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Spermine and Spermidine Priming against

机译:精美和亚精氨酸喷射

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摘要

Polyamines (PAs) are ubiquitous small aliphatic polycations important for growth, development, and environmental stress responses in plants. Here, we demonstrate that exogenous application of spermine (Spm) and spermidine (Spd) induced cell death at high concentrations, but primed resistance against the necrotrophic fungus Botrytis cinerea in Arabidopsis. At low concentrations, Spm was more effective than Spd. Treatments with higher exogenous Spd and Spm concentrations resulted in a biphasic endogenous PA accumulation. Exogenous Spm induced the accumulation of H2O2 after treatment but also after infection with B. cinerea. Both Spm and Spd induced the activities of catalase, ascorbate peroxidase, and guaiacol peroxidase after treatment but also after infection with B. cinerea. The soluble sugars glucose, fructose, and sucrose accumulated after treatment with high concentrations of PAs, whereas only Spm induced sugar accumulation after infection. Total and active nitrate reductase (NR) activities were inhibited by Spm treatment, whereas Spd inhibited active NR at low concentrations but promoted active NR at high concentrations. Finally, γaminobutyric acid accumulated after treatment and infection in plants treated with high concentrations of Spm. Phenylalanine and asparagine also accumulated after infection in plants treated with a high concentration of Spm. Our data illustrate that Spm and Spd are effective in priming resistance against B. cinerea, opening the door for the development of sustainable alternatives for chemical pesticides.
机译:多胺(PAS)是普遍存在的小脂族聚合物,对于植物生长,发育和环境应力反应很重要。在此,我们证明了精霉素(SPM)和亚精胺(SPD)诱导细胞死亡的外源性,但对拟南芥的病神营养真菌Botrytis Cinerea具有激增的抗性。在低浓度下,SPM比SPD更有效。具有更高的外源SPD和SPM浓度的治疗导致双相内源PA积累。外源SPM在治疗后诱导H2O2的积累,而且在感染B. cinerea后感染。 SPM和SPD均在治疗后诱导过氧化氢酶,抗坏血酸过氧化物酶和愈缩菌过氧化物酶的活性,而且在用B. cinerea感染后也是愈合后的活性酶。用高浓度的PA处理后,可溶性糖葡萄糖,果糖和蔗糖积累,而仅感染后SPM诱导糖积累。通过SPM处理抑制了总和活性硝酸盐还原酶(NR)活性,而SPD在低浓度下抑制活性NR,但在高浓度下促进活性NR。最后,在高浓度SPM处理后累积的γ胺酸累积和感染。苯丙氨酸和天冬酰胺也累积在用高浓度的SPM处理的植物中感染后积累。我们的数据说明了SPM和SPD在对B. Cinerea的抗动性抗性方面是有效的,用于开发用于化学杀虫剂的可持续替代品的门。

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