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Indigenous Fungivorous Nematodes Affect the Biocontrol Efficacy of Trichoderma harzianum through Reducing the Hyphal
1Department of Microbiology, Pusan National University, Pusan 46241, Republic of Korea.
Abstract:
Indigenous fungus-feeding nematodes may adversely affect the growth and activity of introduced biocontrol fungi. Alginate pellets of the biocontrol fungus Trichoderma harzianum ThzID1-M3 and sclerotia of the fungal plant pathogen Sclerotinia sclerotiorum were added to nonsterile soil at a soil water potential of -50 or -1,000 kPa. The biomass of ThzID1-M3, nematode populations, and extent of colonization of sclerotia by ThzID1-M3 were monitored over time. The presence of ThzID1-M3 increased the nematode population under both moisture regimes (p < 0.05), and fungivores comprised 69-75% of the nematode population. By day 5, the biomass of ThzID1-M3b and its colonization of sclerotia increased and were strongly correlated (R2 = 0.98), followed by a rapid reduction, under both regimes. At -50 kPa (the wetter of the two environments), fungal biomass and colonization by ThzID1-M3 were less, in the period from 5 to 20 days, while fungivores were more abundant. These results indicate that ThzID1-M3 stimulated the population growth of fungivorous nematodes, which in turn, reduced the biocontrol ability of the fungus to mycoparasitize sclerotia. However, colonization incidence reached 100% by day 5 and remained so for the experimental period under both regimes, although hyphal fragments disappeared by day 20. Our results suggest that indigenous fungivores are an important constraint for the biocontrol activity of introduced fungi, and sclerotia can provide spatial refuge for biocontrol fungi from the feeding activity of fungivorous nematodes.
Insights
Indigenous nematodes, particularly fungivores, can limit the effectiveness of biocontrol fungi like Trichoderma harzianum. Sclerotia offer a refuge for fungi, but nematode activity impacts biocontrol efficacy.
Area of Science:
- Agricultural Science
- Ecology
- Mycology
Background:
- Biocontrol fungi are crucial for sustainable agriculture.
- Indigenous soil fauna can interact with and affect introduced biocontrol agents.
- Understanding these interactions is key to optimizing biocontrol strategies.
Purpose of the Study:
- To investigate the impact of indigenous fungus-feeding nematodes on the biocontrol fungus Trichoderma harzianum.
- To assess how soil moisture affects the interaction between Trichoderma harzianum and nematodes.
- To determine the role of Sclerotinia sclerotiorum sclerotia as a potential refuge for the biocontrol fungus.
Main Methods:
- Alginate pellets of Trichoderma harzianum and Sclerotinia sclerotiorum sclerotia were introduced into nonsterile soil.
- Soil moisture levels were maintained at -50 kPa and -1,000 kPa.
- Biomass of Trichoderma harzianum, nematode populations, and sclerotia colonization were monitored over time.
Main Results:
- Trichoderma harzianum presence increased nematode populations, with fungivores comprising 69-75%.
- Fungal biomass and sclerotia colonization peaked by day 5, followed by a rapid decline.
- Lower soil moisture (-50 kPa) correlated with reduced fungal biomass and colonization but higher fungivore abundance.
Conclusions:
- Indigenous fungivorous nematodes significantly limit the biocontrol efficacy of Trichoderma harzianum.
- Sclerotia can act as a spatial refuge, protecting the biocontrol fungus from nematode grazing.
- Soil moisture influences the dynamics between biocontrol fungi, nematodes, and pathogen survival.
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