Effect of white mustard cover crop residue, soil chemical fumigation and Trichoderma spp. root treatment on black‐foot disease control in grapevine
BACKGROUND Black‐foot disease is one of the main soilborne fungal diseases affecting grapevine production worldwide. Two field experiments were established to evaluate the effect of white mustard cover crop residue amendment and chemical fumigation with propamocarb + fosetyl‐Al combined with Trichod...
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Veröffentlicht in: | Pest management science 2018-12, Vol.74 (12), p.2864-2873 |
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Sprache: | eng |
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Zusammenfassung: | BACKGROUND
Black‐foot disease is one of the main soilborne fungal diseases affecting grapevine production worldwide. Two field experiments were established to evaluate the effect of white mustard cover crop residue amendment and chemical fumigation with propamocarb + fosetyl‐Al combined with Trichoderma spp. root treatment on the viability of black‐foot inoculum in soil and fungal infection in grafted plants and grapevine seedlings used as bait plants.
RESULTS
A total of 876 black‐foot pathogen isolates were collected from grafted plants and grapevine seedlings used as bait plants in both fields. White mustard biofumigation reduced inoculum of Dactylonectria torresensis and the incidence and severity of black‐foot of grapevine, but no added benefit was obtained when biofumigation was used with Trichoderma spp. root treatments. The effect of white mustard residues and chemical fumigation on populations of D. torresensis propagules in soil was inconsistent, possibly because of varying pretreatment inoculum levels.
CONCLUSION
Biofumigation with white mustard plants has potential for improving control of black‐foot disease in grapevines. This control strategy can reduce soil inoculum levels and protect young plants from infection, providing grape growers and nursery propagators with more tools for developing integrated and sustainable control systems. © 2018 Society of Chemical Industry
Biofumigation with white mustard plants has potential for improving control of black‐foot disease in grapevines as it can reduce soil inoculum levels and protect young plants from infection. |
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ISSN: | 1526-498X 1526-4998 |
DOI: | 10.1002/ps.5078 |