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Visualisation of reactive oxygen species during stress of spearmint (Mentha spicata L.)

机译:留压应力(Mentha Spicata L.)中活性氧物种的可视化

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The present study is the first to describe the detection of Reactive Oxygen Species (ROS) in spearmint (Mentha spicata L.) grown under nutrient stress conditions through 3,30-diaminobenzidine (DAB) and nitro blue tetrazolium chloride (NBT) histochemical methods. Spearmint cuttings grown under manganese and salt conditions showed toxicity and stunted growth after 10 and 20 days of the stress treatments (> 2.5 mM for the manganese and >100 mM for the saline stress). These abiotic stresses induced the production of ROS in the leaf tissue of the spearmint. Accumulation of hydrogen peroxide was characterised as brown spots by DAB polymerisation which was noticed on leaf tissues from the plants grown under 2.5 and 5 mM concentrations of manganese as wellas 300 mM concentration of salt. Furthermore, accumulation of superoxide anion was also characterised as blue pigments based upon the ability of cells to reduce NBT. Level of the secondary metabolite menthol was also significantly increased in response to the ROS production. Our study confirmed the validity of use of DAB and NBT stains in elucidating ROS accumulation in cells of spearmint, the important medical plant under nutrient stress conditions.
机译:本研究是第一个通过3,30-二氨基苯甲酸(DAB)和硝基蓝四氯化锆(NBT)组织化学方法在营养应激条件下在营养应激条件下生长的留纸(Mentha Spicata L.)中的反应性氧物质(ROS)检测。在锰和盐条件下生长的羽毛状扦插显示出毒性和在应力处理的10天和20天后的生长(锰2.5mm,盐水应激的100mm)。这些非生物应力诱导留叶片组织中的ROS生产。过氧化氢的积累表征为DAB聚合的棕色斑点,该棕色斑点是在从2.5和5mm浓度的盐的植物中生长的植物中的叶组织上被注意到的棕色斑点。此外,基于细胞减少NBT的能力,过量的超氧化物阴离子的积累也表征为蓝色颜料。次级代谢物薄荷醇的水平也响应ROS生产也显着增加。我们的研究证实了DAB和NBT污染物的使用有效性,阐明了营养胁迫条件下的重要医疗植物中的陪氏素细胞中的ROS积累。

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