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首页> 外文期刊>Functional Plant Biology >Effect of hydrogen peroxide on catalase gene expression, isoform activities and levels in leaves of potato sprayed with homobrassinolide and ultrastructural changes in mesophyll cells.
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Effect of hydrogen peroxide on catalase gene expression, isoform activities and levels in leaves of potato sprayed with homobrassinolide and ultrastructural changes in mesophyll cells.

机译:过氧化氢对高油菜素内酯喷施马铃薯过氧化氢酶基因表达,同工型活性和水平的影响以及叶肉细胞超微结构的变化。

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The effect of hydrogen peroxide (H2O2) on catalase (CAT) isoform activities and amounts and on mRNA levels was studied in leaves from potato plants untreated and treated with homobrassinolide (HBR). Northern blot analysis revealed that 100 mm H2O2 supplied through the leaf petiole for 4 h did not induce CAT expression. In contrast, CAT1 and CAT2 responded differently to longer treatment, as CAT2 transcript levels increased markedly whereas CAT1 transcript levels remained unchanged. Western blot analysis showed disparity between the level of CAT1 transcript and CAT1 amount, which actually decreased after 28 h. CAT2 amount correlated well with transcript accumulation and CAT2 activity as visualised by zymogram analysis. H2O2 modified the relative importance of CAT isoforms. After 4 h, CAT1 was prevalent in untreated and H2O2-treated leaves. After 28 h, CAT2 was prevalent in H2O2-treated leaves; therefore, the quantified increase in total CAT activity in these leaves was due to the rise in CAT2. HBR pre-treatment increased CAT2 basal level not changing the pattern of CAT responses to H2O2, only lowering its amplitude. Even so, ultrastructural studies showed that HBR significantly reduced H2O2 negative effects on cellular sub-structures, allowing better recovery of affected structures and reducing the macroscopic injury symptoms on leaves, thus data point to a HBR protective role..
机译:研究了过氧化氢(H2O2)对过氧化氢酶(CAT)同工酶活性和数量以及mRNA水平的影响,这些作用来自未经处理和高油菜素内酯(HBR)处理的马铃薯植株叶片。 Northern印迹分析表明,通过叶柄供应的100 mm H2O2持续4 h不会诱导CAT表达。相反,CAT1和CAT2对更长的治疗反应不同,因为CAT2转录水平显着增加,而CAT1转录水平保持不变。 Western印迹分析显示CAT1转录水平与CAT1量之间存在差异,但在28小时后实际上有所降低。通过酶谱分析可见,CAT2的量与转录物的积累和CAT2的活性密切相关。 H2O2改善了CAT同工型的相对重要性。 4小时后,CAT1在未处理和H2O2处理的叶片中普遍存在。 28小时后,H2O2处理过的叶片中普遍存在CAT2。因此,这些叶片中总CAT活性的定量增加是由于CAT2的增加。 HBR预处理可增加CAT2的基础水平,但不会改变CAT对H2O2的响应方式,只会降低其振幅。即便如此,超微结构研究表明,HBR显着降低了H2O2对细胞亚结构的负面影响,从而可以更好地恢复受影响的结构并减轻叶片的宏观损伤症状,因此数据表明了HBR的保护作用。

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