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Investigating the effect of methyl jasmonate on the biocontrol activity of Meyerozyma guilliermondii against blue mold decay of apples and the possible mechanisms involved

机译:调查茉莉酸甲酯对Meyerozyma Guilliermondii对苹果蓝模腐烂的生物控制活性的影响及可能所涉及的可能机制

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Apple is one of the largely grown fruits in China, and it suffers great economic losses caused by Penicillium expansum infection every year. In the present study, we ascertained the efficacy of Meyerozyma guilliermondii enhanced by 200 mu mol/L methyl jasmonate (MeJA) in controlling the postharvest blue mold decay of apples and the possible mechanisms involved. The results demonstrated that the biological control ability of M. guilliermondii induced by MeJA in restraining P. expansum infection in apples. The efficacy of M. guilliermondii induced by MeJA significantly decreased the decay incidence and lesion diameter of apples. When treated with M. guilliermondii induced by MeJA, the decay incidence of apples was only 21.6%, while apples treated with M. guilliermondii was 42.4%. M. guilliermondii induced by MeJA also reduced the germ tube length, spore germination rate of P. expansum in PDB and colony diameter of P. expansum in PDA. The results also showed that antagonistic yeast induced by MeJA proliferated better in apple wounds and surface at 4 degrees C or 20 degrees C. Meanwhile, the activities of resistance-related peroxidase (POD), polyphenol oxidase (PPO), phenylalanine ammonia-lyase (PAL), Catalase (CAT), and the antibacterial substances of flavonoid contents, total phenolic content were all increased. The results manifested that M. guilliermondii induced by MeJA increased the expression levels of defense-related enzymes in apples.
机译:苹果是中国大部分生长的水果之一,每年都会受到青霉突变感染引起的经济损失很大。在本研究中,我们确定了Meyerozyma Guilliermondii的功效通过200μmmol/ l茉莉/稀酸甲酯(Meja)控制苹果的采后蓝模衰减和所涉及的可能机制。结果表明,Meja在抑制苹果中的Meja诱导的M.Guilliermondii的生物控制能力。 MEJA诱导的M. Guilliermondii的疗效显着降低了苹果的衰减发病率和病变直径。当用Meja引起的M. Guilliermondii治疗时,苹果的衰减发病率仅为21.6%,而用M. Guilliermondii治疗的苹果是42.4%。 MMAJA诱导的M. Guilliermondii还降低了PDB中PDB中PDB和菌落直径的P.PASIAM的胚胎萌发率。结果还表明,Meja诱导的抗腺苷酸酵母在苹果伤口和表面上的4℃或20℃的表面上更好地增殖。同时,抗性相关的过氧化物酶(POD),多酚氧化酶(PPO),苯丙氨酸氨 - 裂解酶( PAL),过氧化氢酶(CAT)和类黄酮含量的抗菌物质,总酚含量全部增加。结果表明,Meja诱导的M. Guilliermondii增加了苹果中的防御相关酶的表达水平。

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