最大抑制。结果表明,在完整植物组织的研究中,硫化物可以用作细胞色素c氧化酶的合适抑制剂,而硫化物显然不能抑制其他氧化酶。

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