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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Nematophagous fungi: Catenaria anguillulae and Dactylaria brochopaga from seed galls as potential biocontrol agents of Anguina tritici and Meloidogyne graminicola in wheat (Triticum aestivum L.)
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Nematophagous fungi: Catenaria anguillulae and Dactylaria brochopaga from seed galls as potential biocontrol agents of Anguina tritici and Meloidogyne graminicola in wheat (Triticum aestivum L.)

机译:线虫真菌:种子gall中的悬链念珠菌和毛囊线虫,可能是小麦中小麦和小麦的潜在生物防治剂。小麦(Triticum aestivum L.)

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摘要

During the course of our investigation on the selective isolation and in vitro pathogenicity tests of the nematode egg parasite and endoparasitic Catenaria anguillulae and the nematode-trapping fungus Dactylaria brochopaga against Anguina tritici, and Meloidogyne graminicola, the two biocontrol agents were also examined for their capabilities to colonize wheat seed gall and also to reduce the M. graminicola, and A. tritici in wheat (Triticum aestivum L.). Using seed galls as bait was found effective for isolating the soilborne natural colonizers of seed galls of wheat caused by A. tritici. Seed galls were found severely infested with cellulose decomposers as well as nematode trapping fungi i.e., Fusarium spp., Verticillium spp., Aspergillus spp., Penicillium spp. Arthrobotrys oligospora, Arthrobotrys superba, Arthrobotrys dactyloides, Arthrobotrys musiformis, D. brochopaga, Monacrosporium eudermatum, Stylopaga hadra, Paecilomyces spp., and C. anguillulae. Co-inoculation of D. brochopaga DBS-105, and C. anguillulae CAS101 significantly reduced the root knot and seed gall in wheat and increased the plant growth parameters including length, and dry weight of root and shoot as well as yield attributing characters like spike length; number of seed per spike, test weight etc. under greenhouse conditions as compared to pathogen challenged plants without any bioagents/chemical nematicide. These bioagents have the potential to enhance production of quality seeds of wheat being free from hazardous pesticides and thus, can further be developed into marketable formulations in order to promote eco-friendly and sustainable means of crop production.
机译:在我们针对线虫卵寄生虫和内生寄生虫Catenaria anguillulae和诱捕线虫真菌Dactylaria brochopaga对抗黑线虫和Meloidogyne graminicola的选择性分离和体外致病性测试的过程中,还检查了这两种生物防治剂的功能。在小麦种子胆中定植,并减少小麦中的M. graminicola和A. tritici(Triticum aestivum L.)。发现使用种gall作为诱饵可有效分离由小麦曲霉引起的小麦种gall的土传天然定居者。发现虫被纤维素分解剂和线虫捕获真菌(即镰刀菌属,黄萎菌属,曲霉属,青霉属)严重侵染。寡头节肢动物,超级节肢动物,拟杆菌节肢动物,多形节肢动物,D。brochopaga,真叶单孢菌,Stylopaga hadra,Paecilomyces spp。和C. anguillulae。 D. brochopaga DBS-105和C. anguillulae CAS101的共同接种显着减少了小麦的根结和种子gall,并增加了植物生长参数,包括长度,根和茎的干重以及穗等产量归因特性长度;与没有任何生物制剂/杀线虫剂的病原体激发的植物相比,温室条件下每穗的种子数量,容重等。这些生物制剂具有提高不含有害农药的优质小麦种子产量的潜力,因此,可以进一步开发成可销售的配方,以促进生态友好和可持续的农作物生产方式。

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