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关于角叉菜在光照下氧气吸收的本质。抑制剂、温度和光照强度的影响。

On the nature of the oxygen uptake in the light by Chondrus crispus. Effects of inhibitors, temperature and light intensity.

机构信息

Département de Biologie, Service de Radioagronomie, CEN Cadarache, 13108, St Paul Lez Durance, France.

出版信息

Photosynth Res. 1987 Jan;11(1):45-59. doi: 10.1007/BF00117673.

Abstract

The nature of the different processes of O2 uptake involved in the light in the red macroalga Chondrus crispus Stackhouse (Rhodophyta, Gigartinales) was investigated. At limiting CO2, INH (2.5 mM) did not alter the O2 uptake rate. Glycolate was not excreted and did not accumulate within the cells. KCN reduced the rate of O2 uptake in the light by 76% at limiting CO2 and by 43% at saturating CO2, but caused > 95% inhibition of O2 evolution. DCMU (5 μM) totally blocked the photosynthetic electron transport chain, but allowed a residual O2 uptake of 3.0±0.6 μmol O2 .h(-1).g(-1) FW, irrespective of the CO2 concentration. In saturating CO2, a high light intensity pretreatment significantly stimulated the rate of O2 uptake compared to net O2 evolution, suggesting the persistence, in the light, of mitochondrial respiration. Irrespective of the CO2 concentration, the optimum temperature for O2 evolution was 17°C whereas dark O2 uptake increased linearly with temperature. In contrast, O2 uptake in the light showed an optimum at 17°C in limiting CO2, and 21-25° C in saturating CO2; its Q10 was 2.4 at limiting CO2, a value close to that of RuBP oxygenase, and 3.1 at saturating CO2, a value close to that of dark respiration. It is concluded that: 1) mitochondrial respiration and Mehler reaction are both involved at all CO2 concentrations, 2) RuBP oxygenase activity cannot account for more than 45%, and Mehler reaction for less than 20%, of the total O2 uptake observed in the light at limiting CO2.

摘要

研究了不同过程的性质在红光下涉及的 O2 摄取的大型红藻角叉菜(红藻,Gigartinales)Stackhouse。在限制 CO2 时,INH(2.5 mM)不改变 O2 摄取率。甘氨酸没有排泄,也没有在细胞内积累。KCN 在限制 CO2 时将 O2 摄取率降低了 76%,在饱和 CO2 时降低了 43%,但引起 >95%的 O2 释放抑制。DCMU(5 μM)完全阻断了光合作用电子传递链,但允许残留的 O2 摄取 3.0±0.6 μmol O2.h(-1).g(-1)FW,与 CO2 浓度无关。在饱和 CO2 中,高光强预处理与净 O2 释放相比显著刺激了 O2 摄取率,这表明在线粒体呼吸中存在持续性。与 CO2 浓度无关,O2 释放的最佳温度为 17°C,而黑暗 O2 摄取随温度线性增加。相比之下,在限制 CO2 中,光照下的 O2 摄取在 17°C 时表现出最佳状态,在饱和 CO2 中在 21-25°C 时表现出最佳状态;其 Q10 在限制 CO2 时为 2.4,接近 RuBP 加氧酶的值,在饱和 CO2 时为 3.1,接近黑暗呼吸的值。结论是:1)在线粒体呼吸和 Mehler 反应在所有 CO2 浓度下都有参与,2)RuBP 加氧酶活性不能解释在限制 CO2 下观察到的光下总 O2 摄取的 45%以上,而 Mehler 反应不能解释 20%以下。

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