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首页> 外文期刊>Journal of Phytopathology >Induction of Enzymes and Phenolic Compounds Related to the Natural Defence Response of Netted Melon Fruit by a Bio-elicitor
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Induction of Enzymes and Phenolic Compounds Related to the Natural Defence Response of Netted Melon Fruit by a Bio-elicitor

机译:生物引发剂诱导与网状甜瓜果实自然防御反应有关的酶和酚类化合物

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Fungal disease in netted melon fruit is an important factor affecting their postharvest quality and therefore an important cause of large economic losses around the world. Among the alternatives to control fungal diseases, the induction of the natural defence response (NDR) in fruits is promising. The objective of this study was to induce the NDR in netted melon treated with a bio-elicitor formulated from Fusarium oxysporum growth in a potato dextrose agar enriched with netted melon skin. Netted melon fruits (cv 'Primo') were not treated (C), untreated and inoculated with F. oxysporum (IN), treated with a bio-elicitor (FES), or treated with the bio-elicitor and inoculated (FES + IN). After treatments, fruits were stored for 8 days at 20 degrees C with 90-92% relative humidity. Melon was sampled every 2 days at 20 degrees C to evaluate the development of Fusarium rot symptoms as disease index percentage (DI), changes in phenolic compounds, changes in phenylalanine ammonia-lyase (PAL) activity, chitinase activity (ChA) and beta-1,3-glucanase activity (GA). It was found that DI in netted melon fruit was significantly reduced in the FES + IN as compared with the IN treatment. FES + IN and FES treatments showed the highest increase of phenolic acids. Higher levels of PAL activity were observed in the treatments IN, FES, and FES + IN with respect to C, after 4 days of storage. A large increase in ChA activity was observed in the treatments IN, FES and FES + IN after 6 days of storage. No differences in GA activity were found among FES, FES + IN and C treatments throughout storage. IN treatment showed the highest increase in GA activity after 4 days of storage. It is concluded that the bio-elicitor activates the NDR as measured by the increase in phenolic acids synthesis, PAL and ChA enzymes activity, in a similar way as the infection by the living pathogen.
机译:网状瓜果中的真菌病是影响其采后质量的重要因素,因此是世界范围内巨大经济损失的重要原因。在控制真菌疾病的替代方法中,在水果中诱导自然防御反应(NDR)很有希望。这项研究的目的是在用富含镰刀状瓜皮的葡萄糖葡萄糖琼脂中生长的由尖孢镰刀菌生长的生物引发剂处理的网状甜瓜中诱导网状甜瓜的NDR。网状瓜果(cv'Primo')未经处理(C),未经处理并用尖孢镰刀菌(IN)接种,经生物诱导剂(FES)处理或经生物诱导剂处理并经接种(FES + IN )。处理后,将水果在20摄氏度,相对湿度90-92%的条件下保存8天。在20摄氏度下每2天采样一次瓜,以评估镰刀菌腐烂症状的发展,如疾病指数百分比(DI),酚类化合物的变化,苯丙氨酸氨解酶(PAL)活性,几丁质酶活性(ChA)和β- 1,3-葡聚糖酶活性(GA)。发现与IN处理相比,FES + IN中的网状瓜果中的DI显着降低。 FES + IN和FES处理显示酚酸增加最多。储存4天后,在IN,FES和FES + IN处理中,相对于C,观察到更高水平的PAL活性。储存6天后,在IN,FES和FES + IN处理中观察到ChA活性大大增加。在整个存储过程中,FES,FES + IN和C处理之间的GA活性均未发现差异。储存4天后,IN处理显示GA活性最高。得出的结论是,生物诱导物激活了NDR,这是通过酚酸合成,PAL​​和ChA酶活性的增加来衡量的,与活体病原体的感染相似。

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