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At least 343 records · Page 19Linked to original sources

Sliding window discretization: a new method for multiple band matching of bacterial genotyping fingerprints.

Microbiologists have traditionally applied hierarchical clustering algorithms as their mathematical tool of choice to unravel the taxonomic relationships between micro-organisms. However, the interpretation of such hierarchical classifications suffers from being subjective, in that a variety of ad hoc choices must be made during their construction. On the other hand, the application of more profound and objective mathematical methods--such as the minimization of stochastic complexity--for the classification of bacterial genotyping fingerprints data is hampered by the prerequisite that such methods only act upon vectorized data. In this paper we introduce a new method, coined sliding window discretization, for the transformation of genotypic fingerprint patterns into binary vector format. In the context of an extensive amplified fragment length polymorphism (AFLP) data set of 507 strains from the Vibrionaceae family that has previously been analysed, we demonstrate by comparison with a number of other discretization methods that this new discretization method results in minimal loss of the original information content captured in the banding patterns. Finally, we investigate the implications of the different discretization methods on the classification of bacterial genotyping fingerprints by minimization of stochastic complexity, as it is implemented in the BinClass software package for probabilistic clustering of binary vectors. The new taxonomic insights learned from the resulting classification of the AFLP patterns will prove the value of combining sliding window discretization with minimization of stochastic complexity, as an alternative classification algorithm for bacterial genotyping fingerprints.

Bacteria↗

The genomic damage estimated by arbitrarily primed PCR DNA fingerprinting is useful for the prognosis of gastric cancer.

BACKGROUND & AIMS: Genomic instability and the accompanying alteration of cancer genes play a major role in tumorigenesis. We evaluated the prognostic significance in gastric cancer of the degree of accumulation of relative genomic damage, assessed by arbitrarily primed polymerase chain reaction DNA fingerprinting. METHODS: Genomic damage was assessed by comparative analysis of paired normal and tumor tissue DNA fingerprints. The total number of alterations, scored as decreases and increases of band intensity with 2 arbitrary primers, were used as an estimation of the genomic damage fraction in 74 primary gastric cancers. Increases in DNA copy number were also analyzed by array comparative genomic hybridization in a subset of 30 cases. RESULTS: The number of altered bands varied among the tumors from none or a few to more than one third of the approximately 40 fingerprint bands. The relative values of genomic damage were consistent with the quantitative chromosomal alterations observed by array comparative genomic hybridization. When the tumors were stratified into 2 groups-above or below the cutoff of 0.22 for average genomic damage fraction-genomic damage fraction was a valuable prognostic indicator regardless of microsatellite instability status. Multivariate Cox analysis showed that the genomic damage fraction was a prognostic indicator, as well as a stage indicator (P = 0.0189). Survival was significantly diminished in tumors with a genomic damage fraction >0.22 (P = 0.0009). Moreover, in the 46 curative cases, genomic damage fraction was the only independent factor for predicting survival (P = 0.0061). CONCLUSIONS: Our results indicate that the degree of genomic damage estimated by arbitrarily primed polymerase chain reaction fingerprinting is a useful prognostic indicator for gastric cancer.

Adult↗

Quantitative assessment of the fingerprint evidential value using machine learning.

Fingerprints as physical evidence have long supported criminal investigation and adjudication. In practice, however, fingerprint identification relies mainly on examiners' experience. Furthermore, expert opinions tend to be categorical, even though the opinions with the same conclusion could differ substantially in evidential strength. To quantitatively assess fingerprint evidential value, this study proposes a machine learning-based framework as an interpretable decision-support tool. A lightweight residual one-dimensional convolutional neural network was constructed, incorporating channel recalibration and a similarity-driven attention mechanism to learn adaptive contribution weights for different matched minutiae (minutiae for short). Controlled experiments revealed that the predicted evidential value increased with the number of minutiae and was significantly influenced by the quality of minutiae. With 10 minutiae, the mean predicted scores were 4.49, 7.00, and 9.09 for blurred, moderately blurred, and clear minutiae, respectively. Multiple regression analysis indicated that replacing a pair of blurred minutiae with a pair of clear minutiae increased the score by 0.492, whereas replacing it with a pair of moderately blurred minutiae increased the score by only 0.216. By mapping predicted scores to graded levels of evidential strength, the framework contributes to a paradigm shift from categorical expert opinions to graded ones, helping courts evaluate fingerprint evidence more scientifically.

Humans↗

Identification of a deletion hotspot on distal mouse chromosome 4 by YAC fingerprinting.

Using repetitive elements as probes, genomic DNA fingerprints of four randomly selected yeast artificial chromosome (YAC) clones (two human and two mouse-derived YAC) were analyzed to determine the mutation level following X-ray exposure. Because the repetitive probes were derived from the mammalian host DNA, most of the fingerprint bands originated from the artificial chromosomes and not from the yeast genome. For none of the YAC clones was the mutation frequency elevated following X-ray exposure. However, for one mouse-derived YAC, the mutation level was unusually high (7%; 42 mutants of 607 clones analyzed), whereas for the other three YACs, the mutation level was nearly 0%. Surprisingly, 40 of the 42 mutations were deletions occurring only at three of the 20 mouse specific fingerprint bands. One of the frequently deleted fragments was cloned, sequenced and mapped to distal mouse chromosome 4, which has been repeatedly reported to be the most unstable region of the whole mouse genome, associated with various tumors. Deletion mapping of six YAC mutants revealed this fragment to be completely deleted in four YACs. In the other two mutants, recombination occurred within the fragment, in each case initiated at the same LINE-1 element. In conclusion, the presented YAC fingerprint is a useful tool for detecting and characterizing unstable regions in mammalian genomes.

Animals↗

Fingerprinting human chromosomes by polymerase chain reaction-mediated DNA amplification.

We describe here a method for DNA fingerprinting of human chromosomes by Alu-polymerase chain reaction (PCR) amplification of DNA from monochromosomal hybrids, following digestion with restriction endonucleases. DNA digestion with restriction enzymes prior to PCR amplification reduces the total number of amplified fragments. The number and pattern of bands of PCR products observed in an electrophoretic medium are chromosome specific and provide a "fingerprint signature" for individual human chromosomes. Using this approach, we have produced fingerprints for human chromosomes 2, 5, 7, 9, and 12. The applicability of this approach to chromosome identification was assessed by comparing the fingerprints obtained for two different hybrids containing chromosome 7. DNA fragments specific for the long and the short arms of human chromosome 12 have also been identified. In addition, Alu-PCR-generated DNA fragments, specific for different chromosomes, were used to probe Southern blots of a hybrid cell panel to identify human chromosomes present in hybrid cell lines. The chromosomal specificity of these probes permits the identification of intact as well as rearranged chromosomes composed of segments arising from more than one chromosome.

Animals↗

Evaluation and comparison of random amplification of polymorphic DNA, pulsed-field gel electrophoresis and ADSRRS-fingerprinting for typing Serratia marcescens outbreaks.

Amplification of DNA fragments surrounding rare restriction sites (ADSRRS-fingerprinting) is a novel assay based on suppression of polymerase chain reaction (PCR). This phenomenon allows the amplification of only a limited subset of DNA fragments, since only those with two different oligonucleotides ligated at the ends of complementary DNA strands are amplified in the PCR. The DNA fragments can be easily analyzed on polyacrylamide gels, stained with ethidium bromide. We have implemented this method using a set of clinical Serratia marcescens isolates from three outbreaks ongoing in the Public Hospital in Gdańsk (Poland). Clustering of ADSRRS-fingerprinting data matched epidemiological, microbiological, random amplification of polymorphic DNA (RAPD) and pulsed-field gel electrophoresis (PFGE) data. Based on this study, we found that there is at least a similar power of discrimination between the present 'gold-standard' PFGE and the novel method, ADSRRS-fingerprinting. Although the ADSRRS-fingerprinting method may appear to be more complex than the RAPD technique, we found it fast and reproducible.

Anti-Bacterial Agents↗

PCR-fingerprinting used for comparison of ex type strains of Trichoderma species deposited in different culture collections.

PCR-fingerprinting with primers (GACA)4, (GTG)5, M13 (core sequence of phage M13), and OPB-05 was used to compare ex type strains of various species of Trichoderma. The ex type strain of each species was obtained from different culture collections. PCR-fingerprints of each ex type culture, despite of separate cultivation over a long period of time (sometimes decades) by different culture collections, were identical. Ex type strains could be discriminated from a number of other strains belonging to the same species, since every strain was characterized by its individual PCR-fingerprint. PCR-fingerprinting is recommended as a basic tool for proving the identity of strains, especially with regard to comprehensive culture collections. Investigations of Trichoderma todica, a species of undefined systematic position within the genus Trichoderma, suggest a close relationship to Trichoderma paraceramosum. Morphological and molecular data indicate that Trichoderma todica and Trichoderma parceramosum are conspecific.

Base Sequence↗

[Study on application of rep-PCR fingerprint in rapid identification of beer-spoilager].

The application potential of rep-PCR in typing beer-spoilage isolates was studied. The effects of different factors, including DNA templates and primers, on the quality and reproducibility of fingerprints were investigated. The CTAB protocol was shown to be the feasible method for DNA extraction. Primers BOXA1R and (GTG)5 were used in rep-PCR, and the PCR products were sequenced to identify strains isolated from two breweries. Rep-PCR fingerprint profiles were obtained by using GelCompar II software. Cluster analysis showed that the isolates belonging to Lactobacillus brevis, L. buchneri, L. casei/paracasei, L. plantarum are divided into 2 or 3 subgroups. In addition, the two rep-PCR fingerprint profiles complemented with each other in typing these isolates. Combining the similarity coefficient cut-off (SCC) of species, 9 unknown isolates were identified rapidly by using both fingerprint databases. The results indicate that rep-PCR is a simple, reliable and promising method for rapid identification of beer-spoilager.

Beer↗

Genomic fingerprinting of shigatoxin-producing Escherichia coli (STEC) strains: comparison of pulsed-field gel electrophoresis (PFGE) and fluorescent amplified-fragment-length polymorphism (FAFLP).

For epidemiological studies of shigatoxin-producing Escherichia coli (STEC) infections, rapid, reproducible and highly discriminative methods are required. In this study, we examined the performance of the fluorescent amplified-fragment-length polymorphism (FAFLP) technique for epidemiological fingerprinting of STEC isolates and compared it to the acknowledged fingerprinting method pulsed-field gel electrophoresis (PFGE). A total of 88 STEC isolates, including 82 of serotype O157:H7 or O157:H-, were subjected to fingerprinting by both PFGE and FAFLP. The isolates included sporadic and epidemiologically related strains of both animal and human origin from widespread geographical locations. The FAFLP fingerprint patterns confirmed the clonal nature of STEC O157 strains. Among the 82 O157:H7/H- isolates belonging to 49 distinct groups of epidemiological unrelated isolates, 24 FAFLP profiles and 51 PFGE patterns were obtained. Thus, PFGE had a higher discriminatory power than FAFLP and overall correlated better to available epidemiological data. Consequently, the PFGE technique remains the method of choice in epidemiological investigations of STEC infections.

DNA Fingerprinting↗

Statistical evaluation of bacterial source tracking data obtained by rep-PCR DNA fingerprinting of Escherichia coli.

Pattern recognition has been applied to environmental systems for identification of numerous pollution sources including aerosolized lead and petroleum hydrocarbons. In recent years, DNA fingerprinting has gained widespread application as a means to characterize genetic variations for such purposes as microbial source tracking. This approach, however, is strongly dependent on the statistical and image analyses applied. Several statistical analyses of rep-PCR DNA fingerprints were assessed as a means to differentiate between potential sources of fecal contamination. GelCompar II and methods based on penalized discriminant analysis (PDA) and k-nearest neighbors (KNN) classification procedures were used to differentiate between 10 source groups within a library containing DNA fingerprints of 548 Escherichia coli isolates from known human and nonhuman sources. KNN performed significantly better than PDA in a jackknife analysis, though the library was not large enough to detect significant differences between GelCompar II and the other two methods. GelCompar II and KNN both attained > or = 90% correct classification in a holdout procedure. In addition, interpoint distance analyses indicate coherency within source groups, while library randomization demonstrated that KNN does not create artificial groupings. This investigation stresses the need to understand limitations of statistical analyses used in pattern recognition of DNA fingerprints.

DNA Fingerprinting↗

Genomic fingerprinting and genotyping of Helicobacter pylori strains from patients with duodenal ulcer or gastric cancer from different geographic regions.

Continuing attempts have been made to classify pathogenic strains within bacterial populations based on DNA fingerprints and to identify virulence factors in H. pylori. We studied 287 H. pylori isolates from patients with duodenal ulcer or gastric cancer from three different geographic regions. DNA fingerprints were generated using REP-PCR and analyzed by cluster analysis. The status of three candidate virulence factors-vacA polymorphism, cagA and iceA,-were examined by PCR amplification. Cluster analysis of the REP-PCR fingerprints showed clustering by geographic region but not by disease presentation. cagA was detected in 91.3% of the isolates. Differences in vacA subtypes were observed among the three geographic regions. There was no association between iceA subtypes and clinical outcome. We conclude that geographic differences among the H. pylori strains exist in single gene allelic variants as well as in the conserved noncoding regions such as REP sequences throughout the entire bacterial genome. We did not detect any association between disease presentation and H. pylori genotypes using either DNA fingerprinting or candidate single gene virulence factors.

Antigens, Bacterial↗

Multilocus DNA fingerprints in gallinaceous birds: general approach and problems.

Multilocus profiles were investigated in five different species of Galliformes (ring-necked pheasant Phasianus colchicus, Indian peafowl Pavo cristatus, Japanese quail Coturnix coturnix japonica, domestic chicken Gallus gallus, and red grouse Lagopus lagopus scoticus) using two human multilocus probes (33.6 and 33.15) in combination with each of four restriction enzymes (AluI, DdeI, HaeIII or HinfI). All the species show a DNA fingerprint-like pattern using at least one restriction enzyme in combination with each multilocus probe. The number of bands detected and the value of the index of similarity for each species differ significantly between the profiles obtained with each multilocus probe. Some enzyme/probe combinations reveal strong cross-hybridization of the multilocus probes with satellite or satellite-like DNA sequences in pheasant, peacock, quail and chicken, which partially or completely prevented scoring of the profile. The choice of restriction enzyme was found to influence the number of bands, the value of the index of similarity and the probability of obtaining an identical fingerprint between unrelated individuals. The Mendelian inheritance and independent segregation of the fragments detected using AluI was investigated in three species (ring-necked pheasant, Indian peafowl and red grouse). Some bands were shown to be tightly linked. An extreme case was encountered in the red grouse, where 12 of the 15 bands scored in one parent represented only two, apparently allelic, haplotypes and so derived from a single locus. However, fingerprint patterns will often be adequate for use in paternity analyses, such as in behavioural studies, despite the occurrence of haplotypic sets of bands. Identical DNA multilocus profiles were sometimes observed between captive-bred siblings in one species. These results emphasize the desirability of determining, in each new species, the optimal experimental conditions as a preliminary to any behavioural or population genetic studies that use the multilocus DNA fingerprinting methodology.

Animals↗

Genetic relationship in the 'Bacillus cereus group' by rep-PCR fingerprinting and sequencing of a Bacillus anthracis-specific rep-PCR fragment.

AIMS: To evaluate the genetic relationship in the Bacillus cereus group by rep-PCR fingerprinting. METHODS AND RESULTS: A collection of 112 strains of the six species of the B. cereus group was analysed by rep-PCR fingerprinting using the BOX-A1R primer. A relative genetic distinctness was found among the species. Cluster analysis of the rep-PCR patterns showed clusters of B. thuringiensis strains quite separate from those of B. cereus strains. The B. anthracis strains represented an independent lineage in a B. cereus cluster. The B. mycoides, B. pseudomycoides and B. weihenstephanensis strains were clustered into three groups at some distance from the other species. Comparison of sequences of AC-390, a typical B. anthracis rep-PCR fragment, from 27 strains of B. anthracis, B. cereus, B. thuringiensis and B. weihenstephanensis, representative of different clusters identified by rep-PCR fingerprinting, confirmed that B. anthracis diverges from its related species. CONCLUSIONS: The genetic relationship deduced from the rep-PCR patterns indicates a relatively clear separation of the six species, suggesting that they can indeed be considered as separate units. SIGNIFICANCE AND IMPACT OF THE STUDY: rep-PCR fingerprinting can make a contribution in the clarification of the genetic relationships between the species of the B. cereus group.

Bacillus anthracis↗

Increase of genetic variation over time in a recently founded population of great reed warblers (Acrocephalus arundinaceus) revealed by microsatellites and DNA fingerprinting.

Genetic similarity within pairs of individuals was examined using both 10 polymorphic microsatellite loci and multi-locus DNA fingerprinting profiles in a semi-isolated population of great reed warblers at Lake Kvismaren, south Central Sweden, in 1987-1993. The population was founded by a few individuals in 1978, followed by a gradual increase in numbers until 1988, since when the population has remained relatively stable with about 60 breeding birds. We have previously found that high genetic similarity between pair-mates in the population during the early part of the study period reduced egg hatching success, and hence reproductive success. The measures of pairwise genetic similarity, microsatellite allele sharing and DNA fingerprinting band sharing, were highly correlated with pedigree-based relatedness. Both microsatellite and DNA fingerprinting similarities between pair-mates declined significantly over the study period, and the pattern was most pronounced in the DNA fingerprinting data. Analyses restricted to the microsatellite data showed that the average annual microsatellite similarity between pairwise combinations of individuals, as well as individual homozygosity in males, declined significantly over the study period, and that several immigrants carrying novel alleles entered the population during the study. Hence, the temporal decline in genetic similarity of mates in the population is probably a consequence of increased immigration, facilitated by the recent expansion of the species in the region. These results suggest that the population has now recovered genetically, or is in the process of recovering, from a recent founder event.

Animals↗

The gene expression fingerprint of human heart failure.

Multiple pathways are responsible for transducing mechanical and hormonal stimuli into changes in gene expression during heart failure. In this study our goals were (i) to develop a sound statistical method to establish a comprehensive cutoff point for identification of differentially expressed genes, (ii) to identify a gene expression fingerprint for heart failure, (iii) to attempt to distinguish different etiologies of heart failure by their gene expression fingerprint, and (iv) to identify gene clusters that show coordinated up- or down-regulation in human heart failure. We used oligonucleotide microarrays to profile seven nonfailing (NF) and eight failing (F) human hearts with a diagnosis of end-stage dilated cardiomyopathy. Biological and experimental variability of the hybridization data were analyzed, and then a statistical analysis procedure was developed, including Student's t test after log-transformation and Wilcoxon Mann-Whitney test. A comprehensive cutoff point composed of fold change, average difference, and absolute call was then established and validated by TaqMan PCR. Of 6,606 genes on the GeneChip, 103 genes in 10 functional groups were differentially expressed between F and NF hearts. A dendrogram identified a gene expression fingerprint of F and NF hearts and also distinguished two F hearts with distinct etiologies (familial and alcoholic cardiomyopathy, respectively) with different expression patterns. K means clustering also revealed two potentially novel pathways associated with up-regulation of atrial natriuretic factor and brain natriuretic peptide and with increased expression of extracellular matrix proteins. Gene expression fingerprints may be useful indicators of heart failure etiologies.

Adult↗

Evaluation of oligonucleotide probes for simple tandem repeats (STR) to produce informative DNA fingerprints of the chicken.

1. DNA fingerprints of chickens from 2 commercial lines were used to identify oligonucleotide probes providing informative DNA fingerprints. 2. The oligonucleotides [CA]8, [CAC]5, [GGAT]4 and [GACA]4, producing a high number of bands of sufficient intensity and regular distribution, were chosen for further analysis out of 10 tested. 3. Analyses of banding patterns within families revealed Mendelian inheritance of the fragments detected. The DNA fingerprints obtained with the 4 chosen oligonucleotide probes showed about 40 scorable bands in total. 4. Comparison of banding patterns within and between the chicken lines for all 4 oligonucleotide probes revealed levels of bandsharing which did not differ significantly. The number of loci detected by these probes ranged from 25 to 30 each. 5. The probes [CA]8, [CAC]5, [GGAT]4 and [GACA]4 can be used to produce informative DNA fingerprints of chicken. These probes provide estimates of the genetic similarity/variability of individuals or of populations and provide a valid measure of the actual degree of genetic similarity/variability.

Animals↗

Pitfalls in the use of random amplified polymorphic DNA (RAPD) for fingerprinting of gram negative organisms.

Two arbitrary PCR primers for random amplified polymorphic DNA (RAPD) bacterial fingerprinting were used to test factors which may affect RAPD PCR results. These primers have been used in previously published RAPD fingerprinting studies. As expected, the MgCl2 concentration and template concentration in the reaction mixture may affect the RAPD banding patterns. The results obtained were not comparable between runs when using the Hybaid thermal cycler when all other conditions were kept constant. Addition of DMSO, gelatin and repeated subculturing did not appear to affect the banding patterns. A second set of primers directed against known repetitive sequences in Gram negative bacteria (REP1/REP2 and ERIC2) were examined to compare with RAPD as a means of fingerprinting organisms. The reproducibility was excellent. The results suggest RAPD primers can provide some useful comparative information on suspected related strains when tested on the same day and under the same conditions. PCR using REP1/REP2 and ERIC2 primers may provide a more reliable and reproducible alternative method for fingerprinting Gram negative bacteria.

DNA Fingerprinting↗

Molecular typing of Cryptococcus neoformans by PCR fingerprinting, in comparison with serotyping and Fourier transform infrared-spectroscopy-based phenotyping.

Molecular typing by PCR fingerprinting using the single primer (GACA)4 was performed with 110 isolates of Cryptococcus neoformans. Seventy clinical isolates of C. neoformans var. neoformans from Germany (n = 52) and Africa (n = 18) were included. Of these, serotype A (C. neoformans var. grubii) accounted for 47 isolates, serotype D for 12 and serotype AD for 11. Fourier transform infrared (FT-IR) spectroscopy was evaluated for its discriminatory power in phenotyping. Molecular types, defined by different PCR fingerprinting patterns, were compared to serotypes, and both sets of results were compared with the results of analysis by FT-IR spectroscopy. PCR fingerprinting revealed genotypic diversity within each serotype; it showed three different genotypes (designated VNA1-VNA3) within serotype A, two within serotype D (VND1 and VND2), and three within serotype AD (VNAD1-VNAD3). The nomenclature of molecular types within C. n. var. neoformans, as seen in publications to date, is not uniform. In this study, the name assigned to each genotype was based on the 98.6% concordance of genotypes with serotypes, a correspondence that facilitates interlaboratory comparison. This nomenclature is tentatively recommended as a standard. FT-IR spectroscopy combined with hierarchical cluster analysis successfully distinguished C n. var. neoformans from C. n. var. gattii. For C. n. var. neoformans, FT-IR confirmed three distinct genotypes within serotype A and was able to distinguish isolates derived from particular patients as well as isolates differing at the sub-genotype level. Within C. n. var. gattii, the serotypes B and C did not correlate with the four genotypes VGI-VGIV. However, these serotypes could clearly be separated by FT-IR spectroscopy. The molecular profiles were reproducible, and were more stable and more discriminating than serotyping. In connection with a standardized nomenclature, PCR fingerprinting can be a beneficial tool for global epidemiological studies. FT-IR spectroscopy adds an additional level of resolution.

Bacterial Typing Techniques↗