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季节变化对东方白松针叶抗氧化系统的影响:热依赖性的证据。

Seasonal variation in the antioxidant system of eastern white pine needles : evidence for thermal dependence.

机构信息

Department of Plant Pathology, Physiology and Weed Science, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061.

出版信息

Plant Physiol. 1992 Feb;98(2):501-8. doi: 10.1104/pp.98.2.501.

Abstract

Antioxidant metabolites in eastern white pine (Pinus strobus L.) needles increased two- to fourfold from the summer to the winter season. Antioxidant enzymes in needle tissue increased between 2- and 122-fold during this same period. These seasonal changes were determined by monitoring ascorbate and glutathione concentrations and the activity of ascorbate peroxidase, glutathione reductase (GR), and superoxide dismutase. Levels of antioxidant metabolites and enzymes were observed always to be lowest during the summer, or active growing season, and highest during the winter, or dormant season. These data correlated well with the thermal kinetic window for purified GR obtained from summer needles. The minimum, apparent K(m,NADPH) for two isoforms of GR (GR(A) and GR(B)) occurred at 5 and 10 degrees C, respectively. The upper limit of the thermal kinetic window (200% of the minimum K(m)) for GR(A) and GR(B) was 20 and 25 degrees C, respectively, indicating that needle temperatures exceeding 25 degrees C may result in impairment of antioxidant metabolism. The needle content and kinetic properties of GR, the increased activities of other enzymes, and the high substrate concentrations observed during the winter are consistent with the protective function this pathway may provide against photooxidative, winter injury.

摘要

东方白松(Pinus strobus L.)针叶中的抗氧化代谢物从夏季到冬季增加了两到四倍。同一时期,针组织中的抗氧化酶增加了 2 到 122 倍。这些季节性变化是通过监测抗坏血酸和谷胱甘肽浓度以及抗坏血酸过氧化物酶、谷胱甘肽还原酶(GR)和超氧化物歧化酶的活性来确定的。抗氧化代谢物和酶的水平在夏季或活跃的生长季节总是最低,在冬季或休眠季节最高。这些数据与从夏季针叶中获得的纯化 GR 的热动力学窗口很好地相关。两种 GR 同工型(GR(A)和 GR(B))的最小表观 K(m,NADPH)分别出现在 5 和 10°C。GR(A)和 GR(B)的热动力学窗口上限(最小 K(m)的 200%)分别为 20 和 25°C,这表明针温超过 25°C可能导致抗氧化代谢受损。冬季观察到的 GR 的含量和动力学特性、其他酶的活性增加以及高底物浓度与该途径可能为光氧化、冬季损伤提供的保护功能一致。

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