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首页> 外文期刊>Crop Protection >Integrated management strategies of Meloidogyne incognita and Pseudopyrenochaeta lycopersici on tomato using a Bacillus firmus-based product and two synthetic nematicides in two consecutive crop cycles in greenhouse
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Integrated management strategies of Meloidogyne incognita and Pseudopyrenochaeta lycopersici on tomato using a Bacillus firmus-based product and two synthetic nematicides in two consecutive crop cycles in greenhouse

机译:Meloidogyne Incognita和Pseudopyrenochaeta Lycopersici在番茄中使用芽孢杆菌的产品和两个连续作物循环中的两种合成界阵在温室中的综合管理策略

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摘要

Because of the restrictions on chemical pesticide use and their negative effects on the environment, as well as on human and animal health, alternative strategies for plant pest and pathogen managements are highly desirable. The objective of this work was to evaluate the suitability of a commercial formulation of Bacillus firmus strain 1-1582, applied either alone or in combination with oxamyl or fosthiazate, to control the southern root-knot nematode Meloidogyne incognita and the fungal plant pathogen Pseudopyrenochaeta lycopersici under greenhouse conditions during two tomato crop cycles. Application of B. firmus suppressed nematode population levels during the second crop cycle and when the treatments were repeated on soil previously amended with organic matter. In contrast, fungal infection was reduced during both crop cycles regardless of the application of organic matter. The combinations of the bioformulation and chemicals induced the lowest Root Galling Index compared to all other treatments in both crop cycles. The suppression of nematode populations levels and infection rate of the fungus induced by B. firmus alone or in combination with the chemicals was more pronounced during the second tomato crop cycle than the first crop cycle, also because the temperatures during the second crop cycle were unfavorable to the nematode development. The greatest increase in tomato yield induced by the combined treatments was observed during the second crop cycle, and it was up 50% compared to the untreated control. The applications of the bionematocide and two chemicals used in this study did not result in dramatic suppression of nematode and fungal populations. However, the application of these products alone or in combination, supplemented by organic amendment increases the yield of tomato plants compared to that of the untreated control, although the plants were infected by the pest and the pathogen. These results indicate that early spring/early fall application of B. firmus is an effective biopesticide treatment for management of the southern root-knot nematode and P. lycopersici on tomato crops growing in the integrated pest management system of this experiment and in the environmental conditions of southern Italy.
机译:由于对化学农药使用的限制及其对环境的负面影响,以及人类和动物健康,植物害虫和病原体管理的替代策略是非常理想的。这项工作的目的是评估芽孢杆菌菌株1-1582的商业制剂的适用性,单独或与羟肟或索磺酸盐组合应用,以控制南部根结Nematode Meloidogyne incognita和真菌植物病原体pseudopyrenochaeta lycopersici在两个番茄作物周期期间的温室条件下。 B.在第二作物循环期间,B. Firmus的应用抑制了线虫种群水平,并且当在先前用有机物质修正的土壤中重复处理时。相比之下,无论有机物质的应用如何,在作物循环期间都会降低真菌感染。与所有其他作物循环中的所有其他治疗相比,生物侵蚀和化学物质的组合诱导了最低的根粘合指数。在第二番茄作物周期中,单独或与化学品组合的抑制线虫群体的抑制因素诱导的真菌或与化学品组合的感染率比第一个作物循环更加明显,而且还因为第二作物循环期间的温度是不利的到了线虫发展。在第二作物循环期间观察到由组合治疗诱导的番茄产量的最大增加,与未处理的对照相比,其增长了50%。本研究中使用的二硫化物和两种化学物质的应用并未导致对线虫和真菌人群的显着抑制。然而,通过有机修正的单独或组合使用这些产品的应用增加了与未处理的对照相比番茄植物的产率,尽管植物被害虫和病原体感染。这些结果表明,B. Firmus的早春/早期秋季应用是一种有效的生物农药治疗,用于管理南部根结线虫和P.Lycopersici在本实验的综合虫害管理系统中生长的番茄作物,以及环境条件意大利南部。

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