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Chemical and biological control of Sclerotinia stem rot in the soybean crop

机译:大豆菌核菌核腐烂的化学和生物防治。

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It was evaluated the effect of fungicides and the microbial control agent Trichoderma harzianum on the inhibition of the carpogenic and ascospore germination of Sclerotinia sclerotiorum. This study also evaluated the chemical, fungicidal and microbial control of white mold or Sclerotinia stem rot of soybean in the field. Three experiments were conducted, as follows: 1) inhibition of carpogenic germination of sclerotia, 2) inhibition of ascospore germination, and 3) control of Sclerotinia stem rot in a soybean crop under field conditions. The treatments evaluated were fluazinam, procymidone, iprodione, thiophanate-methyl, carbendazim, benzalkonium chloride + fluazinam, and T. harzianum. Procymidone resulted in an inhibition of 13.5% and benzalkonium chloride in an inhibition of 13.9% in an ascospore germination test. Fluazinam and procymidone were the most effective in reducing the production of ascospores/apothecium, representing 65.6% and 82.4% of inhibition. Procymidone and fluazinam if combined or not with benzalkonium chloride were the most effective in controlling sclerotinia stem rot under field conditions when applied at the onset of flowering and 15 days later. In the 2009-10 harvest, these two fungicides reduced the incidence of Sclerotinia stem rot by 73.1 and 71.6% and in the 2010-11 harvest by 75.7 and 77.6%, respectively.
机译:评估了杀菌剂和微生物控制剂哈茨木霉(Trichoderma harzianum)对菌核菌核盘菌核生和孢子萌发的抑制作用。该研究还评估了田间大豆白霉病或菌核干腐病的化学,杀真菌和微生物控制。进行了三个实验,如下:1)在田间条件下,抑制菌核的致根萌发,2)抑制子囊孢子的萌发,和3)控制菌核立枯菌干腐病。所评估的治疗方法为氟齐南,丙啶,异丙隆,甲基托布津,多菌灵,苯扎氯铵+氟齐南和哈茨木霉。在子囊萌发试验中,丙咪唑酮对苯扎氯铵的抑制率为13.5%,对苯扎氯铵的抑制率为13.9%。氟嗪南和嘧啶酮在减少子囊孢子/杀伤性芽孢杆菌的产生方面最有效,分别占抑制作用的65.6%和82.4%。当在开花开始时和15天后施用时,在田间条件下,丙咪唑酮和氟西那姆与或不与苯扎氯铵联合使用对防治菌核病最有效。在2009-10年度的收成中,这两种杀菌剂分别使菌核菌茎腐烂的发生率降低了73.1和71.6%,在2010-11年度的收成中分别降低了75.7和77.6%。

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