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An Extract Purified from the Mycelium of a Tomato Wilt-Controlling Strain of Fusarium sambucinum Can Protect Wheat against Fusarium and Common Root Rots

机译:从番茄枯萎病菌株番茄菌丝体的菌丝体中纯化的提取物可以保护小麦免受枯萎病和普通根腐病的侵害

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摘要

An approach to manage seed-transmitted Fusarium crown-foot-root rot (FCR, Fusarium spp.) and common root rot (CRR, Bipolaris sorokiniana) on wheat, avoiding environmental risks of chemicals, is seed treatments with microbial metabolites. F. sambucinum strain FS-94 that induces resistance to tomato wilt was shown by this study to be a source of non-fungitoxic wheat-protecting metabolites, which were contained in a mycelium extract purified by gel-chromatography and ultrafiltration. Plant-protecting effect of the purified mycelial extract (PME) was demonstrated in vegetation experiments using a rolled-towel assay and by small-plot field trials. To elucidate mechanisms putatively underlying PME protective activity, tests with cultured Triticum aestivum and T. kiharae cells, particularly the extracellular alkalinization assay, as well as gene expression analysis in germinated wheat seeds were used. Pre-inoculation treatments of seeds with PME significantly decreased the incidence (from 30 to 40%) and severity (from 37 to 50%) of root rots on seedlings without any inhibition of the seed germination and potentiation of deoxynivalenol (DON), DON monoacetylated derivatives and zearalenon production in FCR agents. In vegetation experiments, reductions in the DON production were observed with doses of 0.5 and 1 mg/mL of PME. Pre-sowing PME application on seeds of two spring wheat cultivars naturally infected with FCR and CRR provided the mitigation of both diseases under field conditions during four growing seasons (2013–2016). PME-induced ion exchange response in cultured wheat cells, their increased survivability, and up-regulated expression of some defensins’ genes in PME-exposed seedlings allow the suggestion of the plant-mediated character of disease-controlling effect observed in field.
机译:在微生物上进行种子处理是管理小麦上种子传播的镰刀菌冠脚根腐烂病(FCR,镰刀菌属)和普通根腐烂(CRR,Bipolaris sorokiniana)的方法,以避免化学物质的环境风险。这项研究表明,诱导对番茄枯萎病具有抗性的桑蚕镰刀菌菌株FS-94是一种无真菌毒性的小麦保护代谢产物,该代谢产物包含在通过凝胶色谱和超滤纯化的菌丝体提取物中。纯化的菌丝体提取物(PME)的植物保护作用在植物实验中通过卷毛巾试验和小田间试验证明。为了阐明潜在的PME保护活性机制,使用了培养的普通小麦和奇异木霉细胞的测试,尤其是细胞外碱化试验,以及发芽的小麦种子中的基因表达分析。 PME种子的接种前处理可显着降低幼苗上根腐病的发生率(从30%降低至40%)和根腐病的严重程度(从37%降低至50%),而不会抑制种子的萌发和脱氧雪茄烯醇(DON),DON单乙酰化FCR试剂中的衍生物和玉米赤霉烯酮的生产。在植被实验中,以0.5和1 mg / mL的PME剂量观察到DON产量降低。在两个自然感染了FCR和CRR的春小麦品种的种子上播种前施用PME,可在四个生长季节(2013-2016年)的田间条件下缓解两种病害。 PME在培养的小麦细胞中诱导的离子交换反应,增加的存活力以及PME暴露的幼苗中某些防御素基因的表达上调,这表明了在田间观察到的植物介导的病害控制特性。

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