首页> 外文期刊>Agrivita: journal of agricultural science >Applications of Potassium Fertilizer and Bacillus Sp. Biopesticide for Increasing Tomato Resistance to Bacterial Wilt Disease
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Applications of Potassium Fertilizer and Bacillus Sp. Biopesticide for Increasing Tomato Resistance to Bacterial Wilt Disease

机译:钾肥和芽孢杆菌的应用生物农药可提高番茄对细菌性枯萎病的抵抗力

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Bacterial wilt on tomato caused by Ralstonia solanacearum is a crucial disease, because it can reduce yield until 50%. The aims of this research were: 1) to find out biopesticide formula for Bacillus sp.growth, 2) to test Bacillus sp. against R. solanacearum in vitro, 3) to test potassium fertilizer combined with Bacillus sp. for enhancing tomato resistance to the bacterial wilt disease. The research was conducted in 2 steps i.e to test the persistence of Bacillus sp. In biopesticide formula, and to test the best combination of both potassium and the Bacillus sp. biopesticide. The results showed that Bacillus B298 was the best isolate in its persistence on the biopesticide formula of organic growth medium+CaCO3+CMC 1%+mannitol 1%, and in inhibiting R. solanacearum. The best biopesticide formula for the Bacillus sp. persistence was growth organic media+ CaCO3+CMC 1%+mannitol 1%. Bacillus sp. was able to increase tomato resistance to the bacterial wilt disease from the category of susceptible to be tolerant and becoming resistant.Keywords: tomato, Ralstonia solanacearum, potassium and Bacillus sp.
机译:番茄青枯雷尔氏菌引起的番茄枯萎病是至关重要的疾病,因为它可以降低产量直至50%。这项研究的目的是:1)找出芽孢杆菌生长的生物农药配方,2)测试芽孢杆菌。体外抗青枯菌(R. solanacearum),3)测试钾肥与芽孢杆菌的结合。用于增强番茄对细菌性枯萎病的抵抗力。该研究分两个步骤进行,即测试芽孢杆菌的持久性。在生物农药配方中,并测试钾和芽孢杆菌sp的最佳组合。生物农药。结果表明,芽孢杆菌B298在其对有机生长培养基+ CaCO3 + CMC 1%+甘露醇1%的生物农药配方的持久性以及对番茄青枯病菌的抑制作用方面是最好的分离株。芽孢杆菌的最佳生物农药配方。持久性是生长有机介质+ CaCO3 + CMC 1%+甘露醇1%。芽孢杆菌能够增加番茄对细菌性枯萎病的抗性,从易感性变为抗性。关键词:番茄,青枯雷尔氏菌,钾和芽孢杆菌

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