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Biomedical subjects

E W Hutchinson

Publications and source records attributed to E W Hutchinson.

4 recordsLinked to original sources

A method for analysis of gene expression patterns.

mRNA can be copied into cDNA with the use of reverse transcriptase so that the relative abundance of individual mRNAs is reflected in the cDNA product. With further manipulation a replica of the mRNA expression pattern can be duplicated into a radioactive double-stranded DNA probe. DNA from a series of genes inserted into plasmids can be fixed to a membrane using a slot blot manifold and probed with the RNA-derived DNA probe. The intensity of the hybridization signal for a given gene is a result of its relative abundance in the RNA-derived DNA probe. Quantitation can be achieved through the use of housekeeping genes as baseline monitors. Inclusion of vector sequences can negate any spurious hybridization to vector rather than insert sequences. We have successfully used this method to obtain gene expression patterns for RNA isolated from diverse sources including rodent tissues, various cell lines, and Drosophila and Caenorhabditis elegans samples. Northern blots have verified the results obtained. The pattern of expression of many genes can be determined from as little as 10 micrograms of total RNA, making this method ideally suited for studies in which RNA is rare or in short supply.

Base Sequence↗

Absence of strong heterosis for life span and other life history traits in Caenorhabditis elegans.

We have examined crosses between wild-type strains of Caenorhabditis elegans for heterosis effects on life span and other life history traits. Hermaphrodites of all wild strains had similar life expectancies but males of two strains had shorter life spans than hermaphrodites while males of two other strains lived longer than hermaphrodites. F1 hermaphrodite progeny showed no heterosis while some heterosis for longer life span was detected in F1 males. F1 hybrids of crosses between two widely studied wild-type strains, N2 (var. Bristol) and Berg BO (var. Bergerac), were examined for rate of development, hermaphrodite fertility, and behavior; there was no heterosis for these life history traits. Both controlled variation of temperature and uncontrolled environmental variation affected the length of life of all genotypes. Significant G x E effects on life span were observed in comparisons of N2 and Berg BO hermaphrodites, or N2 hermaphrodites and males, or N2 and a Ts mutant strain (DH26). Nevertheless, within an experiment, environmental variation was minimal and life spans were quite replicable.

Animals↗

Quantitative genetics of postponed aging in Drosophila melanogaster. I. Analysis of outbred populations.

Selection has been used to create replicated outbred stocks of Drosophila melanogaster with increased longevity, increased later fecundity, and increased levels of physiological performance at later ages. The present study analyzed the quantitative transmission patterns of such stocks, employing extensive replication in numbers of stocks, individuals, and assayed characters. The populations used derived from five lines with postponed aging and five control lines, all created in 1980 from the same founding base population. The following characters were studied: early 24-hr fecundity, early ovary weight, early female starvation resistance, early male starvation resistance, female longevity and male longevity. Numerous crosses were performed to test for non-Mendelian inheritance, average dominance, maternal effects, sex-linkage and between-line heterogeneity. There was only slight evidence for any of these phenomena arising reproducibly in the characters studied. These findings suggest the value of this set of stocks for studies of the physiological basis of postponed aging.

Aging↗

Quantitative genetics of postponed aging in Drosophila melanogaster. II. Analysis of selected lines.

Quantitative genetic analyses of Drosophila melanogaster stocks with postponed aging have suffered from the problem of a lack of certainty concerning patterns of allelic differentiation. The present experiments were designed to alleviate this difficulty by selecting for enhanced levels of characters known to be related to postponed aging. Selection successfully increased the degree of differentiation of postponed aging stocks with respect to starvation resistance and fecundity, but persistent additive genetic variance suggested that selection did not result in fixation of alleles. The artificially selected stocks were subjected to crosses to test for patterns of dominance and maternal effects. There was little evidence for these effects in the inheritance of the characters underlying postponed aging, even with the increased differentiation of the selected stocks.

Aging↗