Base rot, caused by Ceratocystis paradoxa, can be a severe disease of pineapple planting material and can result in poor establishment of plants. Pre-plant dipping of pineapple crowns in potassium phosphonate is used to control Phytophthora cinnamomi root and heart rot and was tested for efficacy against base rot in this study. Dipping crowns in 0.5% potassium phosphonate for 2 min significantly reduced the severity of base rot on inoculated crowns in two trials with ‘MD2’ and ‘73–50’. Fresh crowns had a more marked response to potassium phosphonate than well-cured, dried crowns. In studies with amended media, the growth of C. paradoxa was not inhibited by phosphonate concentrations of up to 100 ppm. Growth was reduced at higher concentrati...
The application of varying concentrations of phosphonate, its phytotoxicity and its ability to conta...
The favourable summer and autumn climatic conditions of the Capricorn coast region in central Queen...
The fungicide phosphite has potential to control the soilborne plant pathogen P. cinnamomi in native...
The effectiveness of pre-plant dips of crowns in potassium phosphonate and phosphorous acid was inve...
The effectiveness of pre-plant dips of crowns in potassium phosphonate and phosphorous acid was inve...
In greenhouse experiments, seedlings of Persea indica, an avocado relative, planted into soil natura...
Phosphonate fungicides are used widely in the control of diseases caused by Phytophthora cinnamomi R...
Chestnut ink disease represents a great risk for chestnut (Castanea sativa Mill.) in all regions of ...
Options for the control of root rot of papaya caused by Phytophthora palmivora were evaluated in two...
There are numerous phosphorous acid products on the market that are sold as fertilizers but can have...
One of the primary hindrances to Castanea dentata restoration in the Southeast is the root rot disea...
Potassium phosphonate is a cost-effective chemical for reducing the impact of Phytophthora cinnamomi...
The fungus Gnomoniopsis castaneae is the causal agent of the “brown rot” of sweet chestnut fruits. T...
Phytophthora parasitica var. nicotianae is a major fungal pathogen that causes foot rot, root rot, c...
Systemic treatment of stems with injections of phosphite liquid and novel soluble capsule implants o...
The application of varying concentrations of phosphonate, its phytotoxicity and its ability to conta...
The favourable summer and autumn climatic conditions of the Capricorn coast region in central Queen...
The fungicide phosphite has potential to control the soilborne plant pathogen P. cinnamomi in native...
The effectiveness of pre-plant dips of crowns in potassium phosphonate and phosphorous acid was inve...
The effectiveness of pre-plant dips of crowns in potassium phosphonate and phosphorous acid was inve...
In greenhouse experiments, seedlings of Persea indica, an avocado relative, planted into soil natura...
Phosphonate fungicides are used widely in the control of diseases caused by Phytophthora cinnamomi R...
Chestnut ink disease represents a great risk for chestnut (Castanea sativa Mill.) in all regions of ...
Options for the control of root rot of papaya caused by Phytophthora palmivora were evaluated in two...
There are numerous phosphorous acid products on the market that are sold as fertilizers but can have...
One of the primary hindrances to Castanea dentata restoration in the Southeast is the root rot disea...
Potassium phosphonate is a cost-effective chemical for reducing the impact of Phytophthora cinnamomi...
The fungus Gnomoniopsis castaneae is the causal agent of the “brown rot” of sweet chestnut fruits. T...
Phytophthora parasitica var. nicotianae is a major fungal pathogen that causes foot rot, root rot, c...
Systemic treatment of stems with injections of phosphite liquid and novel soluble capsule implants o...
The application of varying concentrations of phosphonate, its phytotoxicity and its ability to conta...
The favourable summer and autumn climatic conditions of the Capricorn coast region in central Queen...
The fungicide phosphite has potential to control the soilborne plant pathogen P. cinnamomi in native...