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A mutant of the nematophagous fungus Paecilomyces lilacinus (Thom) is a novel biocontrol agent for Sclerotinia sclerotiorum

机译:线虫真菌淡紫色拟青霉(Thom)的突变体是菌核盘菌的新型生物防治剂。

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Sclerotinia sclerotiorum causes severe stem rot and yield loss in oilseed rape (Brassica napus L.) and other crops worldwide. Extensive studies have been conducted on Paecilomyces lilacinus as a nematophagous bioagent. However, no reports stated the effect of P. lilacinus as a biocontrol agent against oilseed rape rot S. sclerotiorum. This study describes such effect in lab and field trials using the new transformant pt361 derived from the wild strain P. lilacinus 36-1. Unlike the wild-type strain, the mutant pt361 showed high antagonistic effect against S. Sclerotiorum A. Under lab conditions, the pt361 inhibited (65%) radial mycelial growth of S. sclerotiorum in dual culture test producing 5.9 mm inhibition zone IZ in front of the S. sclerotiorum colony. Moreover, the cell-free filtrate of pt361 culture showed strong inhibitory effects (60.3-100%) on mycelia] growth of S. sclerotiorum. In leaf detached assay, pt361 significantly (p 0.05) inhibited (40.4-97.9%) the extension of the leaf spots caused by S. sclerotiorum A at all tested concentrations. The genomic DNA sequences of the inserted T-DNA flanking obtained from pt361 strain was cloned, verified as a glycoside hydrolase 31 family by homologous analysis with other fungal strains, and named PGH31 (2556bp). Secondary structure prediction showed a domain (Glycoside hydrolase31). Three years field trial confirmed that the cell-free filtrates or spores suspension of pt361 achieved significant (p 0.05) suppression of oilseed rape stem rot, promoted growth and increased yield compared to the control and exceeded, at dose 100%, the action of the fungicide procymidone (R). In conclusion, the mutant pt361 of P. lilacinus is a novel and promising biocontrol agent against oilseed rape Sclerotinia stem rot. (C) 2015 Elsevier Ltd. All rights reserved.
机译:核盘菌核盘菌在全世界的油菜(甘蓝型油菜)和其他农作物中引起严重的茎腐烂和产量损失。已经对淡紫色拟青霉作为食道生物剂进行了广泛的研究。但是,没有报道表明丁香假单胞菌作为抗油菜油菜菌核盘菌的生物防治剂的作用。这项研究描述了在实验室和田间试验中使用衍生自野生菌株P. lilacinus 36-1的新转化体pt361产生的这种效应。与野生型菌株不同,突变体pt361对S. Sclerotiorum A具有很高的拮抗作用。在实验室条件下,在双重培养试验中,pt361抑制(65%)S. Sclerotiorum的径向菌丝生长,在前端产生5.9 mm抑制区IZ菌核盘菌菌落。此外,pt361培养物的无细胞滤液对菌核菌的菌丝体生长表现出强大的抑制作用(60.3-100%)。在叶片脱离试验中,在所有测试浓度下,pt361均显着(p <0.05)抑制(40.4-97.9%)由核盘菌A引起的叶斑扩展。克隆了从pt361菌株获得的插入的T-DNA侧翼的基因组DNA序列,通过与其他真菌菌株的同源性分析证实其为糖苷水解酶31家族,并命名为PGH31(2556bp)。二级结构预测显示一个域(糖苷水解酶31)。三年的田间试验证实,与对照相比,pt361的无细胞滤液或孢子悬浮液能够显着(p <0.05)抑制油菜油菜茎腐烂,促进生长并提高产量,并在100%剂量时超过了杀菌剂脯氨酰胺(R)。总之,P。lilacinus的突变体pt361是一种新型且有前景的抗油菜油菜菌核干腐病的生物防治剂。 (C)2015 Elsevier Ltd.保留所有权利。

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