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Cytoplasmic male sterility in sunflower: origin, inheritance, and frequency in natural populations.

Cytoplasmic male sterility (CMS) in commercial sunflower hybrids is thought to be derived from a related wild species, Helianthus petiolaris, yet CMS lines are known to carry the chloroplast DNA genotype of H. annuus. To clarify the origin of sunflower CMS, we developed a polymerase chain reaction-based strategy for detecting CMS in sunflower and surveyed more than 1,200 plants representing 55 accessions of H. annuus and 26 accessions of H. petiolaris. We also tested 160 progeny from three crosses for strict maternal inheritance of organelle DNAs to determine if the apparent discrepancy in the species donor of the mitochondrial DNA and chloroplast DNA genotypes in CMS lines might result from low-frequency maternal or biparental inheritance of either organelle. No CMS cytotypes were observed in natural populations of either H. annuus or H. petiolaris, and strict maternal inheritance of organelle DNA was observed. These data provide little insight, therefore, into the origin and population genetics of CMS in natural populations of sunflower, except that the evidence for strict maternal inheritance of organelles in sunflower makes it unlikely that the mtDNA and cpDNA genotypes in CMS lines were derived from different species. Nonetheless, the primers developed for assaying organelle DNA variation in sunflower may be useful tools for plant breeding programs, cytotype identification, and systematic and evolutionary studies in the domesticated sunflower and its relatives.

Base Sequence

A polygenic model of inherited predisposition to cancer.

Polygenic inheritance of predisposition to cancer is demonstrated in experimental animals for different tumor types. Genetic susceptibility to hepatocarcinogenesis, lung tumorigenesis, skin and intestine carcinogenesis, and plasmacytomagenesis is determined by inheritance of multiple cancer predisposition and resistance alleles, whose chromosomal locations have been found by genetic linkage analysis. In some of these experimental models, genetic heterogeneity has also been reported. In humans, increased risk of lung cancer associated with multiple genes coding for drug metabolizing enzymes, increased risk of cancer in relatives of cancer patients, and genetic heterogeneity are compatible with polygenic inheritance of cancer predisposition. Polygenic inheritance based on the combination of multiple alleles that give predisposition and resistance to cancer would predict a very high risk of cancer in carrier individuals and a marginal increase in the relative risk of cancer in the progeny of the cancer patients. Therefore, predisposition to cancer may be genetically determined even in the absence of familial clustering of cases.

Animals

Inheritance of the equine Tf F3 allele.

The inheritance of the equine Tf F3 allele was examined in 39 parent-offspring combinations. For 26 of the cases the allele inherited by the offspring from the heterozygous parent could be determined. The proportion of individuals that inherited the F3 variant compared to the alternative allele was exactly 1:1. In five cases the parental phenotype was identical to that of the offspring. For the remaining eight cases the parent was homozygous for the F3 allele and all offspring had the F3 allele. The results were consistent with Mendelian inheritance.

Alleles

The family history and inherited thrombophilia.

The role of the family history as a tool for the diagnosis of inherited thrombophilia has not been established. Several authors have indicated that a positive family history is not a good predictor of inherited abnormalities such as antithrombin III deficiency, or deficiencies of protein C or protein S. We have tried to approach the family history in a quantitative way. To this end we used the cumulative incidence data of thrombosis in the general population and also in a population of protein C deficient families to estimate the expected number of symptomatic subjects in a family under both the hypothesis of inherited thrombophilia and the null-hypothesis. Although a number of assumptions underlying our calculations need to be verified and probably adjusted before any truly quantitative meaning can be assigned to this approach, we feel that the family history is a useful diagnostic test for inherited thrombophilia if it is used in a critical way.

Adolescent

Correlation between magnitude of CAG repeat length alterations and length of the paternal repeat in paternally inherited Huntington's disease.

An increasing number of diseases are being found to be due to elongation of specific trinucleotide repeat sequences. Inverse correlation between the age at onset and the length of the repeat has been found in most of these. The elongated CAG repeat causing Huntington's disease is highly unstable when inherited from an affected father. In this study we found an average parent-to-offspring difference of +0.08 repeat units in maternally inherited repeats, significantly less than the average difference of +2.92 repeat units with paternal transmission. Large repeat expansions, of more than 5 repeat units, were seen only in paternally inherited cases. With paternal transmission the magnitude of repeat length alterations was directly correlated to increasing paternal repeat length. Increasing variation in repeat length among siblings was correlated to increasing average repeat length in the sibship in both maternally and paternally inherited HD. Comparison of the magnitude of repeat length alterations to parental age at the time of birth of the offspring showed no correlation.

Fathers

Inheritance of histiocytosis in Bernese mountain dogs.

One hundred and twenty-seven cases of histiocytosis in Bernese mountain dogs (BMD) were evaluated to determine if the tumour is inherited. Family data ruled out autosomal recessive, autosomal dominant and sex-linked modes of inheritance. The trait was determined to be inherited with a polygenic mode of inheritance. The salient points permitting this conclusion are: pedigrees developed from independently selected propositi link up allowing the tracing of all cases through several generations; multiple cases occur in the same litter; multiple cases have been produced by given dams and sires; there is a higher frequency of the disease among offspring of affected parents when compared to offspring of normal parents that produced histiocytosis and all offspring in the general population of BMDs; the fact that histiocytosis is common in BMDs and rare in eight other breeds and accounts for 25.4 per cent of the 500 tumours studied in this breed. The heritability of this trait was calculated to be 0.298.

Animals

Inherited resistance to Corynebacterium kutscheri in mice.

An analysis of the factors responsible for inherited resistance to Corynebacterium kutscheri was undertaken. Various inbred mouse strains were examined; these included the Swiss Lynch and C57Bl/l mice, their F1 and F2 progeny, and the progeny of the F1 backcrossed to each parent strain. Two modes of inherited resistance are described. An examination suggested that resistance as measured by the mean lethal dose of C. kutscheri was under polygenic control and was inherited continuously. However, the efficiency with which C. kutscheri was eliminated by the mononuclear phagocyte cells of the liver over 3 days differed markedly among strains. A genetic analysis of this mononuclear phagocyte microbicidal efficiency (MPME) in Swiss Lynch and C57Bl/6 mice was undertaken. The trait, MPME, was present, but did not segregate, in the F1 progeny or in the progeny of the backcross to the resistant C57Bl/6 parent; this was clear evidence of dominance. Moreover, MPME segregated in a ratio of 1:1 in the progeny of the backcross to the sensitive Swiss Lynch parent and in a ratio of 3:1 in the F2 progeny. It was concluded that MPME was inherited discontinuously and was controlled by a single dominant autosomal gene (or closely linked group); the recessive allele was assigned the gene symbol ack. Linkage experiments showed there to be no association between the ack locus and any of the immune-response genes.

Animals

Lack of influence of non-inherited maternal HLA-DR alleles on susceptibility to rheumatoid arthritis.

OBJECTIVE: To reproduce findings from previous reports that non-inherited maternal HLA class II antigens might contribute to rheumatoid arthritis (RA) susceptibility in the offspring. METHODS: Families were recruited from the Arthritis and Rheumatism Council's National Repository of RA families and HLA-DRB1 alleles were examined in these individuals and their first degree relatives using DNA typing methods. RESULTS: There was no evidence of an increase in either non-inherited maternal HLA-DR4 or the HLA-DRB1 shared epitope as a whole compared with the frequency expected using the non-inherited paternal antigens as controls. CONCLUSIONS: The numbers of probands who were shared epitope negative were small, but we are unable to confirm in these families the findings that non-inherited maternal HLA contributes an additional susceptibility factor to rheumatoid arthritis.

Alleles

Genetic inheritance of susceptibility to tinea imbricata.

Segregation analysis on 228 family pedigrees collected from a Papua New Guinean population provided data that strongly supported a previous report of an autosomal recessive pattern of inheritance of a susceptibility to tinea imbricata. The frequency of the susceptibility gene within the population studied was found to be 0.49 +/- 0.04, calculated on the assumption of an autosomal recessive mode of inheritance. However, in spite of the strong evidence in support of autosomal recessive inheritance, the possibility of autosomal dominant inheritance with reduced penetrance cannot be excluded.

Female

Age at onset in Huntington's disease: effect of line of inheritance and patient's sex.

The Leiden Roster for Huntington's disease (HD) contained data on 2617 cases up to July 1988. The age at onset (AO) was known in 1084 cases and in 1020 of these both their AO and the sex of the affected parent was known. The mean AO was higher for females than for males and higher for maternal than for paternal cases. However, in the group born before 1925 only females with maternal inheritance had a higher mean AO. Data on influence of sex and line of inheritance were present for the grandparents as well as for the great grandparents. Influence of the line of inheritance from the grandparents was particularly present for the grandmother-father (MP) lineage; regarding the great grandparents a significant difference was found between the MPM and PMP lineage. The results obtained for juvenile HD cases were comparable to those previously published. In late onset cases (over 50 years) no maternal preponderance in inheritance was found.

Adult

Mode of inheritance in familial cases of primary gonadotropic deficiency.

The mode of inheritance of primary gonadotropic deficiency was studied in 38 children and adolescents. 92% of this population was male with high frequencies of undescended testes (80%) and micropenis (31%). Anosmia was present in 61% of the patients aged more than 5 years and was a frequent genetic marker in the families. Inheritance was matrilineal in 18, X-linked dominant or autosomal dominant in 6. In 13 cases, the transmission was patrilineal and evoked autosomal dominant inheritance. An autosomal recessive transmission was likely in 7 patients. The data agree with the suggestion of multiple modes of inheritance of congenital gonadotropic deficiency, and clearly show the wide range of expressivity of the disorder.

Adolescent

Inheritance of endothelial dystrophy of the cornea.

64 families containing a proband with corneal endothelial dystrophy were examined in order to study the hereditary nature of the disease. Data concerning the frequency of occurrence, severity of the disease, ratio of affected females to males, relationship of the disease with age, and other factors were the subject of a previous report. 7 pedigrees which reflect features of endothelial dystrophy within the 64 families are presented. These features include multiple females in a family being affected, multiple consecutively affected generations, the occurrence of offspring with disease more severe than the parent, and endothelial decompensation (edema) at a relatively young age (less than 40 years of age). The importance of examining family members whenever possible rather than relying on history alone is emphasized. A statistical analysis of the inheritance pattern was performed. Endothelial dystrophy does not seem to follow a strict autosomal dominant pattern even though superficial inspection suggests autosomal dominant inheritance (both males and females affected, successive generations affected, 38% of relatives over the age of 40 years affected). Even though we were unable to determine a specific genetic mode of inheritance in these 64 families with endothelial dystrophy, we do feel that endothelial dystrophy is at least in part an inherited disease. Future investigations might prove sex-linked dominance, genetic heterogeneity, the influence of environmental factors, or a multifactorial etiology.

Adult

A critical appraisal of X-linked bipolar illness. Evidence for the assumed mode of inheritance is lacking.

The major assumption underlying all X-linkage studies of bipolar disorder has been that a subgroup of manic-depressive illness follows an X-linked dominant mode of inheritance. An evaluation of the segregation patterns in the pedigrees that have been analysed for X-linkage over the past 20 years does not support this assumption, because the formal genetic criteria for an X-linked dominant mode of inheritance are virtually absent. Not a single pedigree has been ascertained in which the segregation pattern is suggestive of the assumed mode of inheritance. This is mainly because segregation ratios characteristic for X-linked dominant inheritance cannot be observed among the offspring of affected males.

Bipolar Disorder

X-chromosome-linked inheritance of the variant thyroxine-binding globulin in Australian aborigines.

The inheritance of quantitative changes in serum T4-binding globulin (TBG; reduced or elevated serum levels) and electrophoretic variants of TBG have been shown to be X-chromosome linked. However, it recently was suggested that another TBG variant, widely distributed in the Australian Aborigine population, may be inherited as an autosomal dominant trait. This communication deals with studies directed to the elucidation of the mode of inheritance of the Aboriginal variant TBG. By measuring the rate of denaturation of TBG at 56 C, we identified three distinct types of TBG in Australian Aborigines. One was a relatively heat-stable TBG (mean t1/2, 58.0 min; range, 68-53 min; group A), indistinguishable from TBG in caucasians (mean t1/2, 55.1; range, 67-43); another was a heat-labile TBG (mean t1/2, 20.8 min; range, 23.7-18.4 min; group C); and a third had intermediate values (mean t1/2, 35.7 min; range, 39.5-30.6 min; group B). Serum samples from the latter group belonged exclusively to women. Assuming that individuals from group A were homozygous for the caucasian type TBG (TBGCC), those from group C were homozygous for the Aboriginal variant of TBG (TBGAA), and individuals from group B were heterozygous (TBGCA), gene frequencies were calculated for the product of TBGC and TBGA, and the incidence of expected genotypes was compared to that observed. The results are compatible with X-chromosome, but not autosomal, inheritance, with a gene frequency of TBGC of 0.4118 and of TBGA of 0.5882. The ability to identify individuals who are heterozygous for the Aboriginal variant TBG confirmed that the structural gene of TBG in man is located on the X-chromosome.

Adolescent

Gene amplification as a cause of inherited thyroxine-binding globulin excess in two Japanese families.

T4-binding globulin (TBG) is the major thyroid hormone transport protein in man. Inherited abnormalities in the level of serum TBG have been classified as partial deficiency, complete deficiency, and excess. Sequencing analysis of the TBG gene, located on Xq21-22, has uncovered the molecular defects causing partial and complete deficiency. However, the mechanism leading to inherited TBG excess remains unknown. In this study, two Japanese families, F-A and F-T, with inherited TBG excess were analyzed. Serum TBG levels in hemizygous males were 58 and 44 micrograms/mL, 3- and 2-fold the normal value, respectively. The molecule had normal properties in terms of heat stability and isoelectric focussing pattern. The sequence of the coding region and the promoter activity of the TBG gene were also indistinguishable between hemizygotes and normal subjects. The gene dosage of TBG relative to that of beta-globin, which is located on chromosome 11, and Duchenne muscular dystrophy, which is located on Xp, was evaluated by coamplification of these target genes using polymerase chain reaction and subsequent quantitation by HPLC. The TBG/beta-globin ratios of the affected male and female of F-A were 3.13 and 4.13 times, respectively, that in the normal males. The TBG/Duchenne muscular dystrophy ratios were 2.92 and 2.09 times the normal value, respectively. These results are compatible with three copies of TBG gene on the affected X-chromosome. Similarly, a 2-fold increase in gene dosage was demonstrated in the affected hemizygote of F-T. A 3-fold tandem amplification of the TBG gene was shown by in situ hybridization of prometaphase and interphase chromosomes from the affected male with a biotinylated genomic TBG probe, confirming the gene dosage results. Gene amplification of TBG is the cause of inherited TBG excess in these two families.

Base Sequence

A critique of the possibility of genetic inheritance of homosexual orientation.

Many workers in human sexuality have tried to discover causes of sexual orientation. No one theory has proved to be satisfactory. Studies of monozygotic and dizygotic twins, some of whom have been reared separately and some together, suggest that there may be an inherited component of homosexuality. Other studies, particularly those concerned with the evolution of human sexuality, question such a possibility. A further question arises because a large part of the human population is neither exclusively homosexual nor exclusively heterosexual. This paper will examine the evidence for genetic inheritance presented by twin and family studies. It will explore ways in which a gene favoring a homosexual orientation but not reproduction could continue to exist in a population. The importance of defining terms that refer to sexual orientation will be discussed in the context of determining exactly what may be inherited. Finally, the effects of accepting genetic inheritance as the cause of sexual orientation will be discussed.

Female

A difference between the inheritance of classical juvenile-onset and maturity-onset type diabetes of young people.

A difference in the inheritance of diabetes has been shown between the families of twenty-six patients with maturity-onset type diabetes of young people (MODY) and families of thirty-five patients with classical juvenile-onset diabetes (JOD). In the families of MODY: 1) twenty-two of twenty-six (85 per cent) propositi had a diabetic parent; 2) 46 per cent of families showed direct vertical transmission of diabetes through three generations; 3) of forty-seven tested siblings twenty-five (53 per cent) had latent diabetes; 4) the diabetic phenotype in the families was consistent, most affected individuals having a noninsulin requiring type of disease. These findings are compatible with autosomal dominant inheritance of MODY, although they do not exclude multifactorial inheritance. In contrast, in the families of JOD: 1) only four (11 per cent) of propositi had a diabetic parent; 2) three generation inheritance was found in only two (6 per cent) of JOD families, and 3) of seventy-four tested siblings eight (11 per cent) were diabetic. This difference provides further evidence of genetic heterogeneity in diabetes mellitus and indicates that there is a need for careful definition of the phenotype of diabetes in populations in which the genetics of diabetes is to be analyzed. Diabetes 24:44-53, January, 1975.

Adolescent

Higher maternal than paternal inheritance of diabetes in GK rats.

Results from crosses between Goto-Kakizaki (GK) rats, which exhibit spontaneous non-insulin-dependent diabetes mellitus (NIDDM), and outbred nondiabetic Wistar rats have demonstrated an effect of maternal inheritance on diabetes in offspring of the first generation (F1). At 6 weeks of age, F1 offspring of sex-directed crosses exhibited plasma glucose values intermediate between GK and Wistar parents. Hyperglycemia in F1 rats born of female GK rats (F1GK) was more marked than in those born of female Wistar (F1W) rats. At 3 months of age, F1 rats showed a marked impairment of both glucose tolerance and insulin secretion, which was intermediate between GK and Wistar rats. Glucose intolerance was more pronounced in F1GK rats than in F1W. By contrast, insulin secretion in F1W rats was more deteriorated than in F1GK rats. No deletion in mitochondrial DNA was observed in the GK rats, which decreased the possibility of a mitochondrial inheritance effect as an explanation of our findings. These data support a polygenic model in diabetes inheritance of NIDDM and suggest that, in addition to genetic factors, a perturbed maternal metabolism can contribute to its inheritance.

Animals