Macroconidia of Sporidesmium sclerotivorum, a mycoparasite of Sclerotinia spp., germinated after 3 days in soil adjacent to sclerotia of S. minor and on membrane filters placed on soil containing sclerotia. Germination increased with time up to 18 days and with concentration of sclerotia. Conidia as distant as 9 mm from single sclerotia germinated. Germination of conidia was maximum on a sclerotial agar medium in the range of pH 5 to pH 7. Cultivation of S. sclerotivorum parasitically on living sclerotia proceeded optimally in moist, fine quartz sand amended with 1 to 2% (w/w) sclerotia and 0.07% (w/w) CaCO3, at 25 degrees C. Infection of sclerotia in sand reached 100% by 5 weeks. Conidia production paralled infection resulting in logarithmic increase in numbers; a maximum of 3 x 10(5) to 4 x 10(5) conidia/g was reached in 6 to 12 weeks. Viability of air-dried sand-sclerotial cultures of S. sclerotivorum was reduced after 1 and 6 days, but viability was undiminished in air-dried soil. Sporidesmium sclerotivorum survived in moist and air-dried soils stored at room temperature for 15 months.
Wheat and pea seedlings were grown aseptically in solution-culture and the total free amino nitrogen released by the roots was determined by a quantitative ninhydrin test. Amino nitrogen from wheat plants after 14 days growth was not detected by the test, indicating the release of less than 3 µg of amino nitrogen from a culture of 15 plants. Pea plants of the same age released from 2 to 7 µg per plant. Paper chromatograms of highly concentrated undisturbed solution-cultures revealed up to 13 amino compounds from wheat and 11 from pea. The pattern of amino acids in exudates was similar to that in crushed roots, except for an unidentified amino compound which was detected only in exuded material. The total amino nitrogen and relative proportions of several amino acids in the root exudates of sand-grown peas was influenced by several ratios of oxygen and carbon dioxide supplied to the root zone. Roots, experimentally damaged by swirling and rinsing in sand, released in 1 hour amino nitrogen of from 73 to 120 per cent of that released by ‘normal’ exudation over a 2-week period. Our findings suggest that experimental and environmental root damage may be responsible for a large proportion of organic materials released by growing plant roots.