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Synergistic Effect of Combined Application of a New Fungicide Fluopimomide with a Biocontrol Agent Bacillus methylotrophicus TA-1 for Management of Gray Mold in Tomato

机译:一种新的杀菌剂氟吡喃菊酯与生物防治芽孢杆菌的协同效应甲基胰岛素TA-1在番茄中灰霉病管理

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摘要

Gray mold caused by Botrytis cinerea can be a severe disease of tomato infecting leaves and fruits of tomato plants. Chemical control is currently the most effective and reliable method; however, application of fungicides has many drawbacks. The combination of biological control agents with newly developed fungicides may be a practicable method to control B. cinerea. Fluopimomide is a newly developed fungicide with a novel mode of action. Bacillus methylotrophicus TA-1, isolated from rhizo-sphere soil of tomato, is a bacterial strain with a broad spectrum of antimicrobial activities. Little information is currently available about the effect of fluopimomide and its integrated effect on B. cinerea. Therefore, laboratory, pot, and field experiments were carried out to determine the effects of fluopimomide alone and in combination with B. methylotrophicus TA-1 against gray mold on tomato. The in vitro growth of B. methylotrophicus TA-1 was unaffected by 100 mg liter-1 fluopimomide. Inhibition of B. cinerea mycelial growth was significantly increasedunder combined treatment of fluopimomide and B. methylotrophicus TA-1. In greenhouse experiments, efficacy against gray mold was significantly greater by an integration of fluopimomide and B. methylotrophicus TA-1 than by either alone; control efficacy of fluopimomide at 50 and 100 g ha-1 in combination with B. methylotrophicus TA-1 at 108 colony-forming units (cfu) ml-1 reached 70.16 and 69.32%, respectively, compared with the untreated control. In both field trials during 2017 and 2018, control efficacy was significantly higher for the combination of fluopimomide at 50 and 100 g ha-1 in combination with B. methylotrophicus TA-1 than for either treatment alone. The results from this study indicated that integration of the new fungicide fluopimomide with the biocontrol agent B. methylotrophicus TA-1 synergistically increased control efficacy of the fungicide against gray mold of tomato.
机译:由Botrytis Cinerea引起的灰霉素可以是番茄感染叶片和番茄植物的果实的严重疾病。化学控制目前是最有效可靠的方法;然而,杀菌剂的应用具有许多缺点。生物对照剂与新开发的杀真菌剂的组合可以是控制B.Carea的可行方法。氟菊酯是一种新型开发的杀菌剂,具有新的作用方式。从番茄的Rhizo-Sphere土壤中分离的芽孢杆菌甲基雌激发TA-1是一种细菌菌株,具有广泛的抗微生物活性。目前缺乏氟化物的影响及其对Cinerea的综合影响。因此,进行了实验室,罐和现场实验,以确定氟菊酯单独的效果,并与B.甲基雌激素TA-1与番茄灰霉素组合。 B.甲基雌激素Ta-1的体外生长不受100mg升-1氟化咪唑的影响。抑制B. Cinerea菌丝体的生长显着增加,氟化物和B.甲基雌激素TA-1的组合治疗显着增加。在温室实验中,通过单独的氟尿嘧啶和B.甲基雌激素TA-1的整合,对灰霉模具的功效显着更大;与未处理的对照相比,在108个菌落 - 成分单元(CFU)ML-1中,在108个菌落 - 成分单元(CFU)ML-1中,对50和100g HA-1的控制效果分别达到70.16和69.32%。在2017年和2018年的田间试验中,对于50和100g HA-1的氟菊酯组合与B.甲基雌激素TA-1组合而不是单独的治疗,控制效能显着更高。本研究结果表明,新的杀菌剂氟咪唑与生物防治剂B.甲基雌激素TA-1对甘蓝灰霉素的控制效果增加了对番茄灰霉病的控制效果。

著录项

  • 来源
    《Plant Disease》 |2019年第8期|共7页
  • 作者单位

    Key Laboratory of Pesticide Toxicology &

    Application Technique College of Plant Protection Shandong Agricultural University Tai'an Shandong 271018 China;

    Key Laboratory of Pesticide Toxicology &

    Application Technique College of Plant Protection Shandong Agricultural University Tai'an Shandong 271018 China;

    Key Laboratory of Pesticide Toxicology &

    Application Technique College of Plant Protection Shandong Agricultural University Tai'an Shandong 271018 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物保护;
  • 关键词

    synergistic effect; tomato gray mold;

    机译:协同效应;番茄灰色模具;

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