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Effect of enalapril on handling of a sodium chloride load by genetically hypertensive and normotensive rats.

1. Enalapril was given in the drinking water (300 mg/L) for 4.5 days to normotensive (N) and genetically hypertensive (GH) rats on zero sodium intake. An intraperitoneal NaCl load was given 12 h after enalapril was started. 2. Enalapril did not increase the maximum rate of sodium excretion, but caused the rats to excrete more than the load in the first 24 h and then to have a slow fall in body sodium while on a sodium-free diet. 3. In terms of the Strauss et al. (1958) concept of body sodium, enalapril appears to lower the basal level. However, in addition it causes a slow leak of sodium which becomes apparent when sodium intake is very low.

Animals↗

Population structure, mating system, and sex-determining allele diversity of the parasitoid wasp Habrobracon hebetor.

Besides haplo-diploid sex determination, where females develop from fertilized diploid eggs and males from unfertilized haploid eggs, some Hymenoptera have a secondary system called complementary sex determination (CSD). This depends on genotypes of a 'sex locus' with numerous sex-determining alleles. Diploid heterozygotes develop as females, but diploid homozygotes become sterile or nonviable diploid males. Thus, when females share sex-determining alleles with their mates and produce low fitness diploid males, CSD creates a genetic load. The parasitoid wasp Habrobracon hebetor has CSD and displays mating behaviours that lessen CSD load, including mating at aggregations of males and inbreeding avoidance by females. To examine the influence of population structure and the mating system on CSD load, we conducted genetic analyses of an H. hebetor population in Wisconsin. Given the frequency of diploid males, we estimated that the population harboured 10-16 sex-determining alleles. Overall, marker allele frequencies did not differ between subpopulations, but frequencies changed dramatically between years. This reduced estimates of effective size of subpopulations to only N3 approximately 20-50, which probably reflected annual fluctuations of abundance of H. hebetor. We also determined that the mating system is effectively monogamous. Models relating sex-determining allele diversity and the mating system to female productivity showed that inbreeding avoidance always decreased CSD loads, but multiple mating only reduced loads in populations with fewer than five sex-determining alleles. Populations with N3 less than 100 should have fewer sex-determining alleles than we found, but high diversity could be maintained by a combination of frequency-dependent selection and gene flow between populations.

Alleles↗

Enhanced urinary kallikrein excretion in response to a moderate sodium load in genetically hypertensive rats.

Experiments were performed to compare the diuretic and natriuretic response to a moderate saline load between 12-week-old conscious spontaneously hypertensive rats (SHR) and normotensive Wistar-Kyoto (WKY) male rats. The animals were infused intravenously with 0.9% NaCl, first for a 1-h equilibration period, at a rate of 20 microliters/min, then for a 2-h salt-loading phase at 40 microliters/min, and finally during a 1-h recovery at 20 microliters/min. Cumulative renal excretion of water and sodium was similar in SHR and WKY rats. In contrast, urinary kallikrein excretion (amidolytic assay) during the saline-expansion and recovery phases was significantly higher in SHR than in WKY rats. At the end of the salt-loading phase, plasma levels of atrial natriuretic peptide (ANP) were higher in SHR than in WKY rats (p less than 0.05). This was also true in animals infused with 5% dextrose instead of 0.9% NaCl. Splanchnic nerve activity remained stable throughout the study in SHR as well as in WKY rats. These data therefore indicate that SHR excrete water and sodium similarly to WKY rats when they are subjected to a moderate sodium load. Neither ANP nor the sympathetic nervous system seems to be directly implicated in the renal response to the moderate saline expansion. Whether the enhanced urinary kallikrein excretion observed in SHR reflects an active participation of the renal kallikrein-kinin system in their sodium handling remains uncertain.

Animals↗

Early effect of inbreeding as revealed by microsatellite analyses on Ostrea edulis larvae.

This paper reports new experimental evidence on the effect of inbreeding on growth and survival in the early developmental phase of a marine bivalve, the flat oyster Ostrea edulis. Two crosses between full sibs were analyzed using four microsatellite markers. Samples of 96 individuals were taken just after spawning (day 1), at the end of the larval stage before metamorphosis (day 10) and at the postlarval stage (day 70). Significant departure from Mendelian expectation was observed at two loci in the first cross and two loci in the second. Departure from 1:1 segregation occurred in one parent of the first cross at three loci and genotypic selection, which resulted in highly significant heterozygote excesses, was recorded at three out of four loci in cross C1 and at two out of three loci in cross C2. Across the four markers, there were similar significant excesses of multilocus heterozygosity, and significant multilocus heterozygosity-growth correlations were recorded for both crosses at all stages. These results suggest that microsatellite markers, often assumed to be neutral, cosegregated with fitness-associated genes, the number of which is estimated to be between 15 and 38 in the whole genome, and that there is a potentially high genetic load in Ostrea edulis genome. This load provides a genetic basis for heterosis in marine bivalves.

Animals↗

Genomic erosion in the assessment of species' extinction risk and recovery potential.

Many species are undergoing rapid population declines and environmental deterioration, leading to genomic erosion. Here we define genomic erosion as the loss of genetic diversity, accumulation of deleterious mutations, maladaptation, and introgression, all of which can undermine individual fitness and long-term population viability. Critically, this process continues even after demographic recovery due to a time-lagged impact of genetic drift, which is known as drift debt. Current conservation assessments, such as the International Union for Conservation of Nature Red List, focus on short-term extinction risk and do not capture the long-term consequences of genomic erosion. Likewise, the longer-term assessments of the International Union for Conservation of Nature Green Status may overestimate population recovery by failing to account for the enduring effects of genomic erosion. As genome sequencing becomes increasingly accessible, there is a growing opportunity to quantify genomic erosion and integrate it into conservation planning. Here, we use genomic simulations to illustrate how different genomic metrics are sensitive to the drift debt. We test how ancestral effective population size (Ne) and bottleneck history influence the tempo and severity of genomic erosion. Furthermore, we demonstrate how these dynamics shape genetic load and additive genetic variation, which are key indicators of long-term evolutionary potential. Finally, we present a proof-of-concept for a Genomic Green Status framework that aligns genomic metrics with conservation impact assessments, laying the foundation for genomics-informed strategies to support species recovery.

Extinction, Biological↗

Toward diagnostic and phenotype markers for genetically transmitted speech delay.

Converging evidence supports the hypothesis that the most common subtype of childhood speech sound disorder (SSD) of currently unknown origin is genetically transmitted. We report the first findings toward a set of diagnostic markers to differentiate this proposed etiological subtype (provisionally termed speech delay-genetic) from other proposed subtypes of SSD of unknown origin. Conversational speech samples from 72 preschool children with speech delay of unknown origin from 3 research centers were selected from an audio archive. Participants differed on the number of biological, nuclear family members (0 or 2+) classified as positive for current and/or prior speech-language disorder. Although participants in the 2 groups were found to have similar speech competence, as indexed by their Percentage of Consonants Correct scores, their speech error patterns differed significantly in 3 ways. Compared with children who may have reduced genetic load for speech delay (no affected nuclear family members), children with possibly higher genetic load (2+ affected members) had (a) a significantly higher proportion of relative omission errors on the Late-8 consonants; (b) a significantly lower proportion of relative distortion errors on these consonants, particularly on the sibilant fricatives /s/, /z/, and //; and (c) a significantly lower proportion of backed /s/ distortions, as assessed by both perceptual and acoustic methods. Machine learning routines identified a 3-part classification rule that included differential weightings of these variables. The classification rule had diagnostic accuracy value of 0.83 (95% confidence limits = 0.74-0.92), with positive and negative likelihood ratios of 9.6 (95% confidence limits = 3.1-29.9) and 0.40 (95% confidence limits = 0.24-0.68), respectively. The diagnostic accuracy findings are viewed as promising. The error pattern for this proposed subtype of SSD is viewed as consistent with the cognitive-linguistic processing deficits that have been reported for genetically transmitted verbal disorders.

Child, Preschool↗

Effect of age at onset and parental disease status on sibling risks for MS.

MS is believed to be a complex trait determined by genetic and nongenetic factors. Data suggest that MS susceptibility and age at onset are each, at least to some extent, under genetic control. The present study carefully examined five covariates (sex of the index case, sex of the sibling, birth cohort of the sibling [< or = 1919, 1920 to 1939, > or = 1940], age of MS onset in the index patient (< or = 20 years, 21 to 30 years, 31 to 40 years, > 40 years), and MS disease status of the parents [i.e., MS present in one parent or no parent with MS]) that may influence the familial risk of MS in a large cohort of 1,896 MS patients and 8,878 of their first-degree relatives. Of these, sex of the sibling, parental MS status, and index patient onset age were the important factors influencing MS risks to siblings. The results of this study are (1) the index-patient-onset-age effect suggests that individuals with a greater genetic loading (i.e., a greater contribution of susceptibility alleles) have an earlier age at onset and (2) genetic loading is substantially increased in individuals with an affected parent. These data are important both for genetic counseling and gene identification studies.

Adult↗

The magnocellular visual system and schizophrenia: what can the color red tell us?

Previous research has suggested that genetic loading for schizophrenia is related to a dysfunctional magnocellular (M) subcortical visual pathway-responsible for processing movement and location. However, data substantiating this mechanism remains inconclusive. The present study used a novel technique to selectively suppress the M system in order to investigate the impact of genetic loading for schizophrenia on its functioning. A visual backward masking task was administered to 28 healthy first-degree relatives of persons with schizophrenia and 31 healthy controls. The task was administered on both a red and neutral background, as diffuse red light has been shown to selectively suppress the M system in basic vision research. On a location condition of backward masking, controls demonstrated reduced accuracy on the red compared to the neutral background. In contrast, relatives did not display differential performance between the two backgrounds. The differential effect on the two groups appears to be attributable to a difference in activity of the M pathway. Performance in the relatives was consistent with the notion of a hyperactive M pathway.

Adult↗

Twin study of symptom dimensions in psychoses.

BACKGROUND: Symptomatology in psychoses can be summarised as quantitative symptom dimensions, but their genetic basis is unknown. AIMS: To investigate whether genes make an important contribution to symptom dimensions. METHOD: A total of 224 probandwise twin pairs (106 monozygotic, 118 same-gender dizygotic) where probands had psychosis were ascertained from the Maudsley Twin Register in London. Factor analysis was performed on lifetime symptoms rated on the Operational Checklist for Psychotic Disorders (OPCRIT). Correlations of dimension scores within monozygotic and dizygotic pairs concordant for Research Diagnostic Criteria psychoses were performed. Relationships between dimension scores and genetic loading for psychoses were assessed using logistic regression. RESULTS: Patterns of familial aggregation consistent with a genetic effect were found for the disorganised dimension and for some measures of the negative, manic and general psychotic dimensions. Disorganised dimension scores were related significantly to genetic loading for psychoses. CONCLUSIONS: The disorganised dimension, and possibly other symptom dimensions, may be useful phenotypes for molecular genetic studies of psychoses.

Diseases in Twins↗

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↗

Induction of cardiac angiotensin I-converting enzyme with dietary NaCl-loading in genetically hypertensive and normotensive rats.

We have recently shown that the angiotensin I converting enzyme (ACE) gene is linked to NaCl-loaded blood pressure in the stroke-prone spontaneously hypertensive rat (SHRSP), and that high-NaCl loading selectively stimulates ACE in the aorta of SHRSP but not in normotensive Wistar-Kyoto (WKY) rats. We therefore investigated the relationship between cardiac ACE and the development of hypertension and left ventricular hypertrophy in response to normal- and high-NaCl diet in these rats. ACE mRNA and ACE activity were measured in left ventricular tissue after completion of hemodynamic characterization of the animals. While SHRSP rats increased blood pressure (P < 0.0001) and heart rate (P < 0.005) in response to high NaCl, blood pressure remained unchanged in WKY. Similarly, relative left ventricular weight increased only in SHRSP after high NaCl (P < 0.002). A significant two- to threefold increase of cardiac ACE mRNA and fourfold stimulation of ACE enzyme activity in response to high NaCl was found in both WKY and SHRSP rats (P < 0.005). The induction of ACE gene expression was significantly more pronounced in SHRSP compared to WKY (P < 0.02), whereas no significant strain differences in left ventricular ACE activity were found after either normal- or high-NaCl diet. Thus, arterial blood pressure and left ventricular weight remained unchanged in the WKY rats despite the activation of left ventricular ACE activity after high-NaCl exposure. These results demonstrate that left ventricular ACE activity is equally upregulated in response to high-NaCl in the normotensive and hypertensive strain, independently from the development of hypertension.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin II↗

Genes, genome and Gestalt.

According to Gestalt thinking, biological systems cannot be viewed as the sum of their elements, but as processes of the whole. To understand organisms we must start from the whole, observing how the various parts are related. In genetics, we must observe the genome over and above the sum of its genes. Either loss or addition of one gene in a genome can change the function of the organism. Genomes are organized in networks of genes, which need to be well integrated. In the case of genetically modified organisms (GMOs), for example, soybeans, rats, Anopheles mosquitoes, and pigs, the insertion of an exogenous gene into a receptive organism generally causes disturbance in the networks, resulting in the breakdown of gene interactions. In these cases, genetic modification increased the genetic load of the GMO and consequently decreased its adaptability (fitness). Therefore, it is hard to claim that the production of such organisms with an increased genetic load does not have ethical implications.

Animals↗

Inbreeding depression in insular and central populations of Peromyscus mice.

We tested the hypothesis that small, isolated populations would show less depression in fitness when inbred than would large, central populations. Laboratory stocks of Peromyscus leucopus and P. polionotus were established from insular, peninsular, and central populations. The isolated populations had one-third to one-half the genic diversity of central populations. Responses to inbreeding were highly varied: some populations had smaller litters, others experienced higher mortality, some showed slower growth rates, and one displayed no measurable effects when inbred. These results suggest that inbreeding depression is controlled by a small number of genes and that the size of the genetic load depends on which alleles are present in the founders of a population. The severity of fitness depression in inbred litters did not correlate with initial genic diversity of the stocks nor, therefore, with the size of the wild populations. Fitness measures appeared linearly related to the inbreeding coefficient of the liters, with no diminution of deleterious effects through subsequent generations of inbreeding. Thus overdominance of fitness traits probably contributed as much to the genetic load as did deleterious recessive alleles. The inbreeding level of the dam negatively affected the size, growth, and survival of litters only in genetically diverse populations, indicating that the load of recessive alleles negatively impacting maternal care may have been reduced by selection in the more peripheral populations during past bottlenecks.

Animals↗

A test for epistasis among induced mutations in Caenorhabditis elegans.

Synergistic epistasis, in which deleterious mutations tend to magnify each other's effects, is a necessary component of the mutational deterministic hypothesis for the maintenance of sexual production. We tested for epistasis for life-history traits in the soil nematode Caenorhabditis elegans by inducing mutations in two genetic backgrounds: a wild-type strain and a set of genetically loaded lines that contain large numbers of independent mildly detrimental mutations. There was no significant difference between the effect of new mutations on the wild-type background and the genetically loaded background for four out of five fitness correlates. In these four cases, the maximum level of epistasis compatible with the data was very low. The fifth trait, late productivity, is not likely to be an important component of fitness. This suggests either that specific environmental conditions are required to cause epistasis or that synergistic epistasis is not a general phenomenon. We also suggest a new mechanism by which deleterious mutations may provide an advantage to sexual reproduction under low selection coefficients.

Analysis of Variance↗

Before crossing over: the advantages of eukaryotic sex in genomes lacking chiasmatic recombination.

Non-recombining populations should suffer from four classic population genetic disadvantages: (1) they cannot reverse Muller's Ratchet, the accumulation of deleterious mutations caused by genetic drift and mutation; (2) whenever the fix a favourable mutation they lose all unlinked favourable variants; (3) they tend to lose favourable mutations that are linked to deleterious mutations; and (4) their genetic loads can be quite high when deleterious mutations have synergistic effects. It is commonly assumed that inter-chromosomal recombination (independent assortment) can counter these phenomena, but this has been studied only for the genetic load case. In contrast, many studies have shown that recombination via crossing over can counter these phenomena. Here we first show that segregation alone can strongly decelerate Muller's Ratchet in diploids, i.e. that recombination is not the only way to do so. We then show that inter-chromosomal recombination can indeed deal with phenomena (1) to (3) above very effectively if the genome consists of a moderate number of chromosomes. Therefore, if the above advantages of genetic recombination played a large role in the initial success of eukaryotic sex, the crucial moment in the origin of sex might have been the evolution of inter-chromosomal recombination, i.e. the evolution of genome segmentation, segregation, and syngamy. Crossing over might have become established as a major recombinational device only later, eliminating the disadvantages of extensively segmented genomes.

Crossing Over, Genetic↗

Neurological and morphological anomalies and the genetic liability to schizophrenia: a composite phenotype.

BACKGROUND: Neurological soft signs (NSS) and minor physical anomalies (MPA) are frequent in patients with schizophrenia and their biological relatives. We examined whether the NSS and MPA are related to the genetic loading in schizophrenia. METHODS: Patients with schizophrenia (DSM-IV) (n=61), nonpsychotic parents of these patients (n=76) and healthy comparison subjects (n=44) took part in the study. Parents were further classified as "presumed carriers" of the genetic loading (n=26) if they had a second relative with schizophrenia in their ascendants and/or collaterals (first or second degree) or as "presumed noncarriers" (n=50). NSS and MPA were compared in these groups. RESULTS: A multivariate analysis indicated that total NSS and MPA scores, adjusted for age and gender, were significantly related to group status. Univariate tests showed higher scores in motor coordination and integration subscores (p=0.005 and 0.008, respectively) in presumed carriers than in presumed noncarriers. In addition, a discriminant function analysis based on total NSS and MPA scores correctly classified 71% of nonpsychotic parents in presumed carriers or presumed noncarriers. CONCLUSIONS: Neurological impairments and slight morphological anomalies seem to be associated with the genetic risk for schizophrenia, even when the disease itself is absent. Their presence might be a valuable composite intermediate phenotype for genetic studies.

Adult↗

Psychopathology, personality traits and social development of young first-degree relatives of patients with schizophrenia.

BACKGROUND: Evaluation of individuals at high genetic risk of schizophrenia is a powerful method for identifying precursors of the illness. AIMS: To identify aspects of personality, psychopathology and social development that differentiate high-risk and control individuals. METHOD: Adolescent and young-adult first-degree relatives (n=35) of people with schizophrenia or schizoaffective disorder and a control group (n=55) were compared on 36 measures at baseline of a longitudinal study. Measures differentiating high-risk and control participants were related to four genetic loading indices. RESULTS: High-risk participants older than 17 years showed more physical anhedonia, less positive involvement with peers and more problems with peers, siblings and the opposite gender. Older high-risk individuals also were less cooperative, less self-directed and less reward-dependent. Problems with peers and the opposite gender, as well as reward dependence, were related linearly to genetic loading. CONCLUSIONS: Alterations in personality traits and social development are present in high-risk individuals, and may be markers for genetic liability toward the illness.

Adolescent↗

Alcoholism: toward understanding genetic and social factors.

This study uses prospective data to assess the interaction of environmental and genetic contributions to alcoholism. Families of men whose genetic loading included fathers who were alcoholics were compared with men whose fathers were not alcoholics. Alcoholism among the former appeared to be promoted by mothers who held the alcoholic fathers in high esteem. The analyses suggested that genetic loading together with covert acceptance of alcoholism increases risk, as does absence of maternal control.

Alcoholism↗