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Structural analysis of physiological degeneration and lysis in the larval tail of anuran tadpoles during metamorphosis compared with human histopathology, especially myopathology.

The metamorphotic degeneration of the larval tail of anuran tadpoles was investigated for tissue-typical aspects and for correspondences or similarities with histopathological findings in human diseases. For this purpose, in ten species the premetamorphotic morphology and metamorphotic degeneration of cells and tissues in the larval tail was examined light- and electron-microscopically. Metamorphotic degeneration and lysis occurs in a tissue-specific manner. Thereby, filaments in notochord- and epidermis-cells as well as in the cross-striated musculature can aggregate to a variety of different "compact bodies". These bodies decompose or are taken up by phagocytizing cells. Collagen fibrils and filaments are completely dissolved. Lysed larval tail tissues are resorbed. During evolution, tissue typical degeneration patterns have developed in anuran tadpoles and, despite systematic differences, these are also recognizable in histopathological findings of human diseases, notably myopathies. Structure analyses of tissue degradation in metamorphosing anuran tadpoles may well be applicable as suitable experimental models for investigating the causes and courses of human diseases.

Animals↗

[Allelic isozymes].

Allelic isozymes or allozymes, are the products of allelic genes of paternal and maternal origin at the same locus. They can be identified by electrophoresis. From the technical easiness of electrophoretic detection, allozymes are used for the identification of individuals in population study. Amino acid and nucleotide sequence analyses of allozymes and their genes have provided a powerful tool for molecular evolutionary genetics and molecular systematics.

Alleles↗

[When to suspect pulmonary embolism in a patient with deep venous thrombosis?].

The approach to take in trying to establish or disprove a diagnosis of pulmonary embolism in the presence of deep vein thrombosis is the subject of some controversy nowadays. Systematic perfusion lung scan can be proposed, given the mediocre specificity of the clinical symptoms of embolism or the high frequency of asymptomatic pulmonary embolism. This strategy, however, is not validated in terms of cost-efficacy. In practical terms, favourable evolution and the low rate of recurrent embolism observed with a well executed anticoagulant treatment pleads against systematic scintigraphy. Because of its moderate sensitivity, systematic echocardiography probably should not be an element of the assessment of asymptomatic pulmonary embolism. The advent of spiral CT scan in the management of such patients could however make it necessary to reconsider this position, by allowing complete venous and pulmonary examination in thrombo-embolic disease.

Echocardiography↗

Molecular evolution and intragenic recombination of the merozoite surface protein MSP-3alpha from the malaria parasite Plasmodium vivax in Thailand.

The merozoite surface antigens of malaria parasites are prime anti-morbidity/mortality vaccine candidates. However, their highly polymorphic nature requires extensive surveys of parasite populations to validate vaccine designs. Previous studies have found 3 molecular types (A, B and C) of the Plasmodium vivax merozoite surface protein 3a (PvMSP-3alpha) among parasite field populations. Here we analysed complete PvMSP-3alpha sequences from 17 clinical P. vivax isolates from Thailand and found that the nucleotide diversity was as high as that from samples widely separated by time and space. The polymorphic sites were not randomly distributed but concentrated in the N-terminal Ala-rich domain (block 2A), which is partially deleted in type B and C sequences. The size variations among type A sequences were due to small indels occurring in block 2A, whereas type B and C sequences were uniform in length with each type having a different large deletion. Analysis of synonymous and non-synonymous substitutions suggested that different selection forces were operating on different regions of the molecule. The numerous recombination sites detected within the Ala-rich domain suggested that intragenic recombination was at least partially responsible for the observed genetic diversity of the PvMSP-3alpha gene. Phylogenetic analysis failed to link any alleles to a specific geographical origin, even when different domains of PvMSP-3alpha were used for analysis. The highly polymorphic nature and lack of geographical clustering of isolates suggest that more systematic investigations of the PvMSP-3alpha gene are needed to explore its evolution and vaccine potential.

Animals↗

Transient evolution of surface roughness on patterned GaAs(001) during homoepitaxial growth.

We have investigated the length scale dependence of the transient evolution of surface roughness during homoepitaxial growth on GaAs(100), patterning the surface lithographically with an array of cylindrical pits of systematically varied sizes and spacings. Our atomic force microscopy measurements show that the amplitude of the surface corrugation has nonmonotonic behavior in both the length scale dependence and time evolution. This behavior allows us to rule out a number of existing continuum models of growth.

Journal Article↗

The evolution of chemoreception in squamate reptiles: a phylogenetic approach.

Recent advances in the field of squamate reptile chemoreception have been paralleled by the growth and preeminence of cladistics in the field of systematics, but for the most part, workers in the former have failed to incorporate the conceptual and informational advances of the latter. In this paper, I attempt a preliminary rapprochement by combining the methods of phylogenetic systematics and current hypotheses of squamate relationships with an overview of squamate chemosensory biology. This purely phylogenetic approach leads to a number of falsifiable generalizations about the evolution of chemoreception in squamates: 1) Evolution of this system is conservative rather than plastic, reflecting to a large extent suprafamilial attributes rather than adaptation to local conditions; 2) Anguimorphs are highly chemosensory and teiids show convergence with this group; 3) Tongue-flicking, a bifurcated tongue tip, a vomeronasal (VNO) mushroom body, and a complete circular muscle system in the tongue are a correlated character complex associated with the attainment, in squamates, of a direct VNO-oral connection and the loss of a VNO-nasal connection; 4) There is little support for a visual-chemosensory dichotomy within Squamata; 5) Gekkotans are allied with Autarchoglossa, both phylogenetically and in terms of chemosensory biology; 6) Iguania are highly variable in chemosensory development; iguanids represent the primitive iguanian condition, while agamids and chamaeleonids have secondarily reduced or lost their chemosensory abilities; 7) Apparent contradictions in chemosensory behavior among iguanids probably represent intrafamilial divergence; 8) Ecological correlates within Iguanidae and other taxa might be spurious, resulting from historical factors unrelated to the adaptations in question; 9) The mechanical demands of lingual food prehension have constrained chemosensory evolution in Iguania; chemosensory evolution within Scleroglossa was permitted by the liberation of the tongue from this ancestral role.

Amphibians↗

Revealing the faunal tapestry: co-evolution and historical biogeography of hosts and parasites in marine systems.

Parasites are integral components of marine ecosystems, a general observation accepted by parasitologists, but often considered of trifling significance to the broader community of zoologists. Parasites, however, represent elegant tools to explore the origins, distribution and maintenance of biodiversity. Among these diverse assemblages, host and geographic ranges described by various helminths are structured and historically constrained by genealogical and ecological associations that can be revealed and evaluated using phylogenetic methodologies within the context of frameworks and hypotheses for co-evolution and historical biogeography. Despite over 200 years of sporadic investigations of helminth systematics, knowledge of parasite faunal diversity in chondrichthyan and osteichthyan fishes, seabirds and marine mammals remains to be distilled into a coherent and comprehensive picture that can be assessed using phylogenetic approaches. Phylogenetic studies among complex host-parasite assemblages that encompass varying temporal and geographic scales are the critical context for elucidating biodiversity and faunal structure, and for identifying historical and contemporary determinants of ecological organization and biogeographic patterns across the marine biosphere. Insights from phylogenetic inference indicate (1) the great age of marine parasite faunas; (2) a significant role for colonization in diversification across a taxonomic continuum at deep and relatively recent temporal scales; and (3) a primary role for allopatric speciation. Integration of ecological and phylogenetic knowledge from the study of parasites is synergistic, contributing substantial insights into the history and maintenance of marine systems.

Animals↗

Evolutionary basis of parallelism in North American scincid lizards.

This study uses a phylogenetic framework to explore the causes of parallelism in two North American scincid lizard assemblages: the skiltonianus and fasciatus species groups of the genus Plestiodon. Each group consists of several closely related species with conserved neonate morphology; features that distinguish species become accentuated during ontogeny, and these differences often resemble different endpoints along a developmental continuum. This continuum is believed to be an expression of the ancestral ontogeny, and has led to the hypothesis that evolutionary change in development has generated much of the observed morphological diversity. However, progress on understanding these mechanisms is limited by a lack of well-supported phylogenetic data for the fasciatus group, and for Plestiodon in general. Recent phylogenetic studies on the skiltonianus group have revealed previously undetected cases of parallelism, and raise the possibility that similar cases have yet to be discovered in the fasciatus group. Here, I estimate a phylogeny to test the monophyly of the fasciatus group and infer its relationship with other North American Plestiodon using 2537 bp from six mtDNA genes. I use the phylogeny to reconstruct the mode (graduated vs. punctuated) and direction of body size evolution, to map the evolution of two predominant color morphs, and to test whether size and color pattern evolve concertedly. The results show that the morphotypes of the traditional fasciatus group constitute good species, but that the species group is rendered paraphyletic by several geographically overlapping species that deviate from the fasciatus-like ontogeny. Body size evolution has occurred gradually and bi-directionally, and shifts to large body size have been consistently associated with the loss of the striped color pattern during ontogeny. I show that parallelism, a lack of rigorous phylogenetic analysis, and a reliance on shared ontogenetic features for predicting phylogenetic relatedness, has misled the traditional systematics of these lizards, but that general ideas concerning the role of development in their morphological evolution remain supported. I close by proposing that the processes influencing repeated phyletic patterns in the skiltonianus and fasciatus groups represent adherence to an ancestral ground state, and discuss the importance of using phylogenies for the initial characterization of evolutionary changes in development.

Animals↗

[Intra-epithelial cancer of the cervix uteri. Epidemiological and therapeutic evolution. Apropos of 207 cases].

Through a retrospective study of 207 CIN III of the cervix uteri, with a medial follow-up of 6 years, the authors are showing the evolution in the management of that pathology. Different reasons are invoked: 1) the practice of systematic Papanicolaou smears reveals dysplasia of the cervix in younger women, justifying treatments that preserve obstetrical future; 2) the histological classification is now well established, the old terminologies is being replaced by the international term of CIN III. 3) the colposcopy can localize the transformation zone, allowing more conservative treatments. The treatment of reference was initially hysterectomy and is now conization for non-menopausal women; but this conservative evolution is not yet finished.

Adult↗

Advances and trends in the molecular systematics of the parasitic Platyhelminthes.

The application of molecular systematics to the parasitic Platyhelminthes (Cestoda, Digenea and Monogenea) over the last decade has advanced our understanding of their interrelationships and evolution substantially. Here we review the current state of play and the early works that led to the molecular-based hypotheses that now predominate in the field; advances in their systematics, taxonomy, classification and phylogeny, as well as trends in species circumscription, molecular targets and analytical methods are discussed for each of the three major parasitic groups. A by-product of this effort has been an ever increasing number of parasitic flatworms characterized genetically, and the useful application of these data to the diagnosis of animal and human pathogens, and to the elucidation of life histories are presented. The final section considers future directions in the field, including taxon sampling, molecular targets of choice, and the current and future utility of mitochondrial and nuclear genomics in systematic study.

Animals↗

On the origin of mitosing cells

A theory of the origin of eukaryotic cells ("higher" cells which divide by classical mitosis) is presented. By hypothesis, three fundamental organelles: the mitochondria, the photosynthetic plastids and the (9+2) basal bodies of flagella were themselves once free-living (prokaryotic) cells. The evolution of photosynthesis under the anaerobic conditions of the early atmosphere to form anaerobic bacteria, photosynthetic bacteria and eventually blue-green algae (and protoplastids) is described. The subsequent evolution of aerobic metabolism in prokaryotes to form aerobic bacteria (protoflagella and protomitochondria) presumably occurred during the transition to the oxidizing atmosphere. Classical mitosis evolved in protozoan-type cells millions of years after the evolution of photosynthesis. A plausible scheme for the origin of classical mitosis in primitive amoeboflagellates is presented. During the course of the evolution of mitosis, photosynthetic plastids (themselves derived from prokaryotes) were symbiotically acquired by some of these protozoans to form the eukaryotic algae and the green plants. The cytological, biochemical and paleontological evidence for this theory is presented, along with suggestions for further possible experimental verification. The implications of this scheme for the systematics of the lower organisms is discussed.

Animals↗

Early evolution and the origin of eukaryotes.

Our understanding of evolutionary relationships in the eukaryotic world has been revolutionized by molecular systematics. Phylogenies based upon comparisons of rRNAs define five major eukaryotic assemblages plus a series of paraphyletic protist lineages. Comparison of conserved genes that were duplicated prior to the divergence of eubacteria, archaebacteria, and eukaryotes, positions the root of the universal tree within the eubacterial line of descent. In this review a novel model is presented which uses the rRNA and protein based phylogenies to describe the evolutionary origins of eukaryotes.

Animal Population Groups↗

Electronic and structural evolution and chemical bonding in ditungsten oxide clusters: W2O(n)- and W2O(n) (n = 1-6).

We report a systematic and comprehensive investigation of the electronic structures and chemical bonding in a series of ditungsten oxide clusters, W2O(n)- and W2O(n) (n = 1-6), using anion photoelectron spectroscopy and density functional theory (DFT) calculations. Well-resolved photoelectron spectra were obtained at several photon energies (2.331, 3.496, 4.661, 6.424, and 7.866 eV), and W 5d-based spectral features were clearly observed and distinguished from O 2p-based features. More complicated spectral features were observed for the oxygen-deficient clusters because of the W 5d electrons. With increasing oxygen content in W2O(n)-, the photoelectron spectra were observed to shift gradually to higher binding energies, accompanied by a decreasing number of W 5d-derived features. A behavior of sequential oxidation as a result of charge transfers from W to O was clearly observed. A large energy gap (2.8 eV) was observed in the spectrum of W2O6-, indicating the high electronic stability of the stoichiometric W2O6 molecule. Extensive DFT calculations were carried out to search for the most stable structures of both the anion and neutral clusters. Time-dependent DFT method was used to compute the vertical detachment energies and compare to the experimental data. Molecular orbitals were used to analyze the chemical bonding in the ditungsten oxide clusters and to elucidate their electronic and structural evolution.

Journal Article↗

[Systematic circumferential (360 degree) decompression treatment of major arthrotic cervical stenosis].

PURPOSE OF THE STUDY: Worsening and irreducible evolution of neural involvement in cervical stenosis requires cord decompression. Different techniques have been proposed. We associated a dual posterior then anterior approach to achieve 360 degrees decompression. We evaluated results on the basis of neurological and mechanical outcome. MATERIAL AND METHODS: Twenty-eight patients, 16 men and 12 women, mean age 60.2 years (range 40-82) underwent surgery between 1989 and 1999 for severe cervical canal stenosis. Patients were referred for neurological symptoms: 20 for radicular symptoms (8 pain, 11 motor deficit, 12 sensitive deficit). Fifteen patients presented myelopathic symptoms. Pyramidal syndrome in 11 and tetraparesia in 3. Neurological involvement was scored according to Nurick (average 1.74) and JOA (average 12.6). Pain was scored on the Robinson scale. Levels to decompress were identified on static and dynamic plain x-rays, CT scans and MRI. Myelography was rarely used (first case only). MRI demonstrated preoperative myelomalacia in 5 patients and syringomyelia in 2. The surgical technique for 360 degrees fusion involved two steps, performed with a 1-week interval for 12 patients and during the same procedure for the others. The first approach was posterior enabling spine fixation with bilateral Roy-Camille plates and decompression by laminectomy using the lobster shell technique. The anterior approach consisted in corpectomy with the Simmons technique (22 cases or multilevel interbody fusion according to Robinson. Iliac bone grafting was used in all but one patient who had a fibular bone graft. Mean follow-up was 18.5 months (6-78). RESULTS: Neurological improvement was 1.74 to 0.92 on the Nurick sclae and from 12.6 to 15.2 on the JOA scale at last follow-up. Fusion was obtained in all cases. There were 2 cases of neurological worsening and one transient dysphagia. Operative bleeding for the two steps was 700 ml (150 ml for the posterior procedure and 400 ml for the anterior procedure). CONCLUSION: 360 degrees arthrodesis for severe cervical canal stenosis provides a satisfactory solution to mechanical problems and substantial neurological improvement. Fusion is regularly obtained without complementary anterior instrumentation. Neurological improvement is correlated with disease duration and the degree of deficit at onset. Anteroposterior decompression and 360 degrees fusion provide cure for all the components of stenotic disease. The dual approach is indicated in severe cases with cord involvement as recognized by myleopathic clinical manifestations and on the MRI.

Adult↗

[Progressive degenerative myoclonic epilepsy. Systematized olivo-cerebellar lesions].

A 15 year-old North-African female showed typical symptoms and evolution of Progressive Myoclonus Epilepsy of the Unverricht type. Pathological examination failed to show either inclusion bodies or any other storage material. The only relevant findings included degenerative changes in the inferior olives and, to a lesser extent, in the cerebellar cortex. The site of lesions was remarkable: in the inferior olives, lesions were bilaterally and symmetrically restricted to the external angles (lateral lamellae); in the cerebellum, loss of Purkinje cells and ascending fibres of the molecular layer was prominent in the lateralmost part of the hemispheres (semilunar lobules). Such a topography implies a system disorder involving the olivo-cerebellar pathway, particularly in that part which projects to the neocerebellum. Twelve other clinico-pathological cases of progressive myoclonus epilepsy of the degenerative group are reviewed. It is suggested that, here again, lesions--although more diffuse--may be related to a primarily olivo-cerebellar involvement.

Adolescent↗

Adaptive Evolution of the PFK Gene Family in Chinese Longsnout Catfish, Leiocassis longirostris.

The Chinese longsnout catfish is a typical carnivorous fish with a relatively weak ability to utilize glucose. However, the genomic basis for its glucose metabolic adaptation remains unclear. In this study, we used comparative genomics methods to systematically analyze the evolutionary characteristics of glucose metabolism-related genes in the Chinese longsnout catfish, focusing on gene family evolution, patterns of expansion and contraction, and selective pressures. The results indicate that glucose metabolism-related genes have undergone significant reshaping during evolution. Genes involved in glucose digestion, absorption, and insulin signaling pathways demonstrate a tendency toward contraction, while those associated with protein and lipid metabolism exhibit expansion. This pattern is consistent with the species' long-term adaptation to a high-protein, high-fat diet. Comparative analysis further revealed that, compared to fish with different dietary habits, certain key genes involved in glycolysis in the Chinese longsnout catfish exhibit a reduction in copy number. Molecular evolutionary analysis showed that key genes involved in glycolysis and gluconeogenesis (including hexokinase 2 (hk2), phosphofructokinase, muscle/platelet (pfkm/p)) exhibit signs of accelerated evolution or positive selection. Notably, the PFK gene family exhibits complex evolutionary characteristics resulting from the combined effects of gene contraction, rapid evolution, and positive selection. In summary, this study reveals the genomic evolutionary basis for the glucose metabolic adaptation of the Chinese longsnout catfish and identifies the PFK gene family as a key candidate for elucidating its unique glucose metabolic characteristics.

Leiocassis longirostris↗

Nurse-initiated thrombolysis: a systematic review of the literature.

This article aims to review, in a systematic manner, the current published evidence base for nurse-initiated thrombolysis. Reasons for this evolution in nursing practice are outlined. Themes emerging from the review are identified. Methodological issues are discussed. This article outlines a conceptual framework for practice evolution. Further research is needed to improve the strength of the evidence base by studies with improved design.

Clinical Competence↗

Evolution of natural populations in the Drosophila melanogaster sigma system II. Northern and central France.

A survey of French natural populations of Drosophila melanogaster has been systematically performed, concerning their status of infection by the sigma virus and the characteristics of viral clones. These investigations, which were not as extensive as those performed in the Languedoc region (Fleuriet et al., 1990) nevertheless give a good representation of the evolution of this system because of the long period involved (almost 20 years). Some trends were observed in all French populations such as (1) a decrease in the high efficiency of transmission by males (which is an important parameter for the viral invading ability); (2) high frequency of a best adapted viral Type. These high frequencies might be due to a recent invasion which is expected to spread to other European populations. However, the frequency of infected flies remained low in northern and central France, unlike in Languedoc. The complexity of this, apparently simple, system of two well-known coevolving organisms should once again be stressed. It is impossible with the known parameters to arrive at a general interpretation of observations made in Languedoc and the rest of France. These data may also throw some light on the structure of French wild populations of D. melanogaster which appear to be subdivided into local populations between which gene flow might be low.

Alleles↗