首页> 外文期刊>Journal of applied microbiology >In vitro and in vivo antimicrobial activity of Xenorhabdus bovienii YL002 against Phytophthora capsici and Botrytis cinerea.
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In vitro and in vivo antimicrobial activity of Xenorhabdus bovienii YL002 against Phytophthora capsici and Botrytis cinerea.

机译:幽门螺杆菌YL002对辣椒疫霉和灰葡萄孢的体外和体外抗菌活性。我>。

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Aims: Developing new bio-agents to control plant disease is desirable. Entomopathogenic bacteria Xenorhabdus spp. have potential antimicrobial activity in agriculture. This work was conducted to evaluate the antimicrobial activity of Xenorhabdus bovienii YL002 on plant pathogenic fungi and oomycete in vitro and the efficiency of this strain to reduce the in vivo incidence of grey mould rot on tomato plants caused by Botrytis cinerea and leaf scorch on pepper plants caused by Phytophthora capsici. Methods and Results: The antimicrobial activity of X. bovienii YL002 was firstly determined on in vitro plant pathogenic fungi and oomycete and then on tomato fruits and plants infected with B. cinerea and pepper plants infected with P. capsici. The cell-free filtrate of X. bovienii YL002 exhibited highest inhibition effects (>98%) on mycelia growth of P. capsici and B. cinerea. The 50% inhibition concentration (EC50) of the methanol-extracted bioactive compounds (methanol extract) of the cell-free filtrate against P. capsici and B. cinerea were 164.83 and 42.16 micro g ml-1. The methanol extract also had a strong effect on the spore germination of P. capsici and B. cinerea, with a EC50 of 70.38 and 69.33 micro g ml-1, respectively. At 1000 micro g ml-1, the methanol extract showed a therapeutic effect of 70.82% and a protective effect of 77.4% against B. cinerea on tomato plants compared with the control. The methanol extract also showed potent effect against P. capsici, with a therapeutic effect of 68.14% and a protective effect of 65.46% on pepper plants compared with the control. Conclusions: Xenorhabdus bovienii YL002 produces antimicrobial compounds with strong activity on plant pathogenic fungi and oomycete and has the potential for controlling grey mould rot of tomato plants and leaf scorch of pepper and could be useful in integrated control against diverse plant pathogenic fungi and oomycete. Significance and Impact of the Study: This study showed the potential that X. bovienii YL002 can be used to control the grey mould rot caused by B. cinerea on tomato plants and leaf scorch caused by P. capsici on pepper plants with the objective to reduce treatments with chemical fungicides.
机译:目的:开发新的生物制剂来控制植物病害是可取的。致病细菌 Xenorhabdus spp。在农业中具有潜在的抗菌活性。进行了这项工作,以评估牛肝线虫Xenorhabdus bovienii YL002对植物病原性真菌和卵菌体外的抗菌活性,以及​​该菌株降低体内的效率。 / i>灰葡萄孢引起的番茄植株上灰霉病的发生,而辣椒疫霉菌引起的辣椒上的叶焦枯病的发生。方法和结果:X的抗菌活性。首先在体外植物病原性真菌和卵菌上测定bovienii YL002,然后在感染了 B的番茄果实和植物上测定。灰霉病和胡椒植物感染了 P。 capsici 。 X的无细胞滤液。牛肝菌YL002对 P菌丝体的生长表现出最高的抑制作用(> 98%)。 capsici 和 B。灰质。无细胞滤液中甲醇提取的生物活性化合物(甲醇提取物)对 P的50%抑制浓度(EC 50 )。 capsici 和 B。灰质分别为164.83和42.16微克/毫升 -1 。甲醇提取物还对iP的孢子萌发有很强的影响。 capsici 和 B。灰质,其EC 50 分别为70.38和69.33 micro g ml -1 。在1000 micro g ml -1 下,甲醇提取物显示出70.82%的治疗效果和77.4%的B防护效果。番茄植株上的番茄灰质与对照相比。甲醇提取物还显示出对iP的有效作用。辣椒,与对照相比对辣椒植物具有68.14%的治疗效果和65.46%的保护作用。结论:牛肝线虫(Xenorhabdus bovienii)YL002产生对植物病原真菌和卵菌具有强活性的抗菌化合物,具有控制番茄植株的灰霉病和辣椒叶枯萎的潜力,可用于综合防治多种病菌。植物病原性真菌和卵菌。研究的意义和影响:该研究表明了 X的潜力。 bovienii YL002可用于控制由B引起的灰霉病。灰霉病对 P引起的番茄植株和叶片焦烧的影响。 capsici 辣椒植物,目的是减少化学杀真菌剂的处理。

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