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Updated: Jun 25, 2026

High and Low Throughput Screens with Root-knot Nematodes Meloidogyne spp.
Published on: March 12, 2012
Effects of Etomopathiogenic Nematodes on Meloidogyne javanica on Tomatoes and Soybeans
Abstract:
Two Hawaiian isolates of Steinernema feltiae MG-14 and Heterohabditis indica MG-13, a French isolate of S. feltiae SN, and a Texan isolate of S. riobrave TX were tested for their efficacy against the root-knot nematode, Meloidogyne javanica, in the laboratory and greenhouse. Experiments were conducted to investigate the effects of treatment application time and dose on M. javanica penetration in soybean, and egg production and plant development in tomato. Two experiments conducted to assess the effects of entomopathogenic nematode application time on M. javanica penetration demonstrated that a single application of 10 S. feltiae MG-14 or SN infective juveniles per 100 cm(3) of sterile soil, together with 500 (MG-14) or 1,500 (SN) second-stage juveniles of M. javanica, reduced root penetration 3 days after M. javanica inoculation compared to that of a water treatment. Entomopathogenic nematode infective juveniles applied to assess the effects on M. javanica egg production did not demonstrate a significant reduction compared to that of the water control treatment. There was no dose response effect by Steinernema spp. On M. javanica root penetration or egg production. Steinernema spp. did not affect the growth or development of M. javanica-infected plants, but H. indica MG-13-treated plants had lower biomass than untreated plants infected with M. javanica. Infective juveniles of S. riobrave TX, S. feltiae SN, and MG-14 but not those of H. indica MG-13 were found inside root cortical tissues of M. javanica-infected plants. Entomopathogenic nematode antagonism to M. javanica on soybean or tomato was insufficient in the present study to provide a consistent level of nematode suppression at the concentrations of infective juveniles applied.
Insights
Entomopathogenic nematodes (EPNs) showed limited efficacy against the root-knot nematode Meloidogyne javanica. While some EPNs reduced nematode penetration in soybean, they did not significantly impact egg production or plant growth in tomato.
Area of Science:
- Agricultural Nematology
- Biological Control
- Entomopathogenic Nematology
Background:
- Root-knot nematodes (Meloidogyne spp.) are significant agricultural pests causing substantial crop losses.
- Entomopathogenic nematodes (EPNs) are natural enemies of insects and other soil-dwelling organisms, with potential for biological control.
Purpose of the Study:
- To evaluate the efficacy of different isolates of Steinernema feltiae, Steinernema riobrave, and Heterorhabditis indica against Meloidogyne javanica.
- To investigate the impact of EPN application timing and dose on M. javanica penetration, egg production, and plant development in soybean and tomato.
Main Methods:
- Laboratory and greenhouse experiments were conducted using four EPN isolates against M. javanica.
- Soybean and tomato plants were inoculated with M. javanica, and treated with varying concentrations and application times of EPNs.
- Nematode penetration, egg production, and plant biomass were assessed.
Main Results:
- A single application of Steinernema feltiae isolates reduced M. javanica root penetration in soybean.
- EPN treatments did not significantly reduce M. javanica egg production in tomato.
- No dose-response effect was observed for Steinernema spp. on M. javanica penetration or egg production.
- Heterorhabditis indica MG-13 treatment resulted in lower plant biomass compared to untreated infected plants.
Conclusions:
- The tested EPN isolates demonstrated insufficient antagonism against M. javanica for consistent nematode suppression at the applied concentrations.
- Further research may be needed to optimize EPN application strategies or explore synergistic approaches for effective biological control of root-knot nematodes.
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