PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “systematic evolution”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

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

At least 793 records · Page 44Linked to original sources

Quality control follow-up.

In oncology and particularly in radiation therapy, the follow-up indicates the continuing and systematic clinical control of the patient after treatment. This control is aimed at the assessment of the evolution in time of three major aspects: the disease response to treatment (local control, survival), the onset of treatment-induced side-effects; the quality of life as the result of both. The quality of follow-up procedure aimed at the clinical investigations is one of the fundamental elements based on which the efficacy of the used diagnostic and therapeutic procedure is proven.

Continuity of Patient Care↗

Evolution of heteroplasmy at a mitochondrial tandem repeat locus in cultured rabbit cells.

Surveys of animal mitochondrial DNA (mtDNA) polymorphism reveal that mtDNA length variation is common. Much of this variation involves non-coding tandem repeat arrays in the main control region of the molecule. Despite a high mutation rate, generating systematic individual mtDNA length heteroplasmy, the number of repeats in a tandem array is maintained within a narrow range in lagomorphs. To investigate the basis for this apparent paradox, we studied the evolution of mtDNA length polymorphism in several rabbit cell clones containing different proportions of mtDNA, with four or five 153-bp repeats. Our data show that equivalent amounts of two mtDNA molecular types are not stable (evolution towards a predominant type being the rule) and that other types remain represented, maintaining the length polymorphism. The data suggest that mtDNA molecules with a longer array of repeats have a replicative advantage that could depend on the nuclear background.

Animals↗

Molecular evidence for the compilospecies model of reticulate evolution in Armeria (Plumbaginaceae).

Cladistic analyses of the nuclear ribosomal DNA (nrDNA) internal transcribed spacer (ITS) sequences from 55 samples corresponding to 34 taxa in the genus Armeria reveal that ITS sequence diversity among and within species utterly conflicts with patterns of morphological similarity. Three facts are apparent from the results here reported: (1) different samples of a single subspecies, A. villosa subsp. longiaristata, appear in three of the five major clades; (2) samples of at least one of the six subspecies of A. villosa appear in four of the five major clades; and (3) the composition of major clades shows greater congruence with the geographic origin of plants than with the traditional systematic arrangement based primarily on morphology. Specifically, the clades here termed Ia, II, III, and IV each encompass terminals restricted to geographically delimited areas. There are alternative explanations for the ITS pattern, but the most likely one is that nucleotide positions supporting the major clades are due, in some of the samples, to concerted evolution following horizontal transfer (gene flow) rather than to recency of common ancestry. This interpretation is consistent with previous systematic and experimental evidence and implies that reticulation in Armeria may be extensive. Harlan and de Wet (1963, Evolution 17:497-501) proposed the compilospecies concept to account for situations in which a genetically "aggressive" species captures portions of the genome of other sympatric species by means of extensive introgression. Evidence of extensive reticulation, ecological diversification, and geographic pattern indicates that A. villosa may fit the compilospecies concept, which is here supported on molecular grounds for the first time.

Base Sequence↗

Tempo and mode of ERV-K evolution in human and chimpanzee genomes.

Several families of endogenous retrovirus (ERV) exist in copious numbers in the genomes of primate species. Therefore, we undertook a systematic search for endogenous retrovirus sequences from the ERV-K family, comparing across both human (Homo sapiens) and chimpanzee (Pan troglodytes) genomes. Using conserved motifs of the ERV-K as query we identified and characterized 76 complete ERV-K elements, 54 in human (HERV-K), 34 of which were described previously, and 21 in the chimpanzee (CERV-K). Phylogenetic analysis using coding regions and LTRs showed the existence of two main branches. Group I was the most heterogeneous and had an average integration time of 18.3 MYBP (million years before present), using rates ranging from 1.5 to 4.0 x 10(-9) s/s/y (substitution per site per year). Group O/N integrated around 19.4 MYBP and nested Group N integrated about 14 MYBP. We found evidence for strong positive selection on the gag, pol and env coding regions and for A/T hypermutation. Our data suggest that the endogenous elements were possibly involved in chromosomal rearrangements and retained a great deal of information from their active stage, most likely as a consequence of host interactions. This study also contributes to the annotation effort of both human and chimpanzee genomes.

Animals↗

RNA editing in bryophytes and a molecular phylogeny of land plants.

RNA editing has been observed to date in all groups of vascular plants, but not in bryophytes. Its occurrence was therefore assumed to correlate with the evolution of tracheophytes. To gain more insight into both the phylogeny of early land plants and the evolution of mitochondrial RNA editing we have investigated a number of vascular and non-vascular plant species. Contrary to the belief that editing is absent from bryophytes, here we report mitochondrial RNA editing in cox3 mRNA of the liverwort Pellia epiphylla, the mosses Tetraphis pellucida and Ceratodon purpureus and the hornwort Anthroceros crispulus. RNA editing in plants consequently predates the evolution of tracheophytes. Editing is also found in the eusporangiate ferns Ophioglossum petiolatum and Angiopteris palmiformis, the whisk fern Tmesipteris elongata and the gnetopsid Ephedra gerardiana, but was not detected in Gnetum gnemon.cox3 mRNA of the lycopsid Isoetes lacustris shows the highest frequency of RNA editing ever observed in a plant, with 39% of all cytidine residues converted to uridines. The frequency of RNA editing correlates with the genomic GC content rather than with the phylogenetic position of a species. Phylogenetic trees derived from the slowly evolving mitochondrial sequences find external support from the assessments of classical systematics.

Base Sequence↗

A probabilistic model for the evolution of RNA structure.

BACKGROUND: For the purposes of finding and aligning noncoding RNA gene- and cis-regulatory elements in multiple-genome datasets, it is useful to be able to derive multi-sequence stochastic grammars (and hence multiple alignment algorithms) systematically, starting from hypotheses about the various kinds of random mutation event and their rates. RESULTS: Here, we consider a highly simplified evolutionary model for RNA, called "The TKF91 Structure Tree" (following Thorne, Kishino and Felsenstein's 1991 model of sequence evolution with indels), which we have implemented for pairwise alignment as proof of principle for such an approach. The model, its strengths and its weaknesses are discussed with reference to four examples of functional ncRNA sequences: a riboswitch (guanine), a zipcode (nanos), a splicing factor (U4) and a ribozyme (RNase P). As shown by our visualisations of posterior probability matrices, the selected examples illustrate three different signatures of natural selection that are highly characteristic of ncRNA: (i) co-ordinated basepair substitutions, (ii) co-ordinated basepair indels and (iii) whole-stem indels. CONCLUSIONS: Although all three types of mutation "event" are built into our model, events of type (i) and (ii) are found to be better modeled than events of type (iii). Nevertheless, we hypothesise from the model's performance on pairwise alignments that it would form an adequate basis for a prototype multiple alignment and genefinding tool.

Evolution, Molecular↗

Evolution and applications of genome-scale metabolic models in yeast systems biology studies.

Genome-scale metabolic models (GEMs) can be used to simulate the metabolic network of an organism in a systematic and holistic way. Different yeast species, including Saccharomyces cerevisiae, have emerged as powerful cell factories for bioproduction. Recently, with the dedicated efforts from the scientific community, significant progress has been made in the development of yeast GEMs. Numerous versions of yeast GEMs and the derived multiscale models have been released, facilitating integrative omics analysis and rational strain design for different types of yeast cell factories. These advancements reflected the evolution and maturation of yeast GEMs together with a model ecosystem around them. This review will summarize the development and expansion of yeast GEMs and discuss their applications in yeast systems biology studies. It is anticipated that yeast GEMs will continue to play an increasingly important role in pioneering yeast physiological and metabolic studies in coming years.

Systems Biology↗

Some effects of nutritional components on the morphology of BCG colonies.

Under appropriate conditions of growth colonies showing fine wrinkling (rugosity) of their surface and characteristic of certain BCG strains can be distinguished from colonies with a smoother non-rugose morphology that are characteristic of some other BCG strains. This study has been concerned with the influence of nutritional and other media constituents on the evolution of these colonies. In a preliminary investigation nutritional components such as enzymic digest of casein, asparagine and salts were systematically eliminated from an agar medium, separately and together, and in the presence or absence of glycerol. From this and supplementary experiments, it appeared that the nutritional element with most effect on the size and morphology of colonies is the carbohydrate. Small inocula of BCG will normally grow on simple agar media only in the presence of enrichments such as blood or albumin, or if charcoal has been added. However, in a second investigation it was found that individual colonies would develop from such inocula placed 2 cm or more away from a concentrated inoculum that had been seeded onto the medium approximately 7-14 days earlier. It appears that a diffusible agent is produced from multiplying bacilli within a colony which counteracts toxic factors in the medium and may also assist nutrition within the colony. To examine the effects of carbohydrate on the evolution of colonies, in a third investigation glycerol was added in increasing quantities to an agar medium enriched with increasing quantities of bovine albumin and/or 5% of blood, and suspensions of French (Pasteur) and British (Glaxo) BCG vaccines were seeded onto it. Individual colonies cultured from these two strains have a rugose and non-rugose morphology respectively, and to highlight the effects in question, the evolution over a prolonged period of concentrated 'drop-colonies' seeded onto the medium from each strain was studied. There was a very marked difference between the two strains in the evolution of such 'drop-colonies', and it appeared that the lateral spread of fine rugosity from those of the Pasteur strain represented an enhanced ability of small numbers of bacilli to take up the nutrient.

Animals↗

Magnetic resonance techniques to monitor the long term evolution of multiple sclerosis pathology and to monitor definitive clinical trials.

Magnetic resonance has provided a literal window on the brain to visualise the actual pathology of MS as it evolves in the living patient. Natural history studies disclosed that MRI visualised pathological activity was seen at 5 to 10x the rate of clinical relapses. Utilising that knowledge, systematic MRI monitoring has been used to supplement clinical monitoring to show the treatment effect in several clinical trials. This chapter explains how MR techniques can be used to further explore the evolution of in vivo pathology both in clinical trials and natural history studies.

Axons↗

Myo-anatomy of juvenile and adult loxosomatid Entoprocta and the use of muscular body plans for phylogenetic inferences.

The anatomy of the muscle bauplan in juvenile buds and adult specimens of the solitary loxosomatid entoprocts Loxosoma nielseni and L. annelidicola was studied by means of fluorescence staining of F-actin and confocal laser scanning microscopy. Although the general myo-anatomy of the body wall shows numerous similarities, both species express significant variations in the arrangement of their pedal muscles. In addition, L. annelidicola alone shows a distinct pair of rectum retractor muscles. Circular muscles are absent in the entire body wall of both species, as well as in previously investigated colonial taxa, which is therefore regarded as basal for Entoprocta. This is in striking contrast to the conditions found in other spiralian or lophotrochozoan taxa. The simple morphology of entoproct tentacle muscles, however, coincides with the phoronid-ectoproct condition and may be due to functional constraints of a simple filter-feeding system. This work shows that variations in the muscular anatomy provide useful characters for systematic analyses on species as well as phylum level and thus allow significant insight regarding metazoan body plan evolution. The phenomenon of phenotypic plasticity and its consequences for phylogenetic interpretations, however, must be carefully considered.

Actins↗

Perioperative medical management and outcome following thymectomy for myasthenia gravis.

PURPOSE: To describe the evolution of the perioperative management of myasthenia gravis (MG) patients undergoing thymectomy and to question the need for systematic postoperative ventilation. CLINICAL FEATURES: We collected data retrospectively from 36 consecutive MG patients who underwent thymectomy over a 21-yr period, via transthoracic, -cervical or -sternal incisions (n=5, n=7, n=24, respectively). From 1980 to 1993, a balanced anesthetic technique (n=24) included various inhalational agents with opiates and myorelaxants (in eight cases); 22 patients were admitted to the intensive care unit (ICU). Since 1994, i.v. propofol was combined with epidural bupivacaine and sufentanil (n=12); all patients were admitted to the postanesthesia care unit. Short-term postoperative ventilation (median time four hours, range from three to 48 hr) was required in eight patients who had longer hospital stay (median stay=12 days, range (8-28) vs five days (4-15) for patients with early extubation, P <0.05) but similar clinical improvement six months after thymectomy. Postoperative ventilatory support was required more frequently when a balanced anesthetic technique was used (odds ratio=4.2 (1.1-9.7), P=0.03) and particularly when myorelaxants were given (odds ratio=13.9 (2.1-89.8), P=0.009). Leventhal's scoring system had low sensitivity (22.2%) and positive predictive values (25%). CONCLUSIONS: Our data show that the severity of MG failed to predict the need for postoperative ventilation. A combined anesthetic technique was a safe and cost-effective alternative to balanced anesthesia as it provided optimal operating conditions and resulted in fewer admissions in ICU and shorter hospital stays.

Adolescent↗

Phylogenetic utility of rapidly evolving DNA at high taxonomical levels: contrasting matK, trnT-F, and rbcL in basal angiosperms.

The prevailing view in molecular systematics is that relationships among distantly related taxa should be inferred using DNA segments with low rates of evolution. However, recent analyses of sequences from the rapidly evolving matK and trnT-trnF regions yielded well resolved and highly supported trees for early diverging angiosperms. We compare here the phylogenetic structure in matK, trnT-F, and rbcL datasets for the same 42, primarily basal angiosperm taxa. Phylogenetic trees based on matK or trnT-F are far more robust than those based on rbcL. Combined analysis of the rapidly evolving regions provides support for higher-level relationships stronger than that derived from analyses of multi-gene datasets of up to several fold the number of characters analyzed here. In addition to displaying a higher percentage of parsimony-informative characters, the average phylogenetic signal per informative character is significantly higher in the datasets from rapidly evolving DNA than in the more slowly evolving rbcL, as detected using resampling of identical numbers of parsimony-informative characters from the data matrices and subjecting different statistics for overall tree robustness and phylogenetic signal to significance tests. Automated via a set of scripts, the method used here should be easily extendable to comparisons of a broader range of genomic regions for varying taxon samplings. The relative performance of markers correlates not only with a lower mean homoplasy in matK and trnT-trnF compared to rbcL, but in particular correlates negatively with the percentage of sites exhibiting maximum or close to maximum homoplasy. A likelihood ratio test confirms that the rapidly evolving gene matK evolves significantly closer to neutrality, which may be one of the underlying factors for lower levels of overall homoplasy. Our results are in line with evidence from simulation studies suggesting that the deleterious effect of multiple hits in using rapidly evolving DNA at rather deep phylogenetic levels may have been overestimated, and thus promote extending the use of rapidly evolving DNA to deeper phylogenetic levels.

Codon↗

Can deleterious mutations explain the time dependency of molecular rate estimates?

It has recently been observed by Ho et al. (Ho SYW, Phillips MJ, Cooper A, Drummond AJ. 2005. Time dependency of molecular rate estimates and systematic overestimation of recent divergence times. Mol Biol Evol. 22(7):1561-1568) that apparent rates of molecular evolution increase when measured over short timespans. I investigate whether the data are explainable purely by deleterious mutations. I derive an empirical approximation for the persistence of these mutations in a randomly mating population and, hence, derive lower limits on effective population sizes. These limits are high and get higher if additional reasonable assumptions are made. This casts doubt on whether deleterious mutations are able to explain the apparent rate acceleration.

Animals↗

Segmental duplications containing tandem repeated genes encoding putative deubiquitinating enzymes.

Both inter- and intra-chromosomal segmental duplications are known occurred in human genome during evolution. Few cases of such segments involving functional genes have been reported. While searching for the human orthologs of murine hematopoietic deubiquitinating enzymes (DUBs), we identified four clusters of DUB-like genes on chromosome 4p15 and chromosome 8p22-23 that are over 90% identical to each other at the DNA level. These genes are expressed in a cell type- and activation-specific manner, with different clusters possessing potentially distinct expression profiles. Examining the surrounding sequences of these gene duplication events, we have identified previously unreported conserved sequence elements that are as large as 35 to 74 kb encircling the gene clusters. Traces of these elements are also found on chromosome 12p13 and chromosome 11q13. The coding and immediate upstream sequences for DUB-like genes as well as the surrounding conserved elements, are present in the chimpanzee trace database, but not in rodent genome. We hypothesize that the segments containing these DUB clusters and surrounding elements arose relatively recently in evolution through inter- and intra-chromosomal duplicative transpositions, following the divergence of primates and rodents. Genome wide systematical search of the segmental duplication containing duplicated gene cluster has been performed.

Animals↗

A cross species comparison of metabolic network functions.

We compare a large number of organisms with respect to their metabolic network functions. We measure such functions in terms of the synthesizing capacity of a network when it is provided with a few small chemical substances as external resources. We call this measure the scope and show that it is generally robust against structural alterations of the reaction network. Organisms can be separated into two groups, one with a small and one with a large scope. Networks with a high synthesizing capacity also show a high degree of robustness against structural changes, indicating that this network function has been a target in the evolutionary past of the corresponding organisms. A comparison between structural and functional similarities reveals that organisms with a similar structure do not necessarily show similar biological functions. The presented concepts allow for a systematic investigation of structure-function relationships of metabolic networks and may put forth valuable hints on the evolution of metabolic pathways.

Algorithms↗

Contacts with a Canadian "street level" drug and crisis centre, 1972-76.

The Calgary Distress Centre/Drug Centre is a "street level" agency that deals with both drug and non-drug related crises. Telephone and drop-in service is available 24 hours a day, seven days a week. The Centre has approximately 60 non-professional volunteers and a paid staff of six. Data about crisis information and counselling contacts over the period 1972-76 are presented and discussed. The Distress Centre/Drug Centre is perhaps a useful model on which to base other crisis intervention facilities. Furthermore, the systematic compilation of data regarding contacts with the agency provides significant insight regarding trends in drug use and evolution of the agency.

Canada↗