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首页> 外文期刊>Frontiers in Plant Science >Bacterial endophytes from wild maize suppress Fusarium graminearum in modern maize and inhibit mycotoxin accumulation
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Bacterial endophytes from wild maize suppress Fusarium graminearum in modern maize and inhibit mycotoxin accumulation

机译:野生玉米中的细菌内生菌抑制现代玉米中的禾谷镰刀菌(Fusarium graminearum)并抑制真菌毒素的积累

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Wild maize (teosinte) has been reported to be less susceptible to pests than their modern maize (corn) relatives. Endophytes, defined as microbes that inhabit plants without causing disease, are known for their ability to antagonize plant pests and pathogens. We hypothesized that the wild relatives of modern maize may host endophytes that combat pathogens. Fusarium graminearum is the fungus that causes Gibberella Ear Rot (GER) in modern maize and produces the mycotoxin, deoxynivalenol (DON). In this study, 215 bacterial endophytes, previously isolated from diverse maize genotypes including wild teosintes, traditional landraces and modern varieties, were tested for their ability to antagonize F. graminearum in vitro . Candidate endophytes were then tested for their ability to suppress GER in modern maize in independent greenhouse trials. The results revealed that three candidate endophytes derived from wild teosintes were most potent in suppressing F. graminearum in vitro and GER in a modern maize hybrid. These wild teosinte endophytes could suppress a broad spectrum of fungal pathogens of modern crops in vitro . The teosinte endophytes also suppressed DON mycotoxin during storage to below acceptable safety threshold levels. A fourth, less robust anti-fungal strain was isolated from a modern maize hybrid. Three of the anti-fungal endophytes were predicted to be Paenibacillus polymyxa , along with one strain of Citrobacter . Microscopy studies suggested a fungicidal mode of action by all four strains. Molecular and biochemical studies showed that the P. polymyxa strains produced the previously characterized anti- Fusarium compound, fusaricidin. Our results suggest that the wild relatives of modern crops may serve as a valuable reservoir for endophytes in the ongoing fight against serious threats to modern agriculture. We discuss the possible impact of crop evolution and domestication on endophytes in the context of plant defense.
机译:据报道,野生玉米(teosinte)比现代玉米(玉米)近亲对害虫的敏感性更低。内生细菌被定义为可在植物体内栖息而不引起疾病的微生物,以其拮抗植物害虫和病原体的能力而闻名。我们假设现代玉米的野生近缘种可能携带对抗病原体的内生菌。禾谷镰孢(Fusarium graminearum)是导致现代玉米中的赤霉素(Gibberella)耳腐(GER)并产生霉菌毒素,脱氧雪茄烯醇(DON)的真菌。在这项研究中,测试了215种细菌内生菌,这些细菌内生菌以前从多种玉米基因型中分离出来,这些基因型包括野生teosintes,传统地方品种和现代变种,它们在体外拮抗禾本科镰刀菌的能力。然后在独立的温室试验中测试了候选内生菌抑制现代玉米中GER的能力。结果表明,三种来自野生肌腱的候选内生菌在体外抑制禾谷镰刀菌和现代玉米杂交种中抑制GER最有效。这些野生teosinte内生菌可以在体外抑制现代作物的多种真菌病原体。 teosinte内生菌还可以在储存过程中将DON霉菌毒素抑制到可接受的安全阈值以下。从现代玉米杂种中分离出第四种较弱的抗真菌菌株。预计三种抗真菌内生菌是多粘芽孢杆菌,以及一株柠檬酸杆菌。显微镜研究表明,所有四种菌株均具有杀菌作用。分子和生化研究表明,聚粘毕赤酵母菌株产生了先前表征的抗镰刀菌化合物镰刀菌素。我们的结果表明,现代农作物的野生近缘种在对抗现代农业的严重威胁的过程中,可以作为内生植物的宝贵资源。我们讨论了植物防御环境下作物进化和驯化对内生植物的可能影响。

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