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Biomedical subjects

R W Silman

Publications and source records attributed to R W Silman.

3 recordsLinked to original sources

Production of Colletotrichum truncatum for use as a mycoherbicide: effects of culture, drying and storage on recovery and efficacy.

Colletotrichum truncatum (Schwein.) Andrus and Moore NRRL 13737 (= NRRL 18434) is a fungal plant pathogen which shows promise as a bioherbicide against the troublesome weed Sesbania exaltata (Raf.) Rydb. ex A. W. Hill. Previous studies showed similar amounts of spores were produced/ml of medium in liquid and solid-state fermentations. In this study, Colletotrichum truncatum spores were produced in liquid (LC), solid/vermiculite (SV), and solid/perlite-cornmeal-agar (SP). After drying at room temperature with flowing air, SV and SP retained the most viability. Each product was then stored at 4 degrees, 15 degrees, and 25 degrees C. All three products stored at 4 degrees C and SP stored at 15 degrees C retained highest viability. Efficacy based upon assays utilizing equal numbers of viable spores showed SV and SP spores incited more severe disease symptoms than LC spores.

Journal Article↗

Cellular automata simulations of fungal growth on solid substrates.

Growth of filamentous fungi on the surface of cereal grains is a critical aspect of solid substrate fermentation (SSF). Numerous mathematical models have been developed to describe various aspects of fungal growth in SSF. These models consider hyphal geometry and nutrient availability as determinants of colony morphology and fungal physiological state. This work describes the use of cellular automata (CA) as an alternative method of modeling fungal growth. CA models reliant on a very limited set of rules or "knowledge base" display a rich array of behaviors that mimic fungal growth. By incorporating probablistic growth rules into CA models, colony characteristics such as biomass accumulation rate, colony radial growth rate, mycelial density and fungal differentiation are readily generated.

Journal Article↗

Enzyme formation during solid-substrate fermentation in rotating vessels.

Aspergillus awamori NRRL 4869 was cultured on the solid substrate, wheat bran, in a modified Rollacell apparatus to produce alpha-galactosidase and invertase. The swivel cap on the elongated bottle permits the introduction of air while the bottle rotates. Parameters of air flow rate (0.05-0.2 liter/kg/min), rpm (0.15-15 rpm), and weight of solids (150 and 300 g) were varied. At low air flow rates (0.05 liter/kg solids/min), alpha-galactosidase production was minimal independent of the rotation rate. At 0.15 rpm and 0.2 liter/kg solids/min air flow rate, invertase production ceased after five days; whereas alpha-galactosidase production continued. The modified Rollacell can be a useful apparatus for studying solid-substrate cultures.

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