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Genetic analysis of natural populations of Poeciliopsis monacha: Allozyme inheritance and pattern of mating.

The genetic bases of seven polymorphic enzymes in Poeciliopsis monacha have been demonstrated through the analysis of allelic segregation in presumed heterozygotes captured in natural populations. Tests of linkage among loci revealed a significant association between two loci, Ldh-1 and Idh-2. Evidence for multiple insemination was detected in 23 percent of the females examined. Considering the limited number of markers available in the present study, it is probably that the actual frequency of multiple insemination is much higher.

Alleles

Apparently changing patterns of inheritance in Alport's hereditary nephritis: genetic heterogeneity versus altered diagnostic criteria.

With the use of more stringent diagnostic criteria, it has recently been shown that some large pedigrees of Alport's and non-Alport's hereditary nephritis fit sex-linked dominant inheritance (O'Neill et al. 1978). We have used similar diagnostic criteria and have studied a number of Michigan pedigrees in order to see if this hypothesis would be confirmed. We found one small pedigree which definitely shows male-to-male transmission, while one large pedigree is tentatively compatible with sex-linked dominant inheritance. Many of the other pedigrees suggested male-to-male transmission. This Michigan experience is compared to other published reports and found to be consistent, although a trend of fewer reports of male-to-male transmission is seen. We conclude that genetic heterogeneity of Alport's hereditary nephritis is likely.

Female

Patterns of inheritance of the symptoms of Huntington's disease suggestive of an effect of genomic imprinting.

The interaction of symptomatology (rigidity/chorea) in Huntington's disease (HD) with age of onset (AO) was examined using data from the Research Roster for Huntington's Disease Patients and Families. It was shown that AO varies between families and between paternal and maternal transmission and that rigidity is associated specifically with very early onset, major anticipation, paternal transmission, and young parental AO. It is proposed that AO depends on the state of methylation of the HD locus, which varies as a familial trait, and as a consequence of 'genomic imprinting' determined by parental transmission. Young familial AO and paternal imprinting interact to produce, occasionally, a major change in gene expression, that is, the early onset/rigid variant.

Adolescent

Chronic granulomatous disease in an adult female with granulomatous cheilitis. Evidence for an X-linked pattern of inheritance with extreme lyonization.

We describe in this paper a female patient affected by chronic granulomatous disease with all the features of the classic X-linked form of the disease and presenting a mild form of the disease, the major clinical manifestation being a granulomatous cheilitis. The capability of the patient's phagocytes to undergo a respiratory burst in response to different stimuli was markedly depressed and only 10% of the patient's neutrophils were able to reduce nitroblue tetrazolium when stimulated with phorbol myristate acetate to an extent similar to normal cells. With this test, the neutrophils of the patient's mother showed a clear mosaicism, only 40% being able to reduce the dye. Activation of NADPH oxidase in cell-free systems showed that the phagocyte defect was at the level of a membrane component. Difference in spectra revealed that the observed membrane defect was due to a lack of cytochrome b558, the terminal component of NADPH oxidase. Incubation for 2 or 24 h of the patient's neutrophils with human recombinant interferon-gamma and granulocyte macrophage colony-stimulating factor did not correct their defective capability to undergo a respiratory burst However, cultivation of the patient's monocytes with interferon-gamma for prolonged times substantially enhanced their capability to produce hydrogen peroxide.

Adult

Novel patterns of inheritance of genetic disease are illustrated by the Angelman syndrome.

OBJECTIVE: To characterise the molecular abnormalities present in a cohort of patients with the Angelman syndrome. METHODS: DNA samples from 10 patients with the Angelman syndrome were investigated with molecular probes. Family studies were performed by means of DNA polymorphism analysis and densitometric estimation of allele copy number to determine the underlying mutation and its parental origin. RESULTS: Nine probands were shown to have molecular (DNA) deletions involving chromosome 15q11-q13. Polymorphism analyses demonstrated that all deletions were maternal in origin. Five of the nine had normal karyotypes, with deletions only detected after DNA study. One patient had inherited both chromosomes 15 from her father. This represented an example of paternal uniparental disomy of chromosome 15. CONCLUSIONS: Development of the Angelman syndrome can result from either deletion of the maternally-derived copy of chromosome 15q11-q13 or the presence of two paternally derived copies of chromosome 15, that is, uniparental disomy. DNA testing allows the identification of deletions that are not seen on cytogenetic analysis and can provide additional information regarding the parental origin of the deletion. Uniparental disomy is most readily established by DNA studies.

Adolescent