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首页> 外文期刊>Critical Reviews in Biotechnology >Biotechnological approaches for field applications of chitooligosaccharides (COS) to induce innate immunity in plants
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Biotechnological approaches for field applications of chitooligosaccharides (COS) to induce innate immunity in plants

机译:壳寡糖(COS)现场应用以诱导植物先天免疫的生物技术方法

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摘要

Plants have evolved mechanisms to recognize a wide range of pathogen-derived molecules and to express induced resistance against pathogen attack. Exploitation of induced resistance, by application of novel bioactive elicitors, is an attractive alternative for crop protection. Chitooligosaccharide (COS) elicitors, released during plant fungal interactions, induce plant defenses upon recognition. Detailed analyses of structure/function relationships of bioactive chitosans as well as recent progress towards understanding the mechanism of COS sensing in plants through the identification and characterization of their cognate receptors have generated fresh impetus for approaches that would induce innate immunity in plants. These progresses combined with the application of chitin/chitosan/COS in disease management are reviewed here. In considering the field application of COS, however, efficient and large-scale production of desired COS is a challenging task. The available methods, including chemical or enzymatic hydrolysis and chemical or biotechnological synthesis to produce COS, are also reviewed.
机译:植物已经进化出机制来识别多种病原体衍生的分子并表达对病原体攻击的诱导抗性。通过应用新型生物活性引发剂来开发诱导抗性,是保护作物的一种有吸引力的选择。在植物真菌相互作用期间释放的壳寡糖(COS)引发剂在识别后诱导植物防御。对生物活性壳聚糖的结构/功能关系的详细分析,以及通过鉴定和表征其同源受体来了解植物中COS感应机制的最新进展,为诱导植物先天免疫的方法提供了新的动力。这些进展与几丁质/壳聚糖/ COS在疾病管理中的应用相结合。但是,在考虑COS的现场应用时,高效大规模生产所需COS是一项艰巨的任务。还综述了可用的方法,包括化学或酶促水解以及化学或生物技术合成以生产COS的方法。

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