Potassium phosphite (KP) concentrations that inhibited the germination of 50% of Penicillium digitatum conidia were 229, 334, 360, 469, 498, or 580 mg/liter at pH 3, 4, 5, 6, 7, or 8, respectively. Increasing phosphate content in media reduced phosphite toxicity. To control green or blue mold, fruit were inoculated with P. digitatum or P. italicum, then immersed 24 h later in KP, calcium phosphite (CaP), sodium carbonate, sodium bicarbonate, or potassium sorbate for 1 min at 20 g/liter for each at 25 or 50°C. Mold incidence was lowest after potassium sorbate, CaP, or KP treatments at 50°C. CaP was often more effective than KP but left a white residue on fruit. KP was significantly more effective when fruit were stored at 10 or 15°C after tr...
Preventive and curative antifungal activities of postharvest treatments with potassium silicate (PSi...
The curative antifungal activity of postharvest sodium methylparaben (SMP) treatments against citrus...
Control of citrus blue mold, caused by Penicillium italicum, was evaluated on artificially inoculate...
The effectiveness of pre- and postharvest application of potassium phosphite against naturally occur...
Citrus Brown Rot (BR), caused by Phytophthora spp., provokes important economical losses mainly in p...
Several commercially important citrus species and cultivars were artificially inoculated with Penici...
Significant losses can occur after the harvest during the storage and marketing of citrus fruit in C...
The phosphites (Phi) are inducers of plant defense responses, although also other effects were repor...
The effectiveness of potassium sorbate, sodium bicarbonate and potassium phosphite combined with hea...
The effectiveness of sodium bicarbonate (SB), sodium carbonate (SC), sodium silicate (SS), potassium...
Citrus is one of the most economically important horticultural crops in the world. Citrus are vulner...
The efficacy of the novel potassium bicarbonate formulation Karma (Certis Europe) for controlling P...
The objective of this research was to evaluate the effect of treating oranges with potassium chlorid...
The role of some salts applied in combination with wax on the development of postharvest rots was ex...
4th International Conference on Postharvest Science -- MAR 26-31, 2000 -- JERUSALEM, ISRAELWOS: 0001...
Preventive and curative antifungal activities of postharvest treatments with potassium silicate (PSi...
The curative antifungal activity of postharvest sodium methylparaben (SMP) treatments against citrus...
Control of citrus blue mold, caused by Penicillium italicum, was evaluated on artificially inoculate...
The effectiveness of pre- and postharvest application of potassium phosphite against naturally occur...
Citrus Brown Rot (BR), caused by Phytophthora spp., provokes important economical losses mainly in p...
Several commercially important citrus species and cultivars were artificially inoculated with Penici...
Significant losses can occur after the harvest during the storage and marketing of citrus fruit in C...
The phosphites (Phi) are inducers of plant defense responses, although also other effects were repor...
The effectiveness of potassium sorbate, sodium bicarbonate and potassium phosphite combined with hea...
The effectiveness of sodium bicarbonate (SB), sodium carbonate (SC), sodium silicate (SS), potassium...
Citrus is one of the most economically important horticultural crops in the world. Citrus are vulner...
The efficacy of the novel potassium bicarbonate formulation Karma (Certis Europe) for controlling P...
The objective of this research was to evaluate the effect of treating oranges with potassium chlorid...
The role of some salts applied in combination with wax on the development of postharvest rots was ex...
4th International Conference on Postharvest Science -- MAR 26-31, 2000 -- JERUSALEM, ISRAELWOS: 0001...
Preventive and curative antifungal activities of postharvest treatments with potassium silicate (PSi...
The curative antifungal activity of postharvest sodium methylparaben (SMP) treatments against citrus...
Control of citrus blue mold, caused by Penicillium italicum, was evaluated on artificially inoculate...