Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Genetic Structures”

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 901 records · Page 50Linked to original sources

[T cell receptors. New knowledge of structure, genetic organisation, ontogenesis, and malignant transformation].

T cell receptors which are members of the "immunoglobulin-superfamily" are capable of discriminating "self" from "non-self" and can be considered as analogues membrane-bound immunoglobulins. The minimal essential component, an alpha/beta glycoprotein heterodimer, is structurally similar to Fab1-fragments of immunoglobulins with constant and variable domains. Its genomic organisation strongly resembles that of antibodies. The alpha/beta-heterodimer is found to be associated with the CD3 complex of T lymphocyte membranes triggering cell activation. Another member of the T cell receptor family, the gamma-chain, is expressed during early stages of intrathymic differentiations. Cytotoxic and helper T cell lines contain gamma-chain-specific mRNA in much smaller amounts. It may be a reliable marker of T cell malignancies. The T alpha-gene family is also involved in the pathogenesis of T cell malignancies.

Amino Acids↗

Genetic structure and transcriptional analysis of the arginine deiminase (ADI) cluster in Lactococcus lactis MG1363.

In a recent proteomic analysis, we showed the overproduction of the ArcA and ArcB proteins in Lactococcus lactis MG1363 at low pH. The corresponding genes belong to the arcABD1C1C2TD2 cluster that encodes components of the arginine deiminase pathway. In this study, we characterized this cluster at the genetic level. Northern blot experiments showed the expression of at least seven transcripts, all induced by acidity. Transcript analysis using 5'RACE PCR (rapid amplification of cDNA ends polymerase chain reaction) in the arcB-arcD1 intergenic region. In silico analysis identified nine stem-loop structures, all located in intergenic regions. Collectively, these data suggest a role for RNA processing and (or) premature termination in the differential expression of genes within the arcABD1C1C2TD2 cluster.

Bacterial Proteins↗

Genetic structure and phylogenetic relationships of Colombian Trypanosoma cruzi populations as determined by schizodeme and isoenzyme markers.

Twenty-four Trypanosoma cruzi stocks isolated from vectors and from human and Didelphis marsupialis hosts from highly separated sylvatic localities in Colombia were characterized by isoenzyme and schizodeme analyses. The stocks were collected primarily from sylvatic ecotopes representing areas of low, moderate, and high endemicity for Chagas' diseases in Colombia. Parasites were characterized mainly by schizodeme analysis with the restriction enzyme Eco RI and the isoenzyme analysis was performed at 10 genetic loci. These analyses demonstrated an agreement between the classifications based on the isoenzyme analysis and on the restriction fragment length polymorphism patterns obtained with the Colombian stocks. There is clear evidence of demic subdivision between the eastern (E) and western (W) stocks separated by the Andean Mountains and Magdalena River, which is likely due to the geographic isolation generated by these topographic features. Heterozygosity estimates indicate that the E group could be more ancient than the W group. As was postulated in a previous study, these results are also compatible with the existence of a clonal population structure in Colombian sylvatic T. cruzi. Evidence presented here failed to demonstrate a correlation between the degree of endemy and genetic clustering. Finally, schizodeme and isoenzymatic analyses comparing Colombian T. cruzi stocks with others from Chile confirm that Colombian isolates are genetically related to zymodeme 1 and distant from zymodeme 2.

Animals↗

Genetic structure and relationships in the snail species complex Littorina arcana hannaford ellis, L. compressa Jeffreys and L. saxatilis (Olivi) in the British isles using SSCPs of cytochrome-b fragments.

Snails of the Littorina saxatilis species complex are ubiquitous and important members of hard shore intertidal communities in the North Atlantic. The complex includes L. arcana, L. compressa and L. saxatilis. We investigated species and population structure among these species from six locations in Ireland and Britain using a nonradioactive single strand conformational polymorphism analysis of a 375 base pair fragment of the cytochrome-b gene. Variability was high with 38 haplotypes found in 591 individuals. The most common haplotype in L. arcana and L. compressa was absent from L. saxatilis and the most common haplotype in L. saxatilis was found in low numbers in L. arcana and L. compressa. Haplotypes restricted to L. arcana and L. compressa formed a cluster separate from L. saxatilis haplotypes in maximum parsimony and multidimensional scaling analyses. In analyses examining populations, L. arcana and L. compressa formed a group separate from L. saxatilis. Both the populations in the L. arcana/L. compressa group and in L. saxatilis show similar geographical structuring in that the North England populations were separated from a cluster of Cornwall (South-west England) and Irish populations. We suggested that Pleistocene sea level changes accounted for these congruent genetic patterns. We concluded that L. arcana and L. compressa are more closely related to each other than either is to L. saxatilis and offer this as a resolution to a previous trichotomy.

Animals↗

Genetic structure of Anopheles gambiae (Diptera: Culicidae) in São Tomé and Príncipe (West Africa): implications for malaria control.

The impact of a vector eradication programme, conducted in the 1980s, on Anopheles gambiae populations from the islands of São Tomé and Príncipe, was evaluated by microsatellite DNA analysis. Significant genetic differentiation was observed within and between the two islands and between the islands and a population from Gabon, suggesting a degree of isolation between them. Large estimates of long-term N(e) suggested that the control programme did not affect the effective population size of the vector. Heterozygosity tests were also not consistent with a recent bottleneck.

Africa, Western↗

Genetic structure and DNA sequences at junctions involved in the rearrangements of Bacillus subtilis strains carrying the trpE26 mutation.

Studies on the region upstream to ribosomal operon rrnD of Bacillus subtilis led to the characterization of two of the four chromosomal junctions involved in the rearrangements (a translocation and an inversion) of the strains carrying the trpE26 mutation. Genetic analysis, by integrative mapping, showed linkage of rrnD to cysB and hisA (both on segment A) in the trpE26-type strains. Physical analysis showed that the region upstream to rrnD is now linked to the trpE-ilvA chromosome segment as demonstrated by analyzing restriction site-polymorphism between 168 and trpE26-type strains. Similar experiments confirmed the previous genetic data on linkage in these areas in strains carrying novel rearrangements derived from the trpE26-type strains: stable merodiploids and inversions. The nucleotide sequence of the area 5' to rrnD in both types of strains (168 and trpE26), the region downstream of the citG gene and the region carrying the trpE26 mutation (made available to us by D. Henner) provided evidence for the molecular basis of the differences in structure, allowed the identification of the break points and revealed the presence of a polypurine region upstream to rrnD as seen in other systems in B. subtilis. No extensive homology was found between pairs of junctions so far sequenced. The models proposed by C. Anagnostopoulos for the role of DNA sequences of intrachromosomal homology involved in the transfer of the trpE26 mutation and the formation of novel arrangements require therefore reevaluation.

Amino Acid Sequence↗

Genetic structure of forensic populations.

DNA-based identification depends on the probability that two different individuals have the same phenotype, which is given by kinship theory. Together with the large and consistent body of evidence on human population structure, kinship theory provides a sound basis for forensic use of DNA markers.

DNA Fingerprinting↗

Population genetic structure in migratory sandhill cranes and the role of Pleistocene glaciations.

Previous studies of migratory sandhill cranes (Grus canadensis) have made significant progress explaining evolution of this group at the species scale, but have been unsuccessful in explaining the geographically partitioned variation in morphology seen on the population scale. The objectives of this study were to assess the population structure and gene flow patterns among migratory sandhill cranes using microsatellite DNA genotypes and mitochondrial DNA haplotypes of a large sample of individuals across three populations. In particular, we were interested in evaluating the roles of Pleistocene glaciation events and postglaciation gene flow in shaping the present-day population structure. Our results indicate substantial gene flow across regions of the Midcontinental population that are geographically adjacent, suggesting that gene flow for most of the region follows an isolation-by-distance model. Male-mediated gene flow and strong female philopatry may explain the differing patterns of nuclear and mitochondrial variation. Taken in context with precise geographical information on breeding locations, the morphologic and microsatellite DNA variation shows a gradation from the Arctic-nesting subspecies G. c. canadensis to the nonArctic subspecies G. c. tabida. Analogous to other Arctic-nesting birds, it is probable that the population structure seen in Midcontinental sandhill cranes reflects the result of postglacial secondary contact. Our data suggest that subspecies of migratory sandhills experience significant gene flow and therefore do not represent distinct and independent genetic entities.

Animal Migration↗

[Genetic structure of the native populations of the northeastern USSR. II. Phenotype frequencies of the polymorphic systems in generations of the coast Chukchi].

Reliable differences between phenotype frequencies in generations for six of ten polymorphic systems were received. Unequal selective value of separate phenotypes at different stages of ontogeny is supposed, which results in heterogeneity of generations in a population. A possible significance of ecological factors in the formation of the genotypic structure of a population is discussed.

ABO Blood-Group System↗

Admixture and Selection Driven by El Niño-Southern Oscillation Events Shape the Genetic Structure of Octopus mimus-O. hubbsorum Complex Across the Humboldt and South Equatorial Current Transition Zone.

Marine transition zones, where contrasting water masses converge, can function as natural laboratories for studying admixture and early stages of speciation. The genomic structure of the eastern Pacific Octopus mimus-O. hubbsorum complex was investigated by analyzing whole-genome sequencing data from 67 individuals sampled along the west coast of the Americas, spanning Mexico and the Peruvian coast. This includes the South Equatorial Current, the transition zone, and the Humboldt Current System. The mitochondrial genomes fell into two major genetic clades that largely corresponded to the warm-water northern (O. hubbsorum) and cold-water southern (O. mimus) lineages. Analyses of the nuclear genomes revealed the same bipartite structure but also identified a broad admixture zone characterized by two different admixed clades (Admixed-Cold and Admixed-Warm). The results suggest that episodic relaxation of oceanographic barriers during El Niño-Southern Oscillation (ENSO) events promotes secondary contact and gene flow, resulting in admixed individuals recurrently during ENSO years. However, the survival of these admixed individuals depends on the adaptive genetic composition of each organism and the prevailing environmental conditions. Outlier SNP analysis supports these findings, where the Admixed-Cold cluster shares mainly the adaptive genetic component identified as outliers in O. mimus, while Admixed-Warm is linked to those in O. hubbsorum. The O. mimus-O. hubbsorum complex is currently occupying a gray zone of speciation, in which selection and climate-driven connectivity act in tandem to shape genomic divergence.

gene flow↗