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Contrasting Roles of Deoxynivalenol and Nivalenol in Host-Mediated Interactions between Fusarium graminearum and Sitobion avenae

机译:脱氧雪腐烯酚和新雪茄烯醇在禾本科镰刀菌和麦冬毒杆菌之间的宿主介导的相互作用中的对比作用

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摘要

Fusarium graminearum is the predominant causal species of Fusarium head blight in Europe and North America. Different chemotypes of the species exist, each producing a plethora of mycotoxins. Isolates of differing chemotypes produce nivalenol (NIV) and deoxynivalenol (DON), which differ in toxicity to mammals and plants. However, the effect of each mycotoxin on volatile emissions of plant hosts is not known. Host volatiles are interpreted by insect herbivores such as Sitobion avenae, the English grain aphid, during host selection. Previous work has shown that grain aphids are repelled by wheat infected with DON-producing F. graminearum, and this study seeks to determine the influence of pathogen mycotoxins to host volatile chemistry. Volatile collections from infected hosts and olfactometer bioassays with alate aphids were performed. Infections with isolates that produced DON and NIV were compared, as well as a trichothecene deficient transformant derived from the NIV-producing isolate. This work confirmed the repellent nature of infected hosts with DON accumulation. NIV accumulation produced volatiles that were attractive to aphids. Attraction did not occur when NIV was absent and was, therefore, a direct consequence of NIV production.
机译:禾谷镰刀菌(Fusarium graminearum)是欧洲和北美镰刀菌枯萎病的主要致病菌。存在该物种的不同化学型,每种化学型产生过多的霉菌毒素。不同化学型的分离物产生了对哺乳动物和植物的毒性不同的新戊烯醇(NIV)和脱氧新烯醇(DON)。但是,每种真菌毒素对植物宿主挥发性排放物的影响尚不清楚。寄主选择过程中,寄主挥发物由昆虫食草动物(如英国谷物蚜虫Sitobion avenae)解释。以前的工作表明,谷物蚜虫会被感染了DON的F. graminearum感染的小麦排斥,这项研究旨在确定病原真菌毒素对挥发性化学物质的影响。进行了从感染宿主中的挥发物收集和嗅觉仪生物测定,并进行了后期蚜虫检测。比较了产生DON和NIV的分离株的感染,以及来源于产生NIV的分离株的单端孢菌素缺陷型转化体。这项工作证实了具有DON积累的感染宿主的驱避性。 NIV积累产生的挥发物吸引了蚜虫。当没有NIV时,不会发生吸引力,因此是NIV生产的直接结果。

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