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Biomedical subjects

N O Nilsson

Publications and source records attributed to N O Nilsson.

At least 19 recordsLinked to original sources

Analysis of short stature homeobox-containing gene ( SHOX) and auxological phenotype in dyschondrosteosis and isolated Madelung deformity.

Dyschondrosteosis (DCO; also called Léri-Weill syndrome) is a skeletal dysplasia characterised by disproportionate short stature because of mesomelic shortening of the limbs. Madelung deformity is a feature of DCO that is distinctive, variable in expressivity and frequently observed. Mutations of the SHOX (short stature homeobox-containing) gene have been previously described as causative in DCO. Isolated Madelung deformity (IMD) without the clinical characteristics of DCO has also been described in sporadic and a few familial cases but the genetic defect underlying IMD is unknown. In this study, we have examined 28 probands with DCO and seven probands with IMD for mutations in the SHOX gene by using polymorphic CA-repeat analysis, fluorescence in situ hybridisation (FISH), Southern blotting, direct sequencing and fibre-FISH analyses. This was combined with auxological examination of the probands and their family members. Evaluation of the auxological data showed a wide intra- and interfamilial phenotype variability in DCO. Out of 28 DCO probands, 22 (79%) were shown to have mutations in the SHOX gene. Sixteen unrelated DCO families had SHOX gene deletions. Four novel DCO-associated mutations were found in different families. In two additional DCO families, the previously described nonsense mutation (Arg195Stop) was detected. We conclude that mutations in the SHOX gene are the major factor in the pathogenesis of DCO. In a female proband with severe IMD and her unaffected sister, we detected an intrachromosomal duplication of the SHOX gene.

Blotting, Southern↗

Linkage disequilibrium mapping of the bolting gene in sea beet using AFLP markers.

The possibility of using linkage disequilibrium mapping in natural plant populations was assessed. In studying linkage disequilibrium among 137 mapped AFLP markers in four populations of sea beet (Beta vulgaris ssp. maritima (L.) Arcang.) it was shown that tightly linked loci could be detected by screening for associations. It was hypothesized that the short distances spanned by linkage disequilibrium enable markers that are very tightly linked to a target gene to be identified. The hypothesis was tested by whole-genome screening of AFLP markers for association with the gene for the annual growth habit, the B gene, in a sample of 106 sea beets. Despite the dominant nature of AFLP, two markers showing significant linkage disequilibrium with the B gene were detected. The results indicate the potential use of linkage disequilibrium for gene mapping in natural plant populations.

Alleles↗

Effects of distance and pollen competition on gene flow in the wind-pollinated grass Festuca pratensis Huds.

Pollen dispersal and gene flow in the grass meadow fescue (Festuca pratensis Huds.) were studied using two populations which were homozygous for different allozymes at the Gpi-2 locus. The populations were established in a concentric donor-acceptor field experiment. Gene flow was found mainly to be affected by the distance between the donor and acceptor plants. Analysing 21 132 acceptor plant progenies, gene flow was shown to decrease rapidly with distance to the donor field up to 75 m, and beyond this distance much more slowly. The ability of donor pollen to fertilize acceptor plants depended very much on the density of the acceptor plants. Pairs of acceptor plants produced more compatible pollen locally, and captured significantly less donor pollen than single-plants. Despite the higher seed production of acceptor plants planted in pairs, the absolute number of heterozygous seeds carrying the donor allele was always lower than for single-plants. Wind direction had only a slight effect upon the type of pollen captured. Because of pollen production within the two plant populations being continuous and overlapping, the time when anthesis occurred had little effect on gene flow between the populations. Vigorous and tall acceptor plants with many panicles, high seed yield and high 1000-seed weight were able to capture more donor pollen than shorter plants. The results may be used to assess the risk of gene flow and to develop strategies for monitoring the spread of transgenes from genetically modified grasses.

Gene Frequency↗

Positive correlation between recombination rates and levels of genetic variation in natural populations of sea beet (Beta vulgaris subsp. maritima).

The relation between the level of genetic variation and the rate of recombination per physical unit was investigated in sea beet (Beta vulgaris subsp. maritima). The rate of recombination per physical unit was estimated indirectly through marker density in an RFLP linkage map of sugar beet. From this map, we also selected RFLP markers covering two of the nine chromosomes in Beta. The markers were used to estimate the level of genetic variation in three populations of sea beet, two from Italy and one from England. Two estimates of genetic variation were employed, one based on the number of alleles in the sample and the other on heterozygosity. A statistically significant positive correlation was found between recombination rate and genetic variation. Several theoretical explanations for this are discussed, background selection being one. A correlation similar to this has been observed previously in Drosophila, one that was higher than what we obtained for Beta. This is consistent with various biological differences between the two species.

Chenopodiaceae↗

A model of chiasma reduction of closely formed crossovers.

A model of chiasma reduction is developed, evaluated by computer simulation and discussed in relation to the evolution of interference. The model assumes that adjacently formed crossovers can interact, if there is incomplete sister chromatid cohesion between them, and give rise to a reduced number of chiasmata. In the absence of crossover position interference this leads to a considerable risk of non-disjunction for an average sized chromosome. It is suggested that an important function of crossover interference is to reduce this effect. The question is raised whether chiasma reduction takes place today. Some available cytological data can be interpreted as showing that chiasma reduction occurs in normal meiosis. The possibility of chiasma reduction therefore needs further attention.

Animals↗

The robustness of recombination frequency estimates in intercrosses with dominant markers.

The robustness of the maximum likelihood estimates of recombination frequencies has been investigated in double intercrosses with complete dominance at both loci. The robustness was investigated with respect to bias in the recombination frequency estimates due to: (1) limited sample sizes, (2) heterogeneity in recombination frequencies between sexes or among meioses and (3) factors that distort the segregation-misclassification or differential viability. In the coupling phase, the recombination frequency estimates are quite robust with respect to most of the investigated factors. Potentially, the most serious cause of a bias is misclassifications, which tend to increase the recombination frequency estimates. In the repulsion phase, misclassifications are particularly serious, leading to extreme discrepancies between true and observed values. In addition, limited sample size and sex differences in recombination can also bias recombination frequency estimates in repulsion. These effects may pose serious problem in genetic mapping with random amplified polymorphic DNA (RAPD) markers.

Animals↗

Chiasma and recombination data in plants: are they compatible?

It has long been considered that the number of chiasmata formed during meiosis corresponds to the number of crossovers indicated by the genetic map. However, recent investigations in plants show an unexpected discrepancy in the results obtained when calculating the total number of crossover events per meiosis by these two methods. Is this discrepancy due to methodological difficulties? Or is there something fundamentally wrong with our understanding of crossovers and chiasmata?

Crossing Over, Genetic↗

Seasonal changes in lipogenesis and lipolysis in isolated adipocytes from Svalbard and Norwegian reindeer.

Arctic reindeer exhibit marked seasonal changes in fat deposition and mobilization. At intervals throughout the year, therefore, we have measured feed intake of both Svalbard (SR) and Norwegian reindeer (NR) together with the seasonal changes in size, lipogenic and lipolytic capacity of isolated adipocytes from both sub-species. Feed intake of both NR and SR was maximal in August, but declined thereafter, reaching minimum values in January (NR) and March (SR), 55 and 69% below the August value, respectively. NR and SR adipocyte volume changed in parallel and were reduced to the same extent (69%) from their maximum in August to their minimum in May. Adipocyte lipogenic capacity, measured as acetate incorporation into cellular lipid at saturated acetate concentrations, was lowest in January (NR adipocytes) and March (SR adipocytes), 92 and 90%, respectively, below the maximum values, which were obtained in August. Lipolytic capacity, measured as maximum adrenaline-stimulated glycerol release, was high in SR adipocytes from March through to October and in NR adipocytes from July through to January. Minimum lipolytic capacity, on the other hand, was found in January (SR adipocytes) and March (NR adipocytes). The present findings may be explained by alterations in lipogenic enzyme activity and in the lipolytic activation system.

Adipose Tissue↗

Effects of prolonged food restriction on some aspects of lipid metabolism in Norwegian and Svalbard reindeer.

The high-arctic Svalbard reindeer (SR) deposit great amounts of body fat in autumn for subsequent use during winter when food is often in short supply. Captive SR and, for comparative reasons, the sub-arctic Norwegian reindeer (NR) were offered 15% of their ad libitum food intake during a 21-day period in September/October and its effect on fat metabolism was investigated. Plasma free fatty acids (FFA), glycerol, glucose, insulin and urea as well as lipogenic and lipolytic activity of isolated adipocytes were determined. Levels of FFA and glycerol increased immediately when food intake was restricted, reaching the highest levels in SR. Plasma glucose was fairly constant in NR, but decreased in SR. Plasma insulin decreased in both species. Plasma urea increased steadily from day 5 in NR and from day 11 in SR, after a transient rise on day 1 in both. Lipogenic activity had vanished completely in both NR and SR adipocytes when tested after 13 days of food restriction, while lipolytic activity was initially increased, after which it decreased in adipocytes from both species. After 21 days of food restriction SR adipocytes exhibited another marked increase in lipolytic activity, while the fat deposits of NR at that time were too small to allow examination. Thus, reindeer do not differ from other species in their lipogenic responses, although they show some hitherto undescribed lipolytic responses to prolonged food restriction.

Adipose Tissue↗

Effects of volatile fatty acids and ketone bodies on lipolysis in isolated adipocytes from Norwegian reindeer (Rangifer tarandus).

The effect of volatile fatty acids (acetate and propionate) and ketone bodies (acetoacetate and DL-3-hydroxybutyrate) on adrenaline stimulated lipolysis have been studied in isolated adipocytes from Norwegian reindeer. All four substances caused a strong (63-90%) inhibition of lipolysis, measured as glycerol release, at low concentrations of adrenaline (5 nM). At higher adrenaline concentrations (50 nM) inhibition only took place in the presence of propionate (30% inhibition) or DL-3-hydroxybutyrate (43% inhibition). DL-3-hydroxybutyrate caused a marked reduction in adrenaline stimulated glycerol release, even at very low concentrations. The effective dose causing 50% inhibition (ED50) was 1.5 mM. It is suggested that both volatile fatty acids and ketone bodies can act as important volatile regulators of lipopolysis in this high arctic ruminant undergoing great seasonal changes in volatile fatty acid and supposedly ketone body production.

3-Hydroxybutyric Acid↗

Effects of insulin on lipolysis and lipogenesis in hamster white adipocytes with high sensitivity to hormones.

A modified procedure for preparation of hamster adipocytes by collagenase digestion under carefully controlled conditions has been developed. The adipocytes were 4- to 8-fold more sensitive to catecholamine stimulation of lipolysis than cells prepared by a commonly used method (Hittelman, K.J., Wu, C.F. and Butcher, R.W. (1973) Biochim. Biophys. Acta 304, 188-196) and also more sensitive to the anti-lipolytic action of insulin. The effects of insulin on lipogenesis, measured as [3H]glucose conversion to cell lipids, and on catecholamine-stimulated lipolysis were compared under identical conditions with the same cell batch. Isoprenaline-stimulated lipolysis was found to be half-maximally inhibited by an insulin concentration 8-fold lower than that stimulating lipogenesis to a corresponding extent (half-maximal effects at insulin concentrations of 40 vs. 300 pM). A similar difference was found when cells had been stimulated with adrenaline instead of isoprenaline.

Adipose Tissue↗