首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Induction of PR proteins and resistance by the biocontrol agent Clonostachys rosea in wheat plants infected with Fusarium culmorum
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Induction of PR proteins and resistance by the biocontrol agent Clonostachys rosea in wheat plants infected with Fusarium culmorum

机译:生物防治剂玫瑰茄对小麦枯萎病菌诱导的PR蛋白的诱导和抗性

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摘要

Clonostachys rosea (CR) is a common worldwide saprophyte with destructive effect against several plant pathogenic fungi showing antagonistic features against a wide variety of pathogens. We recently isolated a strain of C. rosea, named CR47, from wheat crown infected with Fusarium culmorum (FC); this strain proved to be effective against Fusarium seed borne diseases of cereals under field condition. In this paper the function of C. rosea applied as seed treatment on wheat seedling growth was investigated. In addition, we investigated the expression pattern of peroxidases and chitinases as well as PR4 proteins following both CR treatments of seeds and FC infection and also in the three-component system pathogen-antagonist-wheat. Several chitinase isoforms were induced by CR-treatment both in coleoptiles and roots, whereas some peroxidase isoforms were induced only in the presence of both antagonist and pathogen. In the latter case, it seems that CR-treatment by itself promotes plant growth and reduces the peroxidase expression, while enhances some chitinase isoforms probably involved in cell wall disruption. Moreover, both the antagonist and the pathogen studied induced PR4 protein expression, which probably exerts its role on the invading microorganisms by a translation-inhibitory process that could be ascribed to their ribonuclease activity.
机译:玫瑰色梭菌(CR)是一种世界范围内常见的腐生植物,对几种植物病原真菌具有破坏性作用,对多种病原体表现出拮抗作用。我们最近从感染了镰孢镰刀菌(FC)的小麦冠中分离了一种名为CR47的玫瑰色念珠菌。在田间条件下,该菌株被证明对谷物的镰刀菌种子传播疾病有效。本文研究了蔷薇果作为种子处理剂对小麦幼苗生长的作用。此外,我们研究了种子的CR处理和FC感染后以及三组分病原体-拮抗剂-小麦中过氧化物酶和几丁质酶以及PR4蛋白的表达模式。在胚芽鞘和根中通过CR处理诱导了几种几丁质酶同工型,而仅在拮抗剂和病原体同时存在下才诱导了一些过氧化物酶同工型。在后一种情况下,似乎CR处理本身可促进植物生长并降低过氧化物酶的表达,同时增强一些可能与细胞壁破坏有关的几丁质酶同工型。此外,研究的拮抗剂和病原体均诱导了PR4蛋白的表达,这可能是由于翻译抑制过程(可能归因于其核糖核酸酶活性)对入侵的微生物发挥了作用。

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