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Effects of substerilizing doses of gamma radiation on adult longevity and level of inherited sterility in Teia anartoides (Lepidoptera: Lymantriidae).

The effects of substerilizing doses of gamma radiation on the longevity and level of inherited sterility in the Australian moth Teia anartoides Walker were determined. Six day-old male pupae were treated with 0, 100, and 160 Gy of gamma radiation by using a 1.25 MeV Cobalt60 irradiation source. Laboratory studies of male longevity showed that radiation had little impact in adult moths of the P1, F1, and F2 generations. Inherited deleterious effects resulting from irradiation were observed in the progeny of F1 and F2 generations. Outcrosses between substerile parental males or their highly sterile male progeny to wild-type females did not affect female fecundity. However, adverse effects were observed for these crosses in the rates of successful egg hatch and postembryonic development. Fertility was always greater in out-crosses involving a P1 male than in any of the F1 out-crosses. F1 males were always more sterile than F1 females, and the level of sterility for the F1 and F2 generations was higher than that of the controls. The incidence of larval and pupal mortality was higher in the F2 than the F1 generation. A dose of 100 Gy had the highest success in inducing deleterious effects that were inherited through to the F2 generation. Our results indicated that the use of partially sterilizing doses of radiation has good potential as a selective strategy for management or eradication of T. anartoides.

Animals↗

Genetic databases: online catalogues of inherited disorders.

Current information on inherited disorders in domestic animals is available on the internet: Online Mendelian inheritance in animals (OMIA) and Mendelian inheritance in sheep (MIS) are the two major sources of information. OMIA was created (and is maintained) by workers at the University of Sydney. MIS has been compiled by the Committee on Genetic Nomenclature of Sheep and Goats (COGNOSAG), an international group of geneticists. In the future, similar catalogues for other species (starting with goats and cattle) will be made available by COGNOSAG. Electronic access to this information is freely accessible on the world-wide web at http:/(/)www.angis.su.oz.au/Databases/BIRX/om ia (for OMIA), http:/(/)probe.nalusda.gov:8300/animal/omia.h tml (for OMIA in the United States of America) and at http:/(/)www.angis.org.au/Databases/BIRX/mis (for MIS).

Animals↗

Diabetes among the three affiliated tribes: correlation with degree of Indian inheritance.

The health records of all members of the Three Affiliated Indian Tribes of Fort Berthold, North Dakota were reviewed in order to define the extent of diabetes in this population. Full-inheritance Indians age 35 years and older have a known prevalence rate of diabetes of 22.3 per cent; persons between half- and full-inheritance Indian have a rate of 14.9 per cent; persons less than one-half Indian inheritance have a rate of 4.1 per cent, the same as whites living on this reservation. Below age 35, diabetes is rare among all racial subgroups.

Adolescent↗

Defining the importance of mitochondrial gene defects in maternally inherited diabetes by sequencing the entire mitochondrial genome.

For any mitochondrial DNA (mtDNA) mutation, the ratio of mutant to wild-type mtDNA (% heteroplasmy) varies across tissues, with low levels in leukocytes and high levels in postmitotic tissues (e.g., skeletal muscle). Direct sequencing is the gold-standard method used to detect novel mutations, but can only reliably detect % heteroplasmy >25%, which is rare in leukocytes. Therefore, we investigated the role of mtDNA defects in maternally inherited diabetes by first screening for the A3243G tRNA(Leu(UUR)) mutation by restriction assay, followed by sequencing of the entire mitochondrial genome using skeletal muscle derived mtDNA. A total of 28 patients had maternally inherited diabetes either alone (group 1, n = 17) or with one or more additional features of mitochondrial disease, including bilateral sensori-neural deafness and neuromuscular disease (group 2, n = 11). Three patients (all from group 2) carried the A3243G mutation. Skeletal muscle mtDNA from eight group 1 patients and six more group 2 patients was sequenced. No pathogenic mutations were found in the group 1 patients, while two patients from group 2 had mutations at positions 12258 and 14709 in the tRNA serine and glutamic acid genes, respectively. We conclude, therefore, that screening for mtDNA mutations should be considered in patients with maternally inherited diabetes, but only when additional features of mitochondrial disease are present.

Aged↗

Inheritance of rupture of the cranial cruciate ligament in Newfoundlands.

OBJECTIVE: To determine prevalence, level of inbreeding, heritability, and mode of inheritance for rupture of the cranial cruciate ligament (RCCL) in Newfoundlands. DESIGN: Retrospective and recruitment study. ANIMALS: 574 client-owned Newfoundlands. PROCEDURE: Medical records from January 1, 1996, to December 31, 2002, were evaluated for prevalence of RCCL. A pedigree was constructed by use of recruited Newfoundlands with RCCL status based on results of veterinary examination; level of inbreeding, heritability, and mode of inheritance were calculated. RESULTS: Hospital prevalence for RCCL was 22%; dogs in the pedigree from the recruitment study had a mean level of inbreeding of 1.19 x 10(4), heritability of 0.27, and a possible recessive mode of inheritance with 51% penetrance for RCCL. CONCLUSIONS AND CLINICAL RELEVANCE: Identification of a genetic basis for RCCL in Newfoundlands provided evidence that investigators can now focus on developing methods to identify carriers to reduce the prevalence of RCCL.

Animals↗

Inherited sensorineural low-frequency hearing impairment: some aspects of phenotype and epidemiology.

This contribution forms part of the HEAR project. It describes some phenotypes of inherited low-frequency sensorineural hearing impairment (LFSHI) and estimates the prevalence of this inherited hearing impairment (HI) based on a clinical series. During a 10-year period (1987-1996), 418 subjects (134 males and 284 females), with a median age of 68 years (range 4-98), had been examined with LFSHI, defined as hearing loss most pronounced in the low frequencies (i.e., 250 and 500 Hz > 20 dB HL with better hearing, i.e., > or =15-dB difference at 1 and/or 2 and/or 4 kHz with an air-bone gap <15 dB for the average of 0.5, 1, and 2 kHz). The 418 subjects comprising 0.6 per cent of the total number of subjects examined (N=69,309) were subdivided into four categories: category I positive genetic subjects (N=69); category II, probably genetic (N=339); category III, uncertain genetic (N=6); and category IV, subjects with contradictory audiological findings (N=4). The phenotype in category I demonstrated a symmetrical LFSHI, with a pattern of progression showing a slow deterioration in the high frequencies (i.e., 2, 4, and 8 kHz as a function of age)--the progression comprising 40-45 dB. In the low frequencies (i.e., 250, 500, and 1,000 Hz), a deterioration of 15-25 dB could be demonstrated from the youngest to the oldest age group. In category II, a symmetrical LFSHI was found in 179 subjects, showing the same pattern of progression as in category I. However, in the age group 20-39 years, a significantly poorer hearing was found in the low frequencies compared to category I, implying that several phenotypes may be present in LFSHI. A subgroup (A) in category II exhibited normal hearing in one ear with LFSHI in the opposite ear with the same pattern of progression as in category I. Three other subgroups with LFSHI and flat/sloping audiogram in the opposite ear and asymmetrical LFSHI also showed the same type of progression in the ear with LFSHI as in category I. A prevalence of 0.18/1,000 (95 per cent CI 0.13-0.22) of LFSHI was estimated based on the background population with a fairly constant prevalence throughout life. It is concluded that inherited nonsyndromal LFSHI is a rare disease and that the many different phenotypes of LFSHI probably are associated with pronounced genetic heterogeneity.

Acoustic Impedance Tests↗

Dominantly inherited low-frequency hearing loss.

Two families with dominantly inherited low-frequency hearing loss are described. The two families are different in mode of transmission and in audiological findings. On the basis of these two differences, it is claimed that two types of inherited low-frequency hearing loss can be distinguished. One type is the dominantly inherited low-frequency hearing loss with fully penetrant abnormal genes. The other is also most probably due to an autosomal dominant gene, but with incomplete penetrance and probably represents a malformation in the middle ear combined with a defect in the apical part of the cochlear mechanism.

Audiometry↗

Congenital hypernephronic nephromegaly with tubular dysgenesis: a distinctive inherited renal anomaly.

This paper describes a distinct, apparently inherited renal disorder we call congenital hypernephronic nephromegaly with tubular dysgenesis. The disorder is characterized by oligohydramnios, the Potter phenotype, and enlarged nonfunctional kidneys. Light microscopy demonstrates increased numbers of glomeruli, undifferentiated tubules, and interstitial fibrosis. Microdissection reveals short, immature nephrons that lack proximal convolutions, and abnormal vascularization of the glomerulus. Morphometric analysis demonstrates increased glomerular mass, primarily in the region of the corticomedullary junction, increased interstitial mass, and decreased tubular mass. The parameters that define this anomaly are presented, and the possible mechanisms of pathogenesis are discussed in relation to pathologic observations and current concepts concerning renal embryogenesis and differentiation. The recurrence of this anomaly in the male children of a consanguineous couple suggests an X-linked recessive mode of inheritance, although an autosomal-recessive mode of inheritance cannot be ruled out. This condition indicates that not all cases of the Potter phenotype can be considered to be sporadic.

Amniotic Fluid↗

Mitochondrial inheritance patterns in Didymium iridis are not influenced by stage of mating competency.

To test whether the timing of transition to mating competency affected mitochondrial transmission patterns in D. iridis. Reciprocal crosses were made by combining mating compatible strains that differed in their competency to mate. The results were compared to crosses where both mating strains were competent at the time of combining and crosses where somatic fusion of plasmodia was allowed. The results show that the mating competency of the parental strains at the time of confronting a compatible mate does not affect mitochondrial transmission patterns, mating efficiency or the likelihood of biparental inheritance. However the timing of plasmodial formation is delayed when precompetent and competent strains are mated compared to when both strains are competent at the time of mixing. We also observed that somatic fusion of plasmodia did not appreciably increase the incidence of biparental inheritance compared to crosses where individual plasmodia were isolated. These results provide additional evidence of the variable nature of mitochondrial inheritance in D. iridis within crosses and between mating trials.

Animals↗

Treatment of considerations in patients with compartment syndrome and an inherited bleeding disorder.

In addition to consultation with an experienced hematologist, the following are recommendations regarding compartment syndrome in a patient with an inherited bleeding disorder. Von Willebrand's Disease. Humate-P (rich in von Willebrand factor) is the replacement therapy of choice for surgical procedures in patients with von Willebrand's disease. In general, in the perioperative period, factor VIII levels between 50% and 100% are ideal with a gradual tapering to maintain levels at 50% for approximately 2 weeks. Adjuncts to therapy are DDAVP and EACA. Hemophilia A. During the initial evaluation and with measurement of compartment pressures, factor VIII replacement to levels in the range of 40% to 60% of normal is appropriate replacement therapy. For fasciotomy, however, factor VIII levels greater than 50% to 100% are required. In patients who have developed antibodies to factor VIII, a number of options are available. With low titers of factor VIII inhibitor, higher doses of factor VIII may be successful in overriding the inhibitor. In patients with higher titers of inhibitor, activated factor VII or porcine factor VIII is recommended. Hemophilia B. Highly purified factor IX replacement aimed at keeping factor levels between 50% and 100% in the perioperative period, followed by maintenance at 50% for approximately 2 weeks, is optimal management. Treatment Algorithm: The Figure outlines an algorithm to aid in the diagnosis and treatment of compartment syndrome in the patient with an inherited bleeding disorder. In a suspected case of compartment syndrome due to a soft-tissue hemorrhage or injury, factor replacement as outlined above should be initiated. Unequivocal clinical findings in the normal patient usually would be an indication to proceed to fasciotomy without obtaining compartment pressures. In the patient with an inherited bleeding disorder, however, factor replacement and subsequent normalization of the clotting cascade may help lowe compartment pressures. Therefore, we advocate obtaining initial pressures even with clinical findings of an acute compartment syndrome. At our institution, we advocate using an automated handheld pressure monitor (Stryker, Ontario, Canada) or the needle injection technique as described by Whitesides et al. In interpreting the obtained pressures, we choose to use the guidelines as described by Heppenstall et al. Briefly, Heppenstall et al determined that the pressure threshold at which cellular damage occurred was related more closely to the difference between the mean arterial blood pressure and compartment pressure than with the absolute compartment pressure alone; this measurement is called delta P. If delta P is > 30 mm Hg, then one should continue factor replacements and perform serial clinical and pressure examinations. Pressures should be taken every hour for 2 hours total. If the patient worsens in either respect, then the physician should enter the other limb of the algorithm for delta P < 30 mm Hg. For the patient with a delta P < 30 mm Hg, the amount of time since onset of symptoms must be considered. Since the patient may improve with adequate factor replacement, a delta P < 30 mm Hg mercury does not dictate automatic fasciotomy. An adequate time trial of replacement therapy may be attempted. In patients whose pressures do not begin normalizing, we advocate proceeding to fasciotomy. Patients who begin to normalize pressures during a 2-hour trial can be followed with serial clinical and pressure examinations. Any worsening in either scenario is an indication for fasciotomy; otherwise, observation and factor replacement may be continued. After initial decompression, staples may be placed in both wound edges with an elastic vascular loop woven between the two edges in a "shoelace" pattern. Then while waiting for closure, the loops can be gradually tightened at the bedside. Definitive closure should be attempted around the fifth postoperative day. All closure techniques should be pre

Algorithms↗

Tolerance to DNA in (NZB x NZW)F1 mice that inherit an anti-DNA V(H) as a conventional micro H chain transgene but not as a V(H) knock-in transgene.

Lupus-prone (NZB x NZW)F(1) (BWF(1)) mice were made transgenic (Tg) for an anti-DNA Ab inherited either as a conventional V(H)3H9- micro H chain Tg (3H9- micro ) with or without a conventional V(kappa)8-kappa Tg, or a V(H)3H9 V(H) knock-in Tg allele (3H9R) with or without a V(kappa)4 V(kappa) knock-in Tg allele (V(kappa)4R). V(H)3H9 yields an anti-DNA Ab with most L chains including an anti-ssDNA with the V(kappa)8 Tg and an anti-dsDNA with the V(kappa)4 Tg. BWF(1) mice that inherited the conventional 3H9- micro had normal serum IgM, little to none of which was encoded by 3H9- micro, and only a small percentage of those mice had serum anti-DNA, none of which was transgene encoded. B cells expressing the conventional 3H9- micro Tg were anergic. BWF(1) mice that inherited the knock-in 3H9R Tg allele also had normal serum IgM, one-half of which was encoded by 3H9R, and produced anti-DNA encoded by the Tg allele. Most B cells expressing the knock-in 3H9R Tg also had an anergic phenotype. The results indicate that autoimmune-prone BWF(1) mice initially develop effective B cell tolerance to DNA through anergy, and anergy was sustained in 3H9- micro Tg peripheral B cells but not in 3H9R Tg B cells. B cells expressing the 3H9R knock-in Tg allele were able to achieve an activation threshold that B cells expressing the 3H9- micro conventional Tg could not. The maintenance of B cell tolerance to DNA in autoimmune-prone BWF(1) mice appears to differ from both normal mice and autoimmune-prone MRL(lpr/lpr) mice.

Animals↗

Inheritance of mitral valve prolapse: effect of age and sex on gene expression.

To ascertain if mitral valve prolapse is inherited we studied 45 probands and 179 first-degree relatives. Echocardiographic mitral prolapse was present in 54 of 179 first-degree relatives (30%); at least one first-degree relative was affected in 29 families, including members of two generations in 23 families. The number of affected persons in the 54 sibships fell within the range predicted for autosomal dominant inheritance. The familial prevalence of prolapse was similar whether or not the proband had characteristic symptoms, auscultatory abnormalities, electrocardiographic findings, thoracic bony abnormalities, or coexistent heart disease. Mitral prolapse occurred in 37 of 90 women (41%) but 17 of 89 men (19%; p less than 0.005), and in 51 of 143 adults (35%) but only 3 of 36 children aged 1 to 15 (p less than 0.005). Mitral valve prolapse is an inherited autosomal dominant condition irrespective of clinical findings, and the mitral prolapse gene shows age and sex dependent expression. Mitral valve prolapse appears to be the commonest mendelian cardiovascular abnormality in humans.

Adolescent↗

Inheritance in erythropoietic protoporphyria: a common wild-type ferrochelatase allelic variant with low expression accounts for clinical manifestation.

Erythropoietic protoporphyria (EPP) is a rare autosomal dominant disorder of heme biosynthesis characterized by partial decrease in ferrochelatase (FECH; EC 4.99.1.1) activity with protoporphyrin overproduction and consequent painful skin photosensitivity and rarely liver disease. EPP is normally inherited in an autosomal dominant pattern with low clinical penetrance; the many different mutations that have been identified are restricted to one FECH allele, with the other one being free of any mutations. However, clinical manifestations of dominant EPP cannot be simply a matter of FECH haploinsufficiency, because patients have enzyme levels that are lower than the expected 50%. From RNA analysis in one family with dominant EPP, we recently suggested that clinical expression required coinheritance of a normal FECH allele with low expression and a mutant FECH allele. We now show that (1) coinheritance of a FECH gene defect and a wild-type low-expressed allele is generally involved in the clinical expression of EPP; (2) the low-expressed allelic variant was strongly associated with a partial 5' haplotype [-251G IVS1-23T IVS2microsatA9] that may be ancestral and was present in an estimated 10% of a control group of Caucasian origin; and (3) haplotyping allows the absolute risk of developing the disease to be predicted for those inheriting FECH EPP mutations. EPP may thus be considered as an inherited disorder that does not strictly follow recessive or dominant rules. It may represent a model for phenotype modulation by mild variation in expression of the wild-type allele in autosomal dominant diseases.

Alleles↗

Evidence for bilineal inheritance of physiological indicators of risk in childhood-onset schizophrenia.

Childhood-onset schizophrenia is proposed to be associated with increased genetic loading compared with adult-onset schizophrenia because of its earlier age of onset and generally greater severity of symptoms. Diminished suppression of P50 auditory evoked responses to repeated stimuli and elevated anticipatory saccades during smooth pursuit eye movements are markers of genetic risk that are found in members of families with schizophrenia even in the absence of the full clinical disorder and appear to be transmitted in a single gene autosomal dominant fashion. Adult-onset schizophrenia is generally associated with one parent who demonstrates abnormal P50 sensory gating and elevated anticipatory saccades and one parent who is normal on the physiologic measures (i.e., unilineal inheritance). This study investigates whether childhood-onset schizophrenia is similarly unilineal or is associated with the inheritance of genetic risk factors from both parents (i.e., bilineal inheritance). Ten childhood-onset schizophrenic probands and their parents were studied. Their P50 sensory gating and anticipatory saccades were compared with adult-onset schizophrenic probands and their parents. Bilineality, measured as physiological impairment in both parents, occurred more frequently in childhood-onset probands than in adult-onset probands for both P50 sensory gating deficits (60% versus 13%) and elevated anticipatory saccades (60 versus 0%). Additionally, childhood-onset schizophrenic probands performed more poorly than adult-onset probands on the anticipatory saccade measure. This physiological evidence suggests that childhood-onset schizophrenia may be associated with increased genetic loading because of contributions of genetic risk from both parents.

Adolescent↗

[Molecular genetics of inherited chorioretinal dystrophy--strategy for identifying disease causing genes].

PURPOSE: To review the strategies for identifying the causative genes of inherited chorioretinal diseases. METHODS: Three techniques, namely functional cloning, positional cloning, and positional candidate gene approach, have been used for this purpose. Our strategy for identifying the causative genes of inherited chorioretinal diseases is to clone retina-enriched genes, learn their chromosomal map position, and identify their expression in the retina. RESULTS: In the past 10 years, one gene has been cloned by functional cloning, 9 genes by positional cloning, and 19 genes by the positional candidate gene approach. Our strategy has identified 3 novel genes expressed in the retina, but they have not been associated with chorioretinal diseases. CONCLUSION: In the next century when the Human Genome Project is finished and the human genome has been sequenced completely, the positional candidate gene approach will become the predominant method of disease gene discovery. The future success of this method is predicated on increasingly dense mapping of the responsible genes by linkage analysis of multiple affected families with inherited chorioretinal diseases.

Choroid Diseases↗

[Non-syndromic familial hearing impairment transmitted by mitochondrial inheritance].

OBJECTIVE: To determine the clinical features and mode of inheritance of hearing impairment observed in several members of a Spanish family with putative genetic susceptibility to ototoxicity induced by aminoglycoside antibiotics. MATERIALS AND METHODS: In 14 patients belonging to the same family, an interview, otological examination and audiometry were carried out. Three of these patients also underwent a study of brainstem auditory-evoked potentials. A genetic study was made of 11 patients and 9 unaffected relatives to determine the mode of inheritance of the hearing impairment and to detect associated mutations. RESULTS: Most of the patients developed hearing loss before the age of 8 years, particularly for high frequencies. In almost all of them, there was no further evolution. Six patients had previous exposure to ototoxic drugs. Three patients had sudden hearing loss. In 2 of the 3 patients examined for brainstem auditory-evoked potentials, the hearing impairment was of cochlear origin. The genetic study detected A1555G mutation in the mitochondrial DNA of all the maternal relatives studied. CONCLUSIONS: Mitochondrially-inherited sensorineural hearing loss should be suspected in families with a maternal transmission of the disorder and more than one relative with aminoglycoside-induced hearing loss.

Acoustic Impedance Tests↗

Cutting edge: stable epigenetic inheritance of regional IFN-gamma promoter demethylation in CD44highCD8+ T lymphocytes.

Genomic DNA methylation patterns influence the development and maintenance of function during cellular differentiation. Methylation of regulatory sequences can have long-lasting effects on gene expression if inherited in an epigenetic manner. Recent work suggests that DNA methylation has a regulatory role in differential cytokine gene expression in primary T lymphocytes. Here we show, by clonal lineage analysis, that methylation patterns in the IFN-gamma promoter exhibit long term faithful inheritance in CD44highCD8+ T cells and their progeny, through 16 cell divisions and a clonal expansion of 5 orders of magnitude. Moreover, the demethylated IFN-gamma promoter is faithfully inherited following the withdrawal of T cell stimulation and the loss of detectable IFN-gamma mRNA, consistent with passive rather than active maintenance mechanisms. This represents a form of stable cellular memory, of defined epigenetic characteristics, that may contribute to the maintenance of T cell cytokine expression patterns and T cell memory.

Animals↗

Inheritance of resistance to anti-microtubule dinitroaniline herbicides in an "intermediate" resistant biotype of Eleusine indica (Poaceae).

Inheritance of resistance to the anti-microtubule dinitroaniline herbicides was investigated in a goosegrass biotype displaying an intermediate level of resistance (I). Reciprocal crosses were made between the I biotype and previously characterized susceptible (S) or resistant (R) biotypes. Eight F(1) hybrids were identified, and F(2) populations were produced by selfing. The dinitroaniline-herbicide response phenotype (DRP) of F(1) plants, and F(2) seedlings was determined using a root-growth bioassay. The DRP of F(1) plants of S × I was "susceptible" (i.e., identical to the S parental plants), and the DRP of F(1) plants of I × R was "intermediate" (i.e., identical to the I parental plants). Nonparental phenotypes were not observed in F(1) plants. Results indicated susceptibility to be dominant over intermediate resistance and intermediate resistance to be dominant over high resistance. Analysis of reciprocal crosses ruled out any role for cytoplasmic inheritance. When treated at the discriminating concentration (e.g., 0.28 ppm oryzalin), F(2) seedlings of S × I were classified as either S or I phenotype, and F(2) seedlings of I × R were classified as either I or R phenotype. Again, nonparental phenotypes were not observed. The 3:1 (S:I or I:R) segregation ratios in F(2) seedlings were consistent across all eight F(2) families. The results show that dinitroaniline herbicide resistance in the I biotype of goosegrass is inherited as a single, nuclear gene. Furthermore, it suggests that dinitroaniline resistance in goosegrass is controlled by three alleles at a single locus (i.e., Drp-S, Drp-i, and Drp-r).

Journal Article↗