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首页> 外文期刊>World Journal of Microbiology & Biotechnology >The effect of size and acetylation degree of chitosan derivatives on tobacco plant protection against Phytophthora parasitica nicotianae
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The effect of size and acetylation degree of chitosan derivatives on tobacco plant protection against Phytophthora parasitica nicotianae

机译:壳聚糖衍生物的大小和乙酰化程度对烟草对烟草疫霉的保护作用。

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摘要

Enzymatic degradation of chitosan polymer with Pectinex Ultra SPL was used to obtain derivatives with biological potential as protective agents against Phytophthora parasitica nicotianae (Ppn) in tobacco plants. The 24 h hydrolysate showed the highest Ppn antipathogenic activity and the chitosan native polymer the lowest. The in vitro growth inhibition of several Phytophthora parasitica strains by two chitosans of different DA was compared. While less acetylated chitosan (DA 1%) fully inhibited three P. parasitica strains at the doses 500 and 1000 mg/l the second polymer (DA 36.5%) never completely inhibited such strains. When comparing two polymers of similar molecular weight and different DA, again the highest antipathogenic activity was for the less acetylated polymer. However, degraded chitosan always showed the highest pathogen growth inhibition. Additionally, a bioassay in tobacco seedlings to test plant protection against Ppn by foliar application demonstrated that partially acetylated chitosan and its hydrolysate induced systemic resistance and higher levels of glucanase activity than less acetylated chitosan. Similarly, when treatments were applied as seeds coating before planting, about 46% of plant protection was obtained using chitosan hydrolysate. It was concluded that, while less acetylated and degraded chitosan are better for direct inhibition of pathogen growth, partially acetylated and degraded chitosan are suitable to protect tobacco against P. parasitica by systemic induction of plant resistance.
机译:使用Pectinex Ultra SPL对壳聚糖聚合物进行酶降解可得到具有生物学潜力的衍生物,作为烟草植物中抗寄生疫霉菌(Ppn)的保护剂。 24小时水解产物显示最高的Ppn抗病活性,而壳聚糖天然聚合物的最低。比较了两种不同DA的壳聚糖对几种疫霉菌的体外生长抑制作用。乙酰化程度较低的壳聚糖(DA 1%)以500和1000 mg / l的剂量完全抑制了三种寄生寄生毕赤酵母菌株,而第二种聚合物(DA 36.5%)则从未完全抑制这种菌株。当比较分子量相似和DA不同的两种聚合物时,对乙酰化程度较低的聚合物的抗病原活性最高。但是,降解的壳聚糖始终显示出最高的病原体生长抑制作用。另外,通过叶面施药对烟草幼苗进行生物测定以测试植物对Ppn的保护作用表明,与乙酰化壳聚糖相比,部分乙酰化壳聚糖及其水解产物可诱导系统抗性和更高水平的葡聚糖酶活性。类似地,当在种植前将处理剂用作种子包衣时,使用壳聚糖水解物可获得约46%的植物保护。结论是,虽然较少乙酰化和降解的壳聚糖更好地直接抑制病原体的生长,但是部分乙酰化和降解的壳聚糖适合通过系统诱导植物抗性来保护烟草免受寄生性疟原虫的侵害。

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