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F M Ross

Publications and source records attributed to F M Ross.

56 records · Page 4Linked to original sources

Genetics of aggregation pattern mutations in the cellular slime mould Dictyostelium discoideum.

A class of aggregation pattern mutants called 'streamers' have been isolated from Dictyostelium discoideum and analysed genetically. The streamer phenotype is the formation of very large streams of centripetally moving amoebae which are collected from abnormally large territories during the aggregation phase of this organism. Such mutants do not show the pleiotropic developmental defects seen with most other classes of aggregation mutants and after the abnormal aggregation phase they develop into normally differentiated stalk cells and spores. Twenty-four haploid streamers were isolated and assigned to seven complementation groups, stmA to stmG, after selecting diploids formed between pairs of the mutants. The complementation loci were assigned to the following linkage groups using parasexual genetic techniques: stmA and stmF, linkage group VII; stmB, stmD and stmG, linkage group II; stmC and stmE, linkage group III. Use was made of a new temperature sensitive for growth marker, tsgK21, which was assigned to linkage group VII. The total number of complementation groups giving the streamer phenotype is estimated from statistical calculation, based on the frequency of allelism, to be between seven and nine.

Dictyostelium↗

Identifying sites of simultaneous DNA replication in eukaryotes by N-methyl-N'-nitro-N-nitrosoguanidine multiple mutagenesis.

N-methyl-N'-nitro-N-nitrosoguanidine (NG) induces certain classes of multiple mutations in yeast at high frequency. By selecting for mutation at one locus (his4 or leu1) one frequently obtains double mutants where another mutation to temperature sensitivity has also been induced. This multiple mutagenesis exhibits a considerable specificity: for mutation at one particular locus there is a high chance that another mutation will be found in the same cell at one of a restricted number of other loci. For any given locus (e.g. his4) there is a spectrum of sites at which temperature-sensitivity mutations are co-induced. This spectrum differs for different loci, such that the spectrum of sites co-mutating with leu1 differs completely from that for sites co-mutating with his4. This NG'induced co-mutation is interpreted in terms of NG acting to enhance mutagenesis at sites of simultaneous DNA replication within the cell. The results so obtained indicate a very strict control over the order and timing of gene replication in Saccharomyces cerevisiae, and it is suggested that it is now possible to use NG double mutagenesis to try and locate origins of replication in yeast.

DNA Replication↗