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Enhanced-Peroxidatic Activity in Specific Catalase Isozymes of Tobacco Barley and Maize

机译:在烟草大麦和玉米的特定过氧化氢酶同工酶中增强的过氧化物活性

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摘要

Separation of catalase isozymes from leaf extracts of three diverse plant species (Nicotiana sylvestris, Zea mays, Hordeum vulgare L.) revealed a distinct isozyme with enhanced peroxidatic activity (30-, 70-, 28-fold over typical catalase, respectively) which constituted 10 to 20% of the total catalase activity. In maize this isozyme is the product of the Cat3 gene, which is expressed only in mesophyll cells (AS Tsaftaris, AM Bosabalidis, JG Scandalios [1983] Proc Natl Acad Sci USA 80: 4455-4459). A mutation in barley reducing levels of peroxisomal catalase (AC Kendall et al. [1983] Planta 159: 505-511) does not reduce the amount of the isozyme with enhanced peroxidatic activity. Similarly, this isozyme is unaffected in dark-grown barley in spite of a 75% decrease in total catalase activity. These results suggest that this catalase isozyme is under separate genetic control in barley. This may also be the case in tobacco where the catalase isozyme with enhanced peroxidatic activity is an immunologically distinct protein (EA Havir, NA McHale [1989] Plant Physiol 89: 952-957).
机译:从三种不同植物物种(烟草,烟草,玉米,大麦)的叶提取物中分离过氧化氢酶同工酶显示了一种具有增强的过氧化活性(分别比典型的过氧化氢酶分别高30、70和28倍)的同工酶。过氧化氢酶总活性的10%至20%。在玉米中,该同工酶是Cat3基因的产物,仅在叶肉细胞中表达(AS Tsaftaris,AM Bosabalidis,JG Scandalios [1983] Proc Natl Acad Sci USA 80:4455-4459)。大麦降低过氧化物酶体过氧化氢酶水平的突变(AC Kendall等人,[1983] Planta 159:505-511)不降低具有增强的过氧化物活性的同工酶的量。同样,尽管总过氧化氢酶活性降低了75%,但这种同工酶在深色大麦中不受影响。这些结果表明该过氧化氢酶同工酶在大麦中处于单独的遗传控制之下。在烟草中也可能是这种情况,其中具有增强的过氧化物活性的过氧化氢酶同工酶是免疫学上不同的蛋白质(EA Havir,NA McHale [1989] Plant Physiol 89:952-957)。

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