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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Optimization of nanofibrillation degree of chitin for induction of plant disease resistance: Elicitor activity and systemic resistance induced by chitin nanofiber in cabbage and strawberry
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Optimization of nanofibrillation degree of chitin for induction of plant disease resistance: Elicitor activity and systemic resistance induced by chitin nanofiber in cabbage and strawberry

机译:诱导植物抗病诱导巢蛋白纳米纤维度的优化:脑蛋白纳米纤维在白菜和草莓中诱导的Elicitor活性和全身性抗性

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Chitin has not been extensively used in agriculture owing to its handling difficulties despite its utilizable functions such as induction of disease resistance and growth promotion in plants. Chitin nanofiber (CNF), which has an elicitor activity to induce plant disease resistance, can be handled like a water-soluble material, because of its high dispersibility. To determine the potential use of CNF in agriculture, the nanofibrillation degree of chitin for elicitor activity and its effect on the disease resistance against pathogens were examined in cabbage and strawberry plants. The similarity in thickness and length of CNF to that of polymeric chitin was sufficient to induce elicitor activity in both plants. Cabbage and strawberry plants, which were grown in a mixture of soil and CNF with optimized specification, challenged with fungal pathogens showed a reduction in the number of spots caused by Altemaria brassicicola and lesion size by Colletotrichum fructicola, respectively. Gene expression analysis revealed that the defense-related genes in cabbage plant grown in CNF-containing soil were significantly upregulated before and after pathogen infection. These results indicate that CNF can systemically induce disease resistance in cabbage and strawberry plants and is a promising natural-based material to control diseases in cultivated plants. (C) 2018 Elsevier B.V. All rights reserved.
机译:由于其处理困难,但由于其可利用的功能,例如植物中的抗病抗性和生长促进,因此依托困难,依肉蛋白未被广泛用于农业。具有引发植物疾病性抗性的Elicitor活性的甲蛋白纳米纤维(CNF)可以像水溶性材料一样处理,因为其高分子可溶性。为了确定CNF在农业中的潜在用途,在白菜和草莓植物中检查了Elicitor活性的纳米丁蛋白的纳米凝聚度及其对病原体的影响。 CNF的厚度和长度与聚合物甲壳素的相似性足以在两种植物中诱导引导剂活性。在土壤和CNF的混合物中生长的卷心菜和草莓植物具有优化的规格,挑战了真菌病原体,分别通过Collettrichum Fructicola的Altemaria Brassicola和病变大小引起的斑点数量减少。基因表达分析表明,在含CNF土壤中生长的卷心菜植物中的防御相关基因在病原体感染前后显着上调。这些结果表明,CNF可以全身诱导卷心菜和草莓植物中的抗病性,并且是一种有前途的天然材料,用于控制栽培植物中的疾病。 (c)2018年elestvier b.v.保留所有权利。

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