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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Lysobacter enzymogenes strain C3 suppresses mycelium growth and spore germination of eight soybean fungal and oomycete pathogens and decreases disease incidences
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Lysobacter enzymogenes strain C3 suppresses mycelium growth and spore germination of eight soybean fungal and oomycete pathogens and decreases disease incidences

机译:溶血子酶促菌株C3抑制了八豆生真菌和Oomycete病原体的菌丝体生长和孢子萌发,并降低了疾病发病

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摘要

Fungal and oomycete diseases can cause severe yield losses on soybean. Lysobacter enzymogenes strain C3 (LeC3) has been reported to be an effective biological control agent (BCA) against various plant pathogens. In the current study, we used a dual culture assay to test antagonism between LeC3 and eight fungal and oomycete pathogens of soybean, including Macrophomina phaseolina (causal agent of charcoal rot), Phytophthora sojae (causal agent of Phytophthora stem and root rot), Pythium spp. (causal agent of seedling blight), Rhizoctonia solani (causal agent of Rhizoctonia root rot), Sclerotinia sclerotiorum (causal agent of Sclerotinia stem rot), Cercospora sojina (causal agent of frogeye leaf spot), Fusarium virguliforme (causal agent of sudden death syndrome), and Septoria glycines (causal agent of Septoria brown spot). Our findings revealed that LeC3 was effective in suppressing mycelial growth or spore germination of all the soybean pathogens tested, which was bacterial doseand medium nutrient-dependent. Microscopic examination indicated that LeC3 probably works by degrading cell structures. In greenhouse conditions, we observed that application of LeC3 by soil drench or seed treatment led to 16% to 27% increased biomass in co-inoculated plants as compared with F. virguliforme and R. solani-infected plants alone. In addition, spray application of LeC3 at 10(7), 10(8), and 10(9) CFU/ml reduced lesions caused by S. sclerotiorum by 24, 38 and 86%, respectively. As a conclusion, these results suggest that LeC3 is a potential biological control agent with broad-spectrum antagonistic activities against fungal and oomycete pathogens of soybean.
机译:真菌和卵菌病可导致大豆严重减产。产酶溶杆菌C3(LeC3)是一种有效的植物病原生物防治剂(BCA)。在目前的研究中,我们使用双重培养试验来测试LeC3与大豆的八种真菌和卵菌病原体之间的拮抗作用,包括菜豆巨孢菌(木炭腐病的病原体)、大豆疫霉(疫霉茎和根腐病的病原体)、腐霉属(幼苗枯萎病的病原体)、立枯丝核菌(立枯丝核菌根腐病的病原体),菌核病(菌核病茎腐病的致病因子)、灰斑病(灰斑病的致病因子)、镰刀菌(猝死综合征的致病因子)和甘氨酸七胞菌(赤斑病的致病因子)。我们的研究结果表明,LeC3能有效抑制所有大豆病原菌的菌丝生长或孢子萌发,这是细菌剂量和培养基营养依赖性的。显微镜检查表明,LeC3可能通过降解细胞结构发挥作用。在温室条件下,我们观察到,与单独感染F.virguliforme和R.solani的植物相比,通过土壤浸水或种子处理施用LeC3可使共接种植物的生物量增加16%至27%。此外,以10(7)、10(8)和10(9)CFU/ml的浓度喷洒LeC3,可分别将核盘菌引起的病变减少24%、38%和86%。这些结果表明,LeC3是一种潜在的生物防治剂,对大豆的真菌和卵霉菌具有广谱拮抗活性。

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