首页> 外文期刊>Archives of Phytopathology and Plant Protection >Combination of the entomopathogenic nematode Heterorhabditis bacteriophora and the nematode-trapping fungi Dactylaria brochopaga and Arthrobotrys conoides for controlling Meloidogyne incognita in tomato fields
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Combination of the entomopathogenic nematode Heterorhabditis bacteriophora and the nematode-trapping fungi Dactylaria brochopaga and Arthrobotrys conoides for controlling Meloidogyne incognita in tomato fields

机译:昆虫病原线虫细菌异形杆菌和捕线虫真菌Dactylaria brochopaga和节肢动物类固醇的组合,用于控制番茄田中的根结线虫

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摘要

Effects of combining an entomopathogenic nematode (EPNs) and nematode-trapping fungi to control root-knot nematode were studied in the laboratory and in a tomato field. Bioassay effects of EPNs (Heterorhabditis bacteriophora) on growth of the two nematode-trapping fungi (Dactylaria brochopaga and Arthrobotrys conoides) attacking J2 of Meloidogyne incognita were studied in the laboratory. A field experiment was conducted in a tomato field. The mortality percentages were higher in combining EPNs and trapping fungi than either by trapping fungi or EPNs alone. Combining EPNs with A. comcaides fungi caused mortality higher than application by EPNs and trapping fungi D. brochopaga. The highest mortality percentage of combined EPNs and trapping fungi on larvae, root galls and egg-masses of M. incognita in tomato field were in the treatment of combined EPNs and D. brochopaga several times and the treatment of combined EPNs and A. comcaides several times, followed by the treatment of combined EPNs and D. brochopaga one time, and treatment of combined EPNs and A. comcaides one time. In the third stage came the treatment of D. brochopaga alone, and the treatment of A. comcaides alone, finally came effects of the treatment of EPNs alone. The highest tomato yield was recorded in treatments of combined EPNs and D. brochopaga or A. comcaides compared to the separate treatments and control. Thus, we recommend farmers to use combination of EPNs and trapping fungi for increasing the mortality of M. incognita in tomato fields.
机译:在实验室和番茄田中研究了结合昆虫病原线虫(EPN)和捕获线虫的真菌控制根结线虫的效果。在实验室中研究了EPNs(Heroorhabditis bacteriophora)对两种侵袭隐线虫J2的诱捕线虫的真菌(Dactylaria brochopaga和Arthrobotrys conoides)生长的生物测定作用。在番茄田里进行了田间试验。结合使用EPN和捕获真菌的死亡率要高于单独捕获真菌或EPN的死亡率。将EPNs与小肠曲霉合并使用会导致死亡率高于EPNs和诱集真菌D. brochopaga的死亡率。联合使用EPN和诱捕真菌对番茄田间隐线虫的幼虫,根gall和卵团的死亡率最高,分别是联合使用EPN和D. brochopaga的处理,多次处理是合并EPN和A. 1次,然后联合治疗EPN和支气管败血杆菌一遍,并联合治疗EPN和A.comcaides。在第三阶段中,单独治疗支气管败血杆菌,单独治疗A. comcaides,最后单独治疗EPN。与单独的处理和对照相比,在组合的EPNs和D. brochopaga或A. comcaides的处理中,番茄产量最高。因此,我们建议农民使用EPNs和诱集真菌的结合物来增加番茄田间隐孢子虫的死亡率。

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