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J M Josse

Publications and source records attributed to J M Josse.

2 recordsLinked to original sources

Quantitative trait loci underlying gene product variation: a novel perspective for analyzing regulation of genome expression.

A methodology to dissect the genetic architecture of quantitative variation of numerous gene products simultaneously is proposed. For each individual of a segregating progeny, proteins extracted from a given organ are separated using two-dimensional electrophoresis, and their amounts are estimated with a computer-assisted system for spot quantification. Provided a complete genetic map is available, statistical procedures allow determination of the number, effects and chromosomal locations of factors controlling the amounts of individual proteins. This approach was applied to anonymous proteins of etiolated coleoptiles of maize, in an F2 progeny between two distant lines. The genetic map included both restriction fragment length polymorphism and protein markers. Minimum estimates of one to five unlinked regulatory factors were found for 42 of the 72 proteins analyzed, with a large diversity of effects. Dominance and epistasis interactions were involved in the control of 38% and 14% of the 72 proteins, respectively. Such a methodology might help understanding the architecture of regulatory networks and the possible adaptive or phenotypic significance of the polymorphism of the genes involved.

Chromosome Mapping↗

Mapping factors controlling genetic expression.

A methodology relying on two-dimensional (2D) electrophoresis and genetic mapping is proposed to dissect the genetic architecture of the quantitative control of gene products. Seventy-two anonymous polypeptide spots resolved using silver-stained high-resolution 2D gels of maize coleoptile extracts were automatically quantified for every individual of an F2 progeny between distant lines. A complete genetic linkage map, including 70 RFLP and 39 protein markers, allowed us to map Mendelian factors underlying quantitative variation for 42 polypeptides. One to 5 unlinked chromosomal regions were found to affect single polypeptides, 27% of which resulted in more than a doubling of the polypeptide spot intensity. Dominance was observed for half of the factors, with high amount dominant over low amount in most cases, which is consistent with the observation that the relative abundance of proteins in F1 hybrids is in average deviated to the high parental values. Epistatic interactions were shown to be involved in the control of 14% of the proteins. These features contrast sharply with the observations from 20 agromorphological traits measured in the same progeny, where limited substitution and dominance effects, and no epistatic interaction, were found.

Alleles↗