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Biomedical subjects

S Picton

Publications and source records attributed to S Picton.

39 records · Page 3Linked to original sources

Molecular biology of fruit ripening and its manipulation with antisense genes.

Considerable progress in tomato molecular biology has been made over the past five years. At least 19 different mRNAs which increase in amount during tomato fruit ripening have been cloned and genes for enzymes involved in cell wall degradation (polygalacturonase and pectinesterase) and ethylene synthesis (ACC synthase) have been identified by conventional procedures. Transgenic plants have been used to identify regions of DNA flanking fruit-specific, ripening-related and ethylene-regulated genes and trans-acting factors which bind to these promoters have also been identified. Antisense genes expressed in transgenic plants have proved to be highly effective for inhibiting the specific expression of ripening-related genes. These experiments have changed our understanding of how softening occurs in tomato fruit. Antisense techniques have also been used to identify genes encoding enzymes for carotenoid biosynthesis (phytoene synthase) and ethylene biosynthesis (the ethylene-forming enzyme). The altered characteristics of fruit transformed with specific antisense genes, such as retarded ripening and resistance to splitting, may prove to be of value to fruit growers, processors and ultimately the consumer.

Antisense Elements (Genetics)↗

Epidemiology of central nervous system tumors in children and young adults (0-29 years), Yorkshire, United Kingdom.

The authors describe the incidence and survival of 480 patients diagnosed under 30 years with a CNS tumor in Yorkshire, UK, between 1990 and 2001. The effect on survival from deprivation and other prognostic factors was examined. Young adults (aged 15-29) were significantly less likely to develop CNS tumors than children (p = .001), largely because of an excess of medulloblastoma and ependymoma in the pediatric age range. No significant temporal trends in incidence were present apart from young adults with "other CNS" tumors showing an average annual increase of 10.7% (95% CI 1.3-21.0%; p = .03). Young adults had significantly lower survival rates than children (hazard ratio = 1.52, 95% CI 1.10-2.10). The highest risk of death was observed for patients from the most affluent areas. The overall burden of CNS tumors appears to be relatively constant, but the significantly poorer survival for young people needs further rapid investigation.

Adolescent↗