Effects of Etomopathiogenic Nematodes on Meloidogyne javanica on Tomatoes and Soybeans

Journal of Nematology
|March 7, 2009
PubMed

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.