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Manipulation of Catalase Levels Produces Altered Photosynthesis in Transgenic Tobacco Plants

机译:过氧化氢酶水平的操纵在转基因烟草植物中产生改变的光合作用

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摘要

Constructs containing the cDNAs encoding the primary leaf catalase in Nicotiana or subunit 1 of cottonseed (Gossypium hirsutum) catalase were introduced in the sense and antisense orientation into the Nicotiana tabacum genome. The N. tabacum leaf cDNA specifically overexpressed CAT-1, the high catalytic form, activity. Antisense constructs reduced leaf catalase specific activities from 0.20 to 0.75 times those of wild type (WT), and overexpression constructs increased catalase specific activities from 1.25 to more than 2.0 times those of WT. The NADH-hydroxypyruvate reductase specific activity in transgenic plants was similar to that in WT. The effect of antisense constructs on photorespiration was studied in transgenic plants by measuring the CO2 compensation point (Γ) at a leaf temperature of 38°C. A significant linear increase was observed in Γ with decreasing catalase (at 50% lower catalase activity Γ increased 39%). There was a significant temperature-dependent linear decrease in Γ in transgenic leaves with elevated catalase compared with WT leaves (at 50% higher catalase Γ decreased 17%). At 29°C, Γ also decreased with increasing catalase in transgenic leaves compared with WT leaves, but the trend was not statistically significant. Rates of dark respiration were the same in WT and transgenic leaves. Thus, photorespiratory losses of CO2 were significantly reduced with increasing catalase activities at 38°C, indicating that the stoichiometry of photorespiratory CO2 formation per glycolate oxidized normally increases at higher temperatures because of enhanced peroxidation.
机译:将含有编码烟草中初级叶过氧化氢酶或棉籽(陆地棉)过氧化氢酶亚基1的cDNA的构建体以有义和反义方向引入烟草的基因组中。烟草叶cDNA特异地过表达CAT-1,即高催化形式的活性。反义构建体将叶片过氧化氢酶的比活性从野生型(WT)的0.20降低到0.75倍,而过表达构建体将过氧化氢酶的比活性从WT的1.25降低到其2.0倍以上。转基因植物中NADH-羟基丙酮酸还原酶的特异性活性与野生型相似。通过在38°C的叶片温度下测量CO2补偿点(Γ),在转基因植物中研究了反义构建体对光呼吸的影响。随着过氧化氢酶的降低,在Γ中观察到了显着的线性增加(过氧化氢酶活性降低50%时,Γ增加了39%)。与野生型叶片相比,过氧化氢酶含量升高的转基因叶片中Γ的线性线性变化显着(在过氧化氢酶含量高50%时Γ降低17%)。在29°C时,转基因叶片中的Γ也随过氧化氢酶的增加而降低,与野生型叶片相比,但趋势没有统计学意义。 WT和转基因叶片中的暗呼吸速率相同。因此,随着38°C过氧化氢酶活性的提高,CO2的光呼吸损失显着减少,这表明由于较高的过氧化作用,被氧化的乙醇酸的光呼吸形成的化学计量通常在较高的温度下增加。

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