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A novel approach to determine generalist nematophagous microbes reveals Mortierella globalpina as a new biocontrol agent against Meloidogyne spp. nematodes

机译:一种确定通体食道微生物的新颖方法揭示了全球高山被孢霉是一种针对Meloidogyne spp的新型生物防治剂。线虫

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Root-knot nematodes (RKN) such as Meloidogyne spp. are among the most detrimental pests in agriculture affecting several crops. New methodologies to manage RKN are needed such as efficient discovery of nematophagous microbes. In this study, we developed an in vitro high-throughput method relying on the free-living nematode Caenorhabditis elegans and the infection of those nematodes with a soil slurry containing a microbiome likely to house nematophagous microbes. Nematodes were monitored for presence of infection and sub-cultured repeatedly for the purpose of isolating pure cultures of the microbe responsible for conferring the nematicidal activity. Once soil microbes were confirmed to be antagonistic to C. elegans, they were tested for pathogenicity against Meloidogyne chitwoodi. Using this methodology, the fungal isolate Mortierella globalpina was confirmed to be pathogenic in vitro against M. chitwoodi by nematode trapping via hyphal adhesion to the cuticle layer, penetration of the cuticle layer, and subsequently digestion of its cellular contents. M. globalpina was also observed to reduce disease symptomology of RKNs in vivo via significant reduction of root-galls on tomato (Solanum lycopersicum var. Rutgers).
机译:根结线虫(RKN),如Meloidogyne spp。是影响几种作物的农业中最有害的害虫之一。需要新的方法来管理RKN,例如有效发现线虫微生物。在这项研究中,我们开发了一种依靠高效率线虫秀丽隐杆线虫和那些线虫被含有可能容纳线虫微生物的微生物组的土壤浆液感染的体外高通量方法。监测线虫是否存在感染,并反复传代培养,以分离负责赋予杀线虫活性的纯微生物培养物。一旦土壤微生物被证实能对秀丽隐杆线虫产生拮抗作用,就可以测试它们对根结线虫的致病性。使用这种方法,通过线虫捕获,通过菌丝附着在角质层上,穿透角质层并随后消化其细胞内含物,证实了真菌分离株全球小球藻对线虫支原体是致病的。还观察到全球分枝杆菌通过显着减少番茄(Solanum lycopersicum var.Rutgers)上的根基减少体内RKNs的疾病症状。

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