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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >A study on antifungal activity of water-soluble chitosan against Macrophomina phaseolina
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A study on antifungal activity of water-soluble chitosan against Macrophomina phaseolina

机译:水溶性壳聚糖对菜青虫的抗真菌活性研究

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The objective of this study was to evaluate antifungal effect of water-soluble chitosan (s-chitosan) on Macrophomina p haseolina (M. phaseolina) causing jute seedling infection and monitor the change in activity of released enzymes during infection. The minimum inhibitory concentration (MIC) of s-chitosan for M. phaseolina was found at 12.5 g/1 and s-chitosan exhibited fungistatic mode of action against this pathogen. The application of s-chitosan (12.5 g/1) during infection of jute seedlings by M. phaseolina inhibited fungal infection and length of the seedlings was found almost similar to seedlings without infection. M. phaseolina infected jute seedlings showed length of 22 mm over 10 days of incubation and it increased to 58 mm in presence of s-chitosan (12.5 g/1) during incubation for 10 days. TEM study indicated presence of hyphae in the cortical and epidermal cells of fungus infected jute seedlings indicating colonization by the fungus and it disappeared after treatment with s-chitosan. The changes in enzyme profiles of jute seedling during prevention of fungal infection using s-chitosan helped in proper understanding of mode of action of s-chitosan as antifungal agent. The activity of defense related enzymes like chito sanase and peroxidase in infected seedlings was observed to be enhanced after treatment with s-chitosan.
机译:这项研究的目的是评估水溶性壳聚糖(s-壳聚糖)对引起黄麻幼苗感染的巨大磷虫hasopholina(M. phaseolina)的抗真菌作用,并监测感染过程中释放的酶活性的变化。发现s-壳聚糖对菜豆分枝杆菌的最小抑制浓度(MIC)为12.5 g / 1,并且s-壳聚糖对这种病原体表现出抑菌作用。菜豆分枝杆菌感染黄麻幼苗期间,应用s-壳聚糖(12.5 g / 1)抑制了真菌感染,发现幼苗的长度几乎与未感染的幼苗相似。在培养10天中,被菜豆分枝杆菌感染的黄麻幼苗的长度为22 mm,在存在s-壳聚糖(12.5 g / 1)的情况下增加到58 mm。 TEM研究表明,在真菌感染的黄麻幼苗的皮质和表皮细胞中存在菌丝,表明真菌在其上定居,并在经S-壳聚糖处理后消失。在使用S-壳聚糖预防真菌感染的过程中,黄麻幼苗中酶谱的变化有助于正确理解S-壳聚糖作为抗真菌剂的作用方式。用S-壳聚糖处理后,观察到被感染的幼苗中与防御相关的酶如壳聚糖酶和过氧化物酶的活性增强。

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