Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Inheritance”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 451 records · Page 25Linked to original sources

Unresolved boundaries of evolutionary theory and the question of how inheritance systems evolve: 75 years of debate on the evolution of dominance.

One of the key issues in the evolution of life is the evolution of inheritance systems. In population genetics, the earliest attempt at addressing the latter problem revolved around Fisher's theory on the evolution of dominance. Fisher's hypothesis was that inheritance systems could be modified during the evolutionary process in such a way that wild-type phenotypes could become dominant with respect to mutant phenotypes. This would result in the buffering of a population against the deleterious effects of mutations. The debate that ensued on this topic has been one of the most longstanding in evolutionary theory. At present, the prevalent view is that dominance cannot evolve as a direct result of selection. Furthermore, it has been argued that due to inherent constraints in biochemical systems, the manifestation of dominance is a default expectation and hence evolutionary explanations are not necessary. This has led to the position that the subject is generally resolved and no further debate is necessary. However, there are also several studies indicating that dominance levels can be modified as a result of changes in the genetic background. Furthermore, other studies have indicated that dominance selection is possible in certain circumstances. To a large degree, conclusions from both of the latter types of studies have been ignored. In this article, the history of several intellectual and methodological traditions that have contributed to this debate are traced, including experimental genetics, theoretical population genetics and theoretical biochemistry. In the light of both old and contemporary works on this topic, it is argued that contrary to the prevalent view, the evolution of dominance is not a resolved issue. A re-examination of this issue is essential, given that dominance evolution is likely to be an important stepping stone towards understanding the evolution of inheritance systems.

Animals↗

Pattern of inheritance in hereditary myeloperoxidase deficiency associated with the R569W missense mutation.

Myeloperoxidase (MPO) is an essential component of the oxygen-dependent microbicidal system of neutrophils and monocytes. Hereditary deficiency of MPO occurs in 1 in 2,000 to 4,000 individuals in the general population and has been generally considered an autosomal recessive trait. Previous studies have used the peroxidase activity of blood leukocytes to assess the phenotype of affected family members. Eosinophil peroxidase (EPO) also contributes to the peroxidase activity of blood leukocytes. Because EPO expression is normal in MPO-deficient subjects, eosinophil contamination can significantly contribute to peroxidase activity in leukocytes from family members of an MPO-deficient subject and thereby undermine correct interpretation of the inheritance pattern. To avoid this potential problem, we used cytochemical, immunochemical, and genetic techniques to assess the inheritance pattern of MPO deficiency in sixteen individuals from five unrelated kindreds. Each kindred had an index case with MPO deficiency and the R569W missense mutation, a genotype that causes MPO deficiency. Our analysis demonstrated that MPO deficiency was not inherited as a simple autosomal recessive trait. Most subjects were compound heterozygotes with respect to the R569W mutation and demonstrated a spectrum of phenotypes. Our data demonstrate the broad phenotypic impact of compound heterozygosity on the expression and function of a multimeric protein such as MPO.

Female↗

Familial blepharospasm is inherited as an autosomal dominant trait and relates to a novel unassigned gene.

Blepharospasm (BSP) is a common form of primary torsion dystonia (PTD). Although most cases are sporadic, an increased familial incidence of BSP has been reported. Precisely how blepharospasm is inherited remains unclear. We report on two Italian families with adult-onset focal BSP inherited as an autosomal dominant trait with reduced penetrance. None of the affected family members had the 3-bp (GAG) or the 18-bp deletion in the DYT1 gene. In one family, linkage analysis allowed us to exclude segregation of the disease with the known PTD loci (DYT1, DYT6, DYT7, and DYT13). These findings suggest that primary familial adult-onset BSP is a distinct entity among inherited PTD and is caused by a novel, unmapped gene.

Adolescent↗

Dominantly inherited cerebello-olivary atrophy is not due to a mutation at the spinocerebellar ataxia-I, Machado-Joseph disease, or Dentato-Rubro-Pallido-Luysian atrophy locus.

The dominantly inherited ataxias are characterized both by phenotypic variability (phenotypic heterogeneity) within the same genotype and overlapping phenotypes from different genotypes (genotypic heterogeneity). Therefore it is important to characterize specific clinical-neuropathologic phenotypes as precisely as possible at the genetic level. We describe a family with dominantly inherited ataxia of late adult onset with relatively "pure" cerebellar signs. Neuropathologic examination in two individuals from this family revealed findings consistent with cerebello-olivary atrophy, suggesting that this neuropathologic phenotype many run true within f families. Mutations at the spinocerebellar ataxia-I, Machado-Joseph disease, and dentatorubropallidoluysian atrophy loci were excluded by direct DNA analysis on the leukocytes of one living affected member. Thus we provide evidence that these mutations are not responsible for this particular phenotype of dominantly inherited ataxia.

Adult↗

Frequency of familial inheritance among 488 index patients with idiopathic focal dystonia and clinical variability in a large family.

Idiopathic torsion dystonia is characterized by involuntary twisting movements and postures. One molecularly defined form with generalized dystonia has been shown to be autosomal dominantly inherited with reduced penetrance in chromosome 9q34.1, especially in Ashkenazi Jewish families, while other generalized families from Europe and families with other subtypes of dystonia have been excluded from linkage to this locus. Genealogical studies suggest that the much more frequent focal dystonia follows an autosomal dominant inheritance with reduced penetrance as well. For our study, 488 patients with focal dystonia, without a tendency for generalization, were interviewed for their family history. Evidence for hereditary disposition was found in 88 individuals. In a second step, all available family members of 17 of the 488 index patients (chosen for cooperation) were clinically examined. Objective diagnosis of affected relative was established in 13 families, whereas only 4 of the 17 index patients had previously admitted a positive family history. Furthermore, a large three-generation family with focal dystonia linked to chromosome 18p (linkage data described elsewhere) was identified. The familial pattern of all reported families is compatible with autosomal dominant inheritance with reduced penetrance. Assessment only on patients' report leads to underestimation of the frequency of familial idiopathic focal dystonia.

Adult↗

Molecular diagnosis of inheritable neuromuscular disorders. Part II: Application of genetic testing in neuromuscular disease.

Molecular genetic advances have led to refinements in the classification of inherited neuromuscular disease, and to methods of molecular testing useful for diagnosis and management of selected patients. Testing should be performed as targeted studies, sometimes sequentially, but not as wasteful panels of multiple genetic tests performed simultaneously. Accurate diagnosis through molecular testing is available for the vast majority of patients with inherited neuropathies, resulting from mutations in three genes (PMP22, MPZ, and GJB1); the most common types of muscular dystrophies (Duchenne and Becker, facioscapulohumeral, and myotonic dystrophies); the inherited motor neuron disorders (spinal muscular atrophy, Kennedy's disease, and SOD1 related amyotrophic lateral sclerosis); and many other neuromuscular disorders. The role of potential multiple genetic influences on the development of acquired neuromuscular diseases is an increasingly active area of research.

Humans↗

Second-trimester maternal serum alpha-fetoprotein (MSAFP) is elevated in women with adverse pregnancy outcome associated with inherited thrombophilias.

Obstetric complications, such as severe pre-eclampsia, fetal growth restriction, abruptio placentae, or stillbirth are associated with abnormally elevated second-trimester maternal serum alpha-fetoprotein (MSAFP) and beta subunit of human chorionic gonadotrophin (betahCG). This has been attributed to placental abnormalities. Women with thrombophilias have been shown to have abnormalities of the placenta resulting in adverse pregnancy outcome in these patients. The purpose of the present study was to evaluate whether women with pregnancy complications and inherited thrombophilias have abnormally elevated second-trimester MSAFP or betahCG. Sixty-two women with pregnancy complications were tested for inherited thrombophilias several months after delivery. The thrombophilia group included 29 women with pregnancy complications and an inherited thrombophilia and the control group included 33 other patients without thrombophilia. Patients in the thrombophilia group had a higher median MoM MSAFP compared to the controls (1.337 vs. 1.086, p=0.0516). The incidence of abnormally elevated MSAFP (>2.5 MoM) was also significantly higher in the thrombophilia group compared to controls (21% vs. 3%, p=0.04). Neither the median MoM betahCG nor the incidence of abnormally elevated betahCG were significantly different between the groups. We conclude that second trimester MSAFP, but not betahCG, is abnormally elevated in patients with thrombophilia and obstetric complications.

Adult↗

Mechanisms of maternal rank 'inheritance' in the spotted hyaena, Crocuta crocuta.

Maternal rank 'inheritance', the process by which juveniles attain positions in the dominance hierarchy adjacent to those of their mothers, occurs in both cercopithecine primates and spotted hyaenas. Maternal rank is acquired in primates through defensive maternal interventions, coalitionary support and unprovoked aggression ('harassment') directed by adult females towards offspring of lower-ranking individuals. Genetic heritability of rank-related traits plays a negligible role in primate rank acquisition. Because the social lives of Crocuta and cercopithecine primates share many common features, we examined whether the same mechanisms might operate in both taxa to promote maternal rank 'inheritance'. We observed a large clan of free-living spotted hyaenas in Kenya to test predictions of four mechanistic hypotheses. Hyaena rank acquisition did not appear to be directly affected by genetic heritability. Unprovoked aggression from adult female hyaenas was not directed preferentially towards low-ranking cubs. However, high-ranking mothers intervened on behalf of their cubs more frequently and more effectively than low-ranking mothers. Maternal interventions and supportive coalitions appeared to reinforce aggression directed at 'appropriate' conspecific targets, whereas coalitionary aggression directed at cubs apparently functioned to extinguish their aggressive behaviour towards 'inappropriate' targets. Young hyaenas and primates thus appear to 'inherit' their mothers' ranks by strikingly similar mechanisms. Copyright 2000 The Association for the Study of Animal Behaviour.

Journal Article↗

Non-Mendelian inheritance revealed in a genetic analysis of sexual progeny of Phytophthora cinnamomi with microsatellite markers.

We report the development of four microsatellite loci into genetic markers for the diploid oomycete plant pathogen Phytophthora cinnamomi and that (AC)(n) and (AG)(n) microsatellites are significantly less frequent than in plant and mammal genomes. A minisatellite motif 14 bp long was also discovered. The four microsatellite loci were used to analyze sexual progeny from four separate crosses of P. cinnamomi. A large proportion of non-Mendelian inheritance was observed across all loci in all four crosses, including inheritance of more than two alleles at a locus and noninheritance of alleles from either parent at a locus. The aberrant inheritance is best explained by nondisjunction at meiosis in both the A1 parent and the A2 trisomic parents, resulting in aneuploid progeny. Two loci on the putative trisomic chromosome showed linkage and no loci were linked to mating type. One aneuploid offspring was shown to have lost alleles at two loci following subculture over 4 years, indicating that aneuploid progeny may not be mitotically stable.

Aneuploidy↗

The paternally inherited insulin gene B allele (1,428 FokI site) confers protection from insulin-dependent diabetes in families.

Several polymorphisms of the insulin gene and its flanking regions (INS region) are in linkage disequilibrium and confer susceptibility to insulin-dependent diabetes (IDDM). We have analysed INS AA and AB-BB genotypes at the 1,428 FokI site (3' of the insulin gene) in 217 patients with IDDM, 402 non-diabetic first degree relatives negative for insulin (IAA) and islet cell autoantibodies (ICA), and 116 autoantibody positive (for ICA or IAA, or both) relatives of whom 39 became diabetic on follow-up. Most IDDM patients (83.4%, 181/217) had the AA genotype vs. 50% (25/50) of the controls (P < 10(-6)). Only 16.6% (36/217) of IDDM patients carried the AB genotype and none was BB homozygous, suggesting a protective effect of the B allele. By segregation analysis of the B allele in the IDDM offspring of informative families (only one AB parent) from the United States, the maternal B allele was inherited by 19/35 (54.2%) of the IDDM offspring. In contrast, only 4/26 (15.3%) of the IDDM offspring inherited the paternal B allele (P = 0.001), suggesting maternal imprinting of the INS region. Therefore, the INS B allele may be protective only when paternally inherited. Among the 39 of 116 autoantibody positive relatives who developed IDDM on follow-up, only five of them had the B allele. The frequency of the B allele in this group was much lower (12.8%, 5/39) than that observed in non-diabetic autoantibody positive relatives (32.5%, 25/77, P = 0.02).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

The inheritance of desired characteristics: Children's view of the role of intention in parent-offspring resemblance.

Two studies examined children's beliefs about maternal intention as a mechanism for trait inheritance. In Study 1, 42 preschool-aged (4 to 5 years old) children and 81 adults were shown pictures of adult women (mothers) and were asked to identify their daughters. In the critical condition participants were asked to choose between a girl who shared an attribute with the mother and a girl who had the attribute desired by the mother. Trait types included physically heritable traits, nonheritable traits, and beliefs. Results from this study suggest that preschoolers do believe that maternal intention plays a role in the inheritance of physical traits. Study 2 was designed to determine whether preschoolers recognize limits on both the efficacy and the timing of maternal intention. Results suggest that children see some properties as outside of maternal control. Further, they do seem to see maternal intentions as operating prior to birth. One finding of these studies is that preschoolers may not have strong intuitions that offspring will resemble their parents. In addition, children seem to have different intuitions about the mechanisms of inheritance than do adults.

Child, Preschool↗

Epigenetic inheritance, genetic assimilation and speciation.

Epigenetic inheritance systems enable the environmentally induced phenotypes to be transmitted between generations. Jablonka and Lamb (1991, 1995) proposed that these systems have a substantial role during speciation. They argued that divergence of isolated populations may be first triggered by the accumulation of (heritable) phenotypic differences that are later followed and strengthened by genetic changes. The plausibility of this idea is examined in this paper. At first, we discuss the "exploratory" behaviour of an epigenetic inheritance system on a one peak adaptive landscape. If a quantitative trait is far from the optimum, then it is advantageous to induce heritable phenotypic variation. Conversely, if the genotypes get closer to the peak, it is more favorable to canalize the phenotypic expression of the character. This process would lead to genetic assimilation. Next we show that the divergence of heritable epigenetic marks acts to reduce or to eliminate the genetic barrier between two adaptive peaks. Therefore, an epigenetic inheritance system can increase the probability of transition from one adaptive state to another. Peak shift might be initiated by (i) slight changes in the inducing environment or by (ii) genetic drift of the genes controlling epigenetic variability. Remarkably, drift-induced transition is facilitated even if phenotypic variation is not heritable. A corollary of our thesis is that evolution can proceed through suboptimal phenotypic states, without passing through a deep adaptive valley of the genotype. We also consider the consequences of this finding on the dynamics and mode of reproductive isolation.

Animals↗

The biology of inherited cancer.

This issue of Cancer Biology is focused on inherited cancer. In this short introduction to the topic we give a brief overview and list genes and the corresponding inherited cancer syndromes. We discuss the basic mechanisms of inherited cancer and the clinical implication of predictive genetic testing for cancer.

Disease Susceptibility↗

Direct selection for paternal inheritance of chloroplasts in sexual progeny of Nicotiana.

The response of Nicotiana tabacum to tentoxin (chlorosis) is inherited with chloroplasts. N. tabacum var. Xanthi, a tentoxin-resistant line, was used to pollinate tentoxin-sensitive N. tabacum line 92, an alloplasmic male-sterile line containing N. undulata plastids. The seeds were mutagenized with nitrosomethylurea and germinated in the presence of tentoxin. Two percent of the seedlings had green sectors in their first true leaves. These plants were grown to maturity under non-selective conditions. Homogeneous tentoxin-resistant lines were obtained in the third generation. DNA analysis indicated, however, that selection for paternal plastids, rather than mutagenesis of maternal ones, had occurred in the tentoxin-resistant progeny. Mitochondria, which were not under selection pressure, were inherited maternally as expected. Inheritance of tentoxin-resistant paternal plastids did not require seed mutagenesis. Normally germinated seedlings that were kept under tentoxin selection consistently produced a low level of resistant green sectors in their first true leaves. Thus, normal, low-frequency transmission of paternal plastids in N. tabacum can be directly revealed by using tentoxin.

Chloroplasts↗

Neonatal glutaric aciduria type II: an X-linked recessive inherited disorder.

A new case of neonatal glutaric aciduria type II is reported. Neonatal acidosis, hypoglycemia, and hyperammonemia were characteristic. The baby died at four days of age. Organic acid analysis revealed massive glutaric aciduria with elevated concentrations of butyric, isobutyric, n-butyric, and isovaleric acid in his urine. The baby's pedigree suggested strongly an X-linked recessive mode of inheritance. Clinically, biochemically, and genetically glutaric aciduria type II is an heterogeneous disorder. The neonatal form is an X-linked inherited disorder which presents early in life, and is associated with metabolic acidosis, hypoglycemia, and hyperammonemia, and leads to death in the neonatal period. The mild form is an autosomal recessive inherited disease which may present even in adults, and is associated with recurrent hypoglycemia without ketosis and usually improves. Nevertheless the same unusual organic acid pattern is observed in both forms. The basic biochemical defect must be distinct and has not been elucidated.

Acidosis↗

Congenital thyroxine binding globulin deficiency: incidence and inheritance.

Ninety-nine cases of thyroxine binding globulin (TBG) deficiency (90 males and 9 females) were identified among low-T4 infants after newborn hypothyroid screening. The data indicate that inherited TBG deficiency occurs in at least 1:5,000 newborns (1:2,800 males) and that mild and more pronounced forms are found in approximately equal proportions. Genetic analysis indicates that X-linked inheritance is the usual mode with no suggestion of autosomal inheritance.

Female↗

Inherited and de novo deletion of the tyrosine aminotransferase gene locus at 16q22.1----q22.3 in a patient with tyrosinemia type II.

Tyrosinemia II is an autosomal-recessively inherited condition caused by deficiency in the liver-specific enzyme tyrosine aminotransferase (TAT; EC 2.6.1.5). We have restudied a patient with typical symptoms of tyrosinemia II who in addition suffers from multiple congenital anomalies including severe mental retardation. Southern blot analysis using a human TAT cDNA probe revealed a complete deletion of both TAT alleles in the patient. Molecular and cytogenetic analysis of the patient and his family showed one deletion to be maternally inherited, extending over at least 27 kb and including the complete TAT structural gene, whereas loss of the second TAT allele results from a small de novo interstitial deletion, del 16 (pter----q22.1::q22.3----qter), in the paternally inherited chromosome 16. Three additional loci previously assigned to 16q22 were studied in our patient: haptoglobin (HP), lecithin: cholesterol acyltransferase (LCAT), and the metallothionein gene cluster MT1,MT2. Of these three markers, only the HP locus was found to be codeleted with the TAT locus on the del(16) chromosome.

Alleles↗

Plasmid and host functions required for lambda plasmid replication carried out by the inherited replication complex.

We have shown previously that in amino acid-starved, relaxed (rel-) mutants of Escherichia coli replication of the lambda plasmid occurs via the lambda O-containing replication complex (RC) that was assembled prior to the onset of amino acid starvation and is inherited by one of the two daughter plasmid circles in each replication cycle. This replication is regulated neither by binding of the lambda O initiator to ori lambda, nor by the lambda Cro-mediated repression. Here we show that it is dependent on both RNA polymerase and DnaA functions, which is consistent with our recent finding that transcriptional activation of ori lambda is under the control of DnaA. In the system studied, DnaA-regulated transcriptional activation of ori lambda seems to be the only rate-limiting process. The lambda plasmid replication mediated by the inherited RC appeared to be independent of the functions of lambda P and DnaJ required in RC assembly In vitro experiments performed by others suggest that DnaJ first binds to the ori lambda-bound lambda O-lambda P-DnaB pre-primosome and subsequently lambda P complexed with DnaJ is preferentially recognized by DnaK-GrpE; chaperone-mediated rearrangement of this structure relieves DnaB helicase of lambda P inhibition. Recently we proposed that this process is directly coupled to the insertion of the pre-primosome between DNA strands transiently separated by transcription. This last-mentioned process may be required in lambda plasmid replication mediated by the inherited RC, which appeared in turn to be dependent on DnaK and GrpE functions.

Bacterial Proteins↗