首页> 美国卫生研究院文献>Plant Physiology >Overexpression of Iron Superoxide Dismutase in Transformed Poplar Modifies the Regulation of Photosynthesis at Low CO2 Partial Pressures or Following Exposure to the Prooxidant Herbicide Methyl Viologen
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Overexpression of Iron Superoxide Dismutase in Transformed Poplar Modifies the Regulation of Photosynthesis at Low CO2 Partial Pressures or Following Exposure to the Prooxidant Herbicide Methyl Viologen

机译:转化杨树中铁超氧化物歧化酶的过表达 修改低二氧化碳下的光合作用调节 分压或暴露于抗氧化剂除草剂后 甲基紫精

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摘要

Chloroplast-targeted overexpression of an Fe superoxide dismutase (SOD) from Arabidopsis thaliana resulted in substantially increased foliar SOD activities. Ascorbate peroxidase, glutathione reductase, and monodehydroascorbate reductase activities were similar in the leaves from all of the lines, but dehydroascorbate reductase activity was increased in the leaves of the FeSOD transformants relative to untransformed controls. Foliar H2O2, ascorbate, and glutathione contents were comparable in all lines of plants. Irradiance-dependent changes in net CO2 assimilation and chlorophyll a fluorescence quenching parameters were similar in all lines both in air (21% O2) and at low (1%) O2. CO2-response curves for photosynthesis showed similar net CO2-exchange characteristics in all lines. In contrast, values of photochemical quenching declined in leaves from untransformed controls at intercellular CO2 (Ci) values below 200 μL L−1 but remained constant with decreasing Ci in leaves of FeSOD transformants. When the O2 concentration was decreased from 21 to 1%, the effect of FeSOD overexpression on photochemical quenching at limiting Ci was abolished. At high light (1000 μmol m−2 s−1) a progressive decrease in the ratio of variable (Fv) to maximal (Fm) fluorescence was observed with decreasing temperature. At 6oC the high-light-induced decrease in the Fv/Fm ratio was partially prevented by low O2 but values were comparable in all lines. Methyl viologen caused decreased Fv/Fm ratios, but this was less marked in the FeSOD transformants than in the untransformed controls. These observations suggest that the rate of superoxide dismutation limits flux through the Mehler-peroxidase cycle in certain conditions.
机译:叶绿体靶向的拟南芥Fe超氧化物歧化酶(SOD)的过表达导致叶面SOD活性大幅增加。在所有品系的叶片中,抗坏血酸过氧化物酶,谷胱甘肽还原酶和单脱氢抗坏血酸还原酶的活性都相似,但是与未转化的对照相比,FeSOD转化子的叶片中脱氢抗坏血酸的还原酶活性增加。在所有植物株系中,叶面的H2O2,抗坏血酸和谷胱甘肽的含量均相当。净CO 2同化和叶绿素a荧光猝灭参数的辐照度变化在空气(21%O2)和低(1%)O2的所有系中相似。光合作用的CO2响应曲线在所有品系中均表现出相似的净CO2交换特征。相反,在低于200μLL -1 的细胞间CO2(Ci)值下,未转化对照的叶片光化学猝灭值下降,但 FeSOD转化子叶片中的Ci含量降低时保持恒定。 当氧气浓度从21%降至1%时, FeSOD过表达对光化学猝灭的影响 Ci被废除了。高光下(1000μmolm −2 s −1 )变量比逐渐减小 (Fv)至最大值 (Fm)观察到荧光 降低温度。在6 o C,高光诱导 减少 Fv / Fm比为 低氧可部分预防,但在 所有行。甲基紫精引起的减少 Fv / Fm比,但 FeSOD转化体中的这种标记不如 未转换的控件。这些观察结果表明, 超氧化物歧化限制了通过梅勒-过氧化物酶循环的通量 在某些情况下。

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