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Comparative Evaluation of Biochemical Changes in Tomato (Lycopersicon esculentum Mill.) Infected by Alternaria alternata and Its Toxic Metabolites (TeA AOH and AME)

机译:交替链格孢及其有毒代谢产物(TeAAOH和AME)感染番茄(番茄)的生化变化的比较评估

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摘要

In the present study, we have evaluated the comparative biochemical defense response generated against Alternaria alternata and its purified toxins viz. alternariol (AOH), alternariol monomethyl ether (AME), and tenuazonic acid (TeA). The necrotic lesions developed due to treatment with toxins were almost similar as those produced by the pathogen, indicating the crucial role of these toxins in plant pathogenesis. An oxidative burst reaction characterized by the rapid and transient production of a large amount of reactive oxygen species (ROS) occurs following the pathogen infection/toxin exposure. The maximum concentration of hydrogen peroxide (H2O2) produced was reported in the pathogen infected samples (22.2-fold) at 24 h post inoculation followed by TeA (18.2-fold), AOH (15.9-fold), and AME (14.1-fold) in treated tissues. 3,3′- Diaminobenzidine staining predicted the possible sites of H2O2 accumulation while the extent of cell death was measured by Evans blue dye. The extent of lipid peroxidation and malondialdehyde (MDA) content was higher (15.8-fold) at 48 h in the sample of inoculated leaves of the pathogen when compared to control. The cellular damages were observed as increased MDA content and reduced chlorophyll. The activities of antioxidative defense enzymes increased in both the pathogen infected as well as toxin treated samples. Superoxide dismutase (SOD) activity was 5.9-fold higher at 24 h post inoculation in leaves followed by TeA (5.0-fold), AOH (4.1-fold) and AME (2.3-fold) treated leaves than control. Catalase (CAT) activity was found to be increased upto 48 h post inoculation and maximum in the pathogen challenged samples followed by other toxins. The native PAGE results showed the variations in the intensities of isozyme (SOD and CAT) bands in the pathogen infected and toxin treated samples. Ascorbate peroxidase (APx) and glutathione reductase (GR) activities followed the similar trend to scavenge the excess H2O2. The reduction in CAT activities after 48 h post inoculation demonstrate that the biochemical defense programming shown by the host against the pathogen is not well efficient resulting in the compatible host-pathogen interaction. The elicitor (toxins) induced biochemical changes depends on the potential toxic effects (extent of ROS accumulation, amount of H2O2 produced). Thus, a fine tuning occurs for the defense related antioxidative enzymes against detoxification of key ROS molecules and effectively regulated in tomato plant against the pathogen infected/toxin treated oxidative stress. The study well demonstrates the acute pathological effects of A. alternata in tomato over its phytotoxic metabolites.
机译:在本研究中,我们评估了对抗链格孢及其纯化毒素产生的比较生化防御反应。交替糖(AOH),交替糖单甲醚(AME)和Tenaazonic酸(TeA)。由于用毒素处理而产生的坏死病灶与病原体所产生的坏死病灶几乎相似,表明这些毒素在植物发病机理中的关键作用。在病原体感染/毒素暴露后,会发生快速突发性产生大量活性氧(ROS)的氧化爆发反应。接种后24小时报告了病原体感染样品中产生的最大过氧化氢(H2O2)浓度(22.2倍),其次是TeA(18.2倍),AOH(15.9倍)和AME(14.1倍)在治疗过的组织中。 3,3'-二氨基联苯胺染色预测了H2O2积累的可能位置,而细胞死亡的程度由伊文思蓝染料测量。与对照相比,在病原体接种叶片的48小时内,脂质过氧化程度和丙二醛(MDA)含量更高(15.8倍)。观察到细胞损伤为MDA含量增加和叶绿素减少。在被感染的病原体和经毒素处理的样品中,抗氧化防御酶的活性均增加。接种后24小时,叶片中的超氧化物歧化酶(SOD)活性比对照高5.9倍,其次是TeA(5.0倍),AOH(4.1倍)和AME(2.3倍)处理的叶片。发现过氧化氢酶(CAT)活性在接种后48小时内增加,在病原体攻击的样品中增加了最大值,其次是其他毒素。天然PAGE结果显示感染病原体和毒素处理过的样品中同工酶(SOD和CAT)谱带强度的变化。抗坏血酸过氧化物酶(APx)和谷胱甘肽还原酶(GR)的活性遵循类似的趋势,以清除过量的H2O2。接种后48小时后CAT活性降低表明,宿主针对病原体显示的生化防御程序效率不高,导致宿主与病原体之间的相容性相互作用。引发剂(毒素)引起的生化变化取决于潜在的毒性作用(ROS积累的程度,产生的H2O2的量)。因此,针对防御相关的抗氧化酶对关键ROS分子的解毒进行了微调,并在番茄植物中针对病原体感染/毒素处理的氧化应激进行了有效调节。该研究很好地证明了番茄中交链孢菌对其植物毒性代谢产物的急性病理作用。

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