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S G Pathak

Publications and source records attributed to S G Pathak.

5 recordsLinked to original sources

Biochemical properties of haploid and diploid strains of Penicillium chrysogenum.

An intensive parasexual genetics program in which industrial strains of Penicillium chrysogenum were used culminated in the isolation of a number of heterozygous diploid strains. The diploid clones were selected from heterokaryons formed from matings between mutant strains having complementary biochemical and conidial color markers. Several diploid cultures were compared with their haploid wild-type parents and other distantly related production strains on the basis of a variety of cultural and physiological criteria. The diploid strains characteristically produced conidia of larger volume and higher deoxyribonucleic acid content. Some were vigorous with respect to growth rate and onset and degree of conidiation. One diploid strain (WC-9) had a 46% greater oxygen uptake rate and oxidized glucose at a 57% greater rate than its haploid parent (M-2). It also produced 33% higher concentrations of beta-galactosidase, 66% more alkaline protease, and 53% more glucose oxidase than the M-2 haploid parent. The selection of rare stable diploid mold cultures through the use of parasexual genetics offers a unique approach to the direct selection of mutants with potential for increased enzyme formation.

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Growth of Fungi in Sea Water Medium.

The effect of sea water on protein synthesis and growth of some species of Fungi Imperfecti was investigated. The dry weight of mycelia was greater from sea water medium than from distilled water medium in most instances; however, in a few there was a marked reduction in growth. The beneficial effect could not be ascribed to sodium choride or phosphate ion but may be due to the magnesium ion in sea water. This is indicated by the increase in mycelial yield and protein synthesis, even above that obtained with sea water, when magnesium ion was added to the medium. The reduction in yield and protein synthesis in some instances may be attributed to metal interactions; this possibility is being investigated further.

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