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Evolution of cyanobacteria by exchange of genetic material among phyletically related strains.

The cyanobacterial radiation consists of several lineages of phyletically (morphologically and genetically) related organisms. Several of these organisms show a striking resemblance to fossil counterparts. To investigate the molecular mechanisms responsible for stabilizing or homogenizing cyanobacterial characters, we compared the evolutionary rates and phylogenetic origins of the small-subunit rRNA-encoding DNA (16S rDNA), the conserved gene rbcL (encoding D-ribulose 1,5-bisphosphate carboxylase-oxygenase large subunit), and the less conserved gene rbcX. This survey includes four categories of phyletically related organisms: 16 strains of Microcystis, 6 strains of Tychonema, 10 strains of Planktothrix, and 12 strains of Nostoc. Both rbcL and rbcX can be regarded as neutrally evolving genes, with 95 to 100% and 50 to 80% synonymous nucleotide substitutions, respectively. There is generally low sequence divergence within the Microcystis, Tychonema, and Planktothrix categories both for rbcLX and 16S rDNA. The Nostoc category, on the other hand, consists of three genetically clustered lineages for these loci. The 16S rDNA and rbcLX phylogenies are not congruent for strains within the clustered groups. Furthermore, analysis of the phyletic structure for rbcLX indicates recombinational events between the informative sites within this locus. Thus, our results are best explained by a model involving both intergenic and intragenic recombinations. This evolutionary model explains the DNA sequence clustering for the modern species as a result of sequence homogenization (concerted evolution) caused by exchange of genetic material for neutrally evolving genes. The morphological clustering, on the other hand, is explained by structural and functional stability of these characters. We also suggest that exchange of genetic material for neutrally evolving genes may explain the apparent stability of cyanobacterial morphological characters, perhaps over billions of years.

Base Sequence↗

Inheritance of the morphological differences between maize and teosinte: comparison of results for two F2 populations.

Molecular marker loci (MMLs) were employed to map quantitative trait loci (QTLs) in an F2 population derived from a cross of maize (Zea mays ssp. mays) and its probable progenitor, teosinte (Z. mays ssp. parviglumis). A total of 50 significant associations (putative QTLs) between the MMLs and nine key traits that distinguish maize and teosinte were identified. Results from this analysis are compared with our previous analysis of an F2 population derived from a cross of a different variety of maize and another subspecies of teosinte (Z. mays ssp. mexicana). For traits that measure the architectural differences between maize and teosinte, the two F2 populations possessed similar suites of QTLs. For traits that measure components of yield, substantially different suites of QTLs were identified in the two populations. QTLs that control about 20% or more of the phenotypic variance for a trait in one population were detected in the other population 81% of the time, while QTLs that control less than 10% of the variance in one population were detected in the other population only 28% of the time. In our previously published analysis of the maize x ssp. mexicana population, we identified five regions of the genome that control most of the key morphological differences between maize and teosinte. These same five regions also control most of the differences in the maize x ssp. parviglumis population. Results from both populations support the hypothesis that a relatively small number of loci with large effects were involved in the early evolution of the key traits that distinguish maize and teosinte. It is suggested that loci with large effects on morphology may not be a specific feature of crop evolution, but rather a common phenomenon in plant evolution whenever a species invades a new niche with reduced competition.

Chromosome Mapping↗

[Evolution of the allantoid placenta in placental mammals].

The article surveys the literature concerning comparative morphology of allantoic placenta and presents some evolutionary-morphological conclusions. The initial form of allantoic placenta is non-deciduate that occurs in 7 orders of placental mammals. The non-deciduate placenta is especially characteristic for lower primates and Cetacea. The non-deciduate placenta in lower primates and the fact that in some modern species of insectivores the non-deciduate placenta is also preserved speaks in favour of the opinion that insectivores of the Cretaceous period had non-deciduate placenta. The non-deciduate placenta in Cetacea that take their origin from ancient carnivores (from procreodonts) demonstrates, in its turn, that the non-deciduate placenta was the initial form. The deciduate placenta was the means for changing many of vital activities of the organism--it is connected with shortening or lengthening of individual life duration and duration of pregnancy. In the course of evolution the allantoic placenta improved towards intensified metabolism between the embryo (fetus) and the maternal organism. Relations between the evolution of mature specimens and evolutional changes in placenta are at their initial stage of investigation.

Adaptation, Biological↗

[Lupus glomerulonephritis. Study of 21 cases: clinico-morphological correlations].

The authors report their experience, based on 21 cases, on lupus glomerulonephritis with clinic-morphological correlation and follow-up. They classified renal biopsies utilizing WHO classification and applying a numerical score system proposed by Austin. This system considers the morphological characters referable to duration (chronicity index: C.I.) and activity (activity index: A.I.) of renal disease. Histological data have been connected with clinical evolution of renal disease. Patients have been followed for periods varying from 8 months to 8 years. From data obtained we can see that there is not a constant relation between a high chronicity index or activity index and unfavorable evolution of disease. Besides the authors report a revision of literature considering the possibility of connection between morphological data and the prognosis of lupus glomerulonephritis. They refer contrasting judgements about this.

Biopsy↗

[To some aspects of iris morphology in vertebrates (author's transl)].

The multiplicity of colorations and patterns in the irides as well as the pupillary polymorphism in vertebrates are impressing. They show the iris as an ocular part especially inclined to evolutional modifications. Species from different classes of vertebrates not uncommonly show very similar characteristics of iris morphology provided their mode of life is comparable with regard to relevant factors. On the other hand there exist many examples of very differing iris characteristics in spite of seemingly well corresponding habits of life. These cases often enough pose problems concerning the biological value of a specific variant form. They point however to a multifactorial conditioning of these phenotypic characteristics indicating simultaneously possibilities to create identical effectivities by differing means.

Amphibians↗

[Comparative genetics and evolutionary morphology of symbiosis formed by plants with nitrogen-fixing microbes and endomycorrhizal fungi].

Results of comparative morphological and genetic analyses are described for two major plant-microbe endosymbioses: N2-fixing nodules (with rhizobia or actinomycetes Frankia) and arbuscular mycorrhiza (with Glomales fungi). Development from the primordia formed de novo in root tissues is common for all known types of N2-fixing nodules. However, their structure varies greatly with respect to: (i) tissue topology (location of vascular bundles is peripheral in legumes but central in non-legumes); (ii) position of nodule primordium (inner or outer cortex in legumes, whereas pericycle in non-legumes); (iii) stability of apical meristem (persistent in the indeterminate nodules, transient in the determinate ones). In addition, legumes vary in ability to form compartments harboring endosymbiotic rhizobia that can be located intercellularly (infection threads) and intracellularly (symbiosomes). Using pea (Pisum sativum) symbiotic mutants, the nodule developmental program is dissected into a range of spatially and temporarily differentiated steps composing four sub-programs (development of endosymbiotic compartments; nodule histogenesis; autoregulation of nodulation; bacteroid differentiation). The developmental mutations are suggested in some cases to reverse the endosymbiotic system into the morphologically simpler forms some of which may correspond to the ancestral stages of nodule evolution. Origination of legume-rhizobial and actinorhizal symbioses is suggested to be based on a set of preadaptations many of which had been evolved in angiosperms during coevolution with arbuscular mycorrhizal fungi (e.g. inter- and intracellular maintenance of symbionts, their control via defence-like reactions and recognition of chitin-like molecules). Analysis of parallel morphological variation in symbiotic mutants and wild-growing legume species enables us to reconstruct the major stages of evolution for N2-fixing symbioses. This evolution proceeded to a sufficient degree independently from the basic physiological function of nodules (symbiotic N2-fixation) and possibly a recruiting of plant genes that initially fulfilled various "non-symbiotic" functions into the genetic networks monitoring plant-microbe interactions.

Bacterial Physiological Phenomena↗

The energy costs of sexual dimorphism in mole-rats are morphological not behavioural.

Different reproductive strategies of males and females may lead to the evolution of differences in their energetic costs of reproduction, overall energetic requirements and physiological performances. Sexual dimorphism is often associated with costly behaviours (e.g. large males might have a competitive advantage in fighting, which is energetically expensive). However, few studies of mammals have directly compared the energy costs of reproductive activities between sexes. We compared the daily energy expenditure (DEE) and resting metabolic rate (RMR) of males and females of two species of mole-rat, Bathyergus janetta and Georychus capensis (the former is sexually dimorphic in body size and the latter is not) during a period of intense digging when males seek females. We hypothesized that large body size might be indicative of greater digging or fighting capabilities, and hence greater mass-independent DEE values in males of the sexually dimorphic species. In contrast to this prediction, although absolute values of DEE were greater in B. janetta males, mass-independent values were not. No differences were apparent between sexes in G. capensis. By comparison, although RMR values were greater in B. janetta than G. capensis, no differences were apparent between the sexes for either species. The energy cost of dimorphism is most likely to be the cost of maintenance of a large body size, and not the cost of behaviours performed when an individual is large.

Animals↗

[Further evolution and leukocyte differential using an automated blood cell counter].

In the leukocyte differential, morphological differential has been usually performed with chromatoaffinity of blood cells, but physical differential is recently performed with biophysicochemical characteristics of blood cells using an automated blood cell counter. The trend of the leukocyte differential has changed to physical differential (automated count method) from morphological differential (eye count method). In the automated count method, leukocytes are differentiated into neutrophils, lymphocytes, monocytes, eosinophils and basophils according to the predetermined region of each leukocyte population on the cytogram using an automated blood cell counter. An automated count method is very useful for the screening test in the laboratory because of its high precision and accuracy for the normal samples. However, it is not easy to identify abnormal cells such as leukemia cells by an automated count method. Therefore, an automated count method dealing with various suspect flags generated using an automated blood cell counter must be used for such abnormal samples. In case of absolutely few leukemia cells in the peripheral blood during complete remission, the automated count method can not detect a leukemia cell and no suspect WBC flags are recognized by the automated blood cell counter. Development of an automated blood cell counter with a higher efficiency than now and a standard automated count method is awaited in the clinical laboratory.

Automation↗

Intrasexual selection predicts the evolution of signal complexity in lizards.

Sexual selection has often been invoked in explaining extravagant morphological and behavioural adaptations that function to increase mating success. Much is known about the effects of intersexual selection, which operates through female mate choice, in shaping animal signals. The role of intrasexual selection has been less clear. We report on the first evidence for the coevolution of signal complexity and sexual size dimorphism (SSD), which is characteristically produced by high levels of male male competition. We used two complementary comparative methods in order to reveal that the use of complex signals is associated with SSD in extant species and that historical increases in complexity have occurred in regions of a phylogenetic tree characterized by high levels of pre-existing size dimorphism. We suggest that signal complexity has evolved in order to improve opponent assessment under conditions of high male male competition. Our findings suggest that intrasexual selection may play an important and previously underestimated role in the evolution of communicative systems.

Animal Communication↗

Trends in the evolution of the euglenid pellicle.

Trends in the evolution of the euglenid pellicle were described using phylogenetic methods on 18S rDNA, morphological, and combined data from 25 mostly phototrophic taxa. The tree topology from a total-evidence analysis formed a template for a synthetic tree that took into account conflicting results derived from the partitioned datasets. Pellicle character states that can only be observed with the assistance of transmission and scanning electron microscopy were phylogenetically mapped onto the synthetic tree to test a set of previously established homology statements (inferences made independently from a cladogram). The results permitted us to more confidently infer the ancestral-derived polarities of character state transformations and provided a framework for understanding the key cytoskeletal innovations associated with the evolution of phototrophic euglenids. We specifically addressed the character evolution of (1) the maximum number of pellicle strips around the cell periphery; (2) the patterns of terminating strips near the cell posterior end; (3) the substructural morphology of pellicle strips; (4) the morphology of the cell posterior tip; and (5) patterns of pellicle pores on the cell surface.

Animals↗

Functional analyses of tiptop and antennapedia in the embryonic development of Oncopeltus fasciatus suggests an evolutionary pathway from ground state to insect legs.

In insects, selector genes are thought to modify the development of a default, or 'ground state', appendage into a tagma-specific appendage such as a mouthpart, antenna or leg. In the best described example, Drosophila melanogaster, the primary determination of leg identity is thought to result from regulatory interactions between the Hox genes and the antennal-specifying gene homothorax. Based on RNA-interference, a functional analysis of the selector gene tiptop and the Hox gene Antennapedia in Oncopeltus fasciatus embryogenesis is presented. It is shown that, in O. fasciatus, tiptop is required for the segmentation of distal leg segments and is required to specify the identity of the leg. The distal portions of legs with reduced tiptop develop like antennae. Thus, tiptop can act as a regulatory switch that chooses between antennal and leg identity. By contrast, Antennapedia does not act as a switch between leg and antennal identity. This observation suggests a significant difference in the mechanism of leg specification between O. fasciatus and D. melanogaster. These observations also suggest a significant plasticity in the mechanism of leg specification during insect evolution that is greater than would have been expected based on strictly morphological or molecular comparisons. Finally, it is proposed that a tiptop-like activity is a likely component of an ancestral leg specification mechanism. Incorporating a tiptop-like activity into a model of the leg-specification mechanism explains several mutant phenotypes, previously described in D. melanogaster, and suggests a mechanism for the evolution of legs from a ground state.

Animals↗

Effects of revascularization after first acute myocardial infarction on the evolution of QRS complex changes (the DANAMI trial). DANish Trial in Acute Myocardial Infarction.

The changes in QRS complex morphology associated with acute myocardial infarction (AMI) can resolve spontaneously over time. Whether complete revascularization of the infarct-related myocardial territory after AMI affects this QRS resolution has not been studied adequately. The present study compares the evolution of the changes in the QRS complex associated with AMI during 1-year follow-up in patients treated with or without revascularization after their first thrombolyzed AMI. The study is a substudy of the DANish Trial in Acute Myocardial Infarction (DANAMI) (n = 1,008) that randomized patients with inducible ischemia after their first AMI, treated with intravenous thrombolytic therapy, to conservative treatment or coronary angiography followed by the appropriate revascularization strategy. A total of 817 patients had complete sets of evaluable electrocardiograms. Electrocardiograms were obtained at randomization, and at 3, 6, and 12 months of follow-up and subjected to blinded core-laboratory evaluation according to the Selvester QRS scoring method. This score considers Q-, R-, and S-wave duration and ratios to provide a semiquantitative estimate of AMI size. The median electrocardiographic estimated infarct size in the entire population was 15% of the left ventricle at randomization. At the end of the follow-up period this estimate had decreased to 12% (p < 0.00001). There was no difference in the rate of QRS resolution whether the patients were subgrouped according to randomization or subgrouped according to actual treatment with or without revascularization. The present study confirms the findings from previous studies conducted in the prethrombolytic era, that considerable normalization of the QRS complex also occurs after AMI treated with thrombolytic therapy. This QRS normalization seems unaffected by an aggressive treatment strategy with revascularization via balloon angioplasty or bypass surgery.

Adult↗

Convergent evolution of Darwin's finches caused by introgressive hybridization and selection.

Between 1973 and 2003 mean morphological features of the cactus finch, Geospiza scandens, and the medium ground finch, G. fortis, populations on the Galápagos island of Daphne Major were subject to fluctuating directional selection. An increase in bluntness or robustness in the beak of G. scandens after 1990 can only partly be explained by selection. We use 16 microsatellite loci to test predictions of the previously proposed hypothesis that introgressive hybridization contributed to the trend, resulting in genes flowing predominantly from G. fortis to G. scandens. To identify F1 hybrids and backcrosses we use pedigrees where known, supplemented by the results of assignment tests based on 14 autosomal loci when parents were not known. We analyze changes in morphology and allelic composition in the two populations over a period of 15-20 years. With samples that included F1 hybrids and backcrosses, the G. scandens population became more similar to the G. fortis population both genetically and morphologically. Gene flow between species was estimated to be three times greater from G. fortis to G. scandens than in the opposite direction, resulting in a 20% reduction in the genetic difference between the species. Nevertheless, removing identified F1 hybrids and backcrosses from the total sample and reanalyzing the traits did not eliminate the convergence. The two species also converged in beak shape by 22.2% and in body size by 45.5%. A combination of introgressive hybridization and selection jointly provide the best explanation of convergence in morphology and genetic constitution under the changed ecological conditions following a major El Niño event in 1983. The study illustrates how species without postmating barriers to gene exchange can alternate between convergence and divergence when environmental conditions oscillate.

Animals↗

[Is in depth diagnosis important in renal artery stenosis?].

The experimental discovery of the pathophysiological relationship between renal artery stenosis and arterial hypertension was historically reported (1934) before the clinical description of the disease in human patients (1950). The experimental model explains the relation between renal ischemia, renal endocrine activation, and morphological alterations of the homo and contralateral kidneys. In particular, the experimental model improves the understanding of the evolution of renovascular disease. In human patients, renal artery stenosis does not always lead to clinical disease. Because of the frequency of arterial hypertension, there is not always a clear relationship between hypertension and renal insufficiency or renal artery stenosis. Therefore a complete diagnosis of renal endocrine and exocrine function is needed to understand this relation before deciding on the therapeutic approach. This diagnosis is made by exploration of the renal renin-angiotensin axis, its pharmacological blockade and the response of the excretory function. This approach corresponds to the clinical description of the evolution of the disease; the peripheral and renal vein renin assays; the pressure and scintigraphic response to converting enzyme inhibition and renal morphological definition by echography and CT scan. This pathological approach permits a rational choice of the therapeutic indication: non-intervention, specific medical treatment, endovascular or surgical revascularization or nephrectomy.

Animals↗

[On the methodology of morphology and levels of morphologic analysis].

Unjustified narrowing of the problems of morphology by merging the terms "morphology" and "anatomy" leads to stagnation in morphology. The merging of "classic" and "modern" biology will enrich both morphology and molecular biology and genetics. The latter will be able apply conceptual models of morphology to more primitive structural level of life. The possibility to apply V. A. Dogel' 's ideas on the role of oligomerization and polymerization in science to the analysis of molecular evolution has been demonstrated with the analysis of DNA content in the genomes of Chordata taken as an example. The data on DNA content do not allow both to consider lungfishes as ancestors of all Tetrapoda and develop monophyletic concept of Tetrapoda origin at the same time. The possibility of application of concepts of comparative morphology to analysis of molecular evolution has been considered.

Anatomy↗

Developmental functions of mammalian Hox genes.

The structure of the four murine Hox complexes and the co-ordinate expression patterns of Hox genes have been elucidated for almost a decade. However, clues about their developmental functions have been recently uncovered from the analysis of loss-of-function mutants generated by the gene targeting technique, as well as from transgenic mice with altered Hox gene expression domains. The 'anterior' Hox genes control the morphogenetic programme of specific hindbrain segments (rhombomeres) or pharyngeal arch neural crest derivatives. Various studies indicate that Hox gene products act in a region-specific, combinatorial and partly redundant manner to specify the identities of developing vertebrae. In addition, 'posterior' HoxA and HoxD genes act coordinately to control the growth and morphogenesis of skeletal structures along the proximodistal axis of developing limbs. Studies in other vertebrate model systems suggest that the evolution of Hox gene functions has allowed for the acquisition of specific morphological features along both the vertebral column and limbs of tetrapods. Gene targeting studies have also revealed region-specific functions of Hox genes along the developing digestive and genito-urinary tracts.

Animals↗

Evolution of Tc-99m in diagnostic radiopharmaceuticals.

The progress in diagnostic nuclear medicine over the years since the discovery of 99mTc is indeed phenomenal. Over 80% of the radiopharmaceuticals currently being used make use of this short-lived, metastable radionuclide, which has reigned as the workhorse of diagnostic nuclear medicine. The preeminence of 99mTc is attributable to its optimal nuclear properties of a short half-life and a gamma photon emission of 140 keV, which is suitable for high-efficiency detection and which results in low radiation exposure to the patient. 99mTcO4-, which is readily available as a column eluate from a 99Mo/99mTc generator, is reduced in the presence of chelating agents. The versatile chemistry of technetium emerging from the 8 possible oxidation states, along with a proper understanding of the structure-biologic activity relationship, has been exploited to yield a plethora of products meant for morphologic and functional imaging of different organs. This article reviews the evolution of 99mTc dating back to its discovery, the development of 99Mo/99mTc generators, and the efforts to exploit the diverse chemistry of the element to explore a spectrum of compounds for diagnostic imaging, planar, and single photon emission computed tomography. A brief outline of the 99mTc radiopharmaceuticals currently being used has been categorically presented according to the organs being imaged. Newer methods of labeling involving bifunctional chelating agents (which encompass the "3 + 1" ligand system, Tc(CO)3(+1)-containing chelates, hydrazinonicotinamide, water-soluble phosphines, and other Tc-carrying moieties) have added a new dimension for the preparation of novel technetium compounds. These developments in technetium chemistry have opened new avenues in the field of diagnostic imaging. These include fundamental aspects in the design and development of target-specific agents, including antibodies, peptides, steroids, and other small molecules that have specific receptor affinity.

Bone and Bones↗

Mitochondrial DNA evolution in the Drosophila nasuta subgroup of species.

The Drosophila nasuta group consists of about 12 closely related species distributed throughout the Indo-Pacific region. They are of great interest because of their evolutionary idiosyncrasies including little morphological differentiation, the ability to intercross in the laboratory often producing fertile offspring, and substantial chromosomal evolution. Studies of metric traits, reproductive isolation, and chromosomal and enzyme polymorphisms have failed to resolve the phylogeny of the species. We report the results of a survey of the mitochondrial DNA (mtDNA) restriction patterns of the species. The phylogeny obtained is consistent with other available information and suggests that D. albomicans may represent the ancestral lineage of the group. The amount of polymorphism in local populations (pi = 1.0% per site) is within the typical range observed in other animals, including Drosophila. The degree of differentiation between species is, however, low: the origin of the group is tentatively dated about 6-8 million years ago. This study confirms the usefulness of mtDNA restriction patterns for ascertaining the phylogeny of closely related species.

Animals↗

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