首页> 外文期刊>Journal of Ginseng Research >Cylindrocarpon destructans/Ilyonectria radicicola-species complex:?Causative agent of ginseng root-rot disease and?rusty?symptoms
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Cylindrocarpon destructans/Ilyonectria radicicola-species complex:?Causative agent of ginseng root-rot disease and?rusty?symptoms

机译:圆柱形果皮/放射菌-种复合物:人参根腐病和生锈症状的病原体

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Cylindrocarpon destructans / Ilyonectria radicicola is thought to cause both rusty symptom and root-rot disease of American and Korean ginseng. Root-rot disease poses a more serious threat to ginseng roots than rusty symptoms, which we argue result from the plant defense response to pathogen attack. Therefore, strains causing rotten root are characterized as more aggressive than strains causing rusty symptoms. In this review, we state 1- the molecular evidence indicating that the root-rot causing strains are genetically distinct considering them as a separate species of Ilyonectria , namely I.?mors-panacis and 2- the physiological and biochemical differences between the weakly and highly aggressive species as well as those between rusty and rotten ginseng plants. Eventually, we postulated that rusty symptom occurs on ginseng roots due to incompatible interactions with the weakly aggressive species of Ilyonectria , by the established iron-phenolic compound complexes while root-rot is developed by I.?mors-panacis infection due to the production of high quantities of hydrolytic and oxidative fungal enzymes which destroy the plant defensive barriers, in parallel with the pathogen growth stimulation by utilizing the available iron. Furthermore, we highlight future areas for study that will help elucidate the complete mechanism of root-rot disease development.
机译:人们认为,Cylindrocarpon destructans / radioncola可导致美国和韩国人参的生锈症状和根腐病。根腐病对人参根的威胁要比生锈的症状更为严重,我们认为这是植物对病原体侵袭的防御反应所致。因此,导致根腐烂的菌株比引起生锈症状的菌株更具侵略性。在这篇综述中,我们陈述1-分子证据表明,引起根腐病的菌株在遗传上是不同的,考虑到它们是伊兰氏菌的一个独立物种,即I.mors-panacis,以及2-弱和弱之间的生理和生化差异。极具侵略性的物种,以及生锈和腐烂的人参植物之间的物种。最终,我们推测人参的根部会出现生锈的症状,这是由于已建立的铁-酚类化合物配合物与弱侵略性的肠粘菌不相容的相互作用,而根腐病则是由I.?mors-panacis感染而产生的大量的水解和氧化真菌酶破坏了植物的防御屏障,同时利用可利用的铁刺激病原体生长。此外,我们重点介绍了未来的研究领域,这将有助于阐明根腐病发展的完整机制。

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