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Expression of achaete-scute homologues in discrete proneural clusters on the developing notum of the medfly Ceratitis capitata, suggests a common origin for the stereotyped bristle patterns of higher Diptera.

The stereotyped positioning of sensory bristles in Drosophila has been shown to result from complex spatiotemporal regulation of the proneural achaete-scute genes, that relies on an array of cis-regulatory elements and spatially restricted transcriptional activators such as Pannier. Other species of derived schizophoran Diptera have equally stereotyped, but different, bristle patterns. Divergence of bristle patterns could arise from changes in the expression pattern of proneural genes, resulting from evolution of the cis-regulatory sequences and/or altered expression patterns of transcriptional regulators. Here we describe the isolation of achaete-scute homologues in Ceratitis capitata, a species of acalyptrate Schizophora whose bristle pattern differs slightly from that of Drosophila. At least three genes, scute, lethal of scute and asense have been conserved, thus demonstrating that gene duplication within the achaete-scute complex preceded the separation of the families Drosophilidae and Tephritidae, whose common ancestor goes back more than 100 million years. The expression patterns of these genes provide evidence for conservation of many cis-regulatory elements as well as a common origin for the stereotyped patterns seen on the scutum of many Schizophora. Some aspects of the transcriptional regulation have changed, however, and correlate in the notum with differences in the bristle pattern. The Ceratitis pannier gene was isolated and displays a conserved expression domain in the notum.

Amino Acid Sequence↗

The origin and evolution of vertebrate pattern and form--a theory of vertebrate development by preformation based on the genetic molecular shape.

A new hypothesis is presented to explain the origin of vertebrate form and the guiding mechanism by which embryological development occurs. The hypothesis is based on the observation which is demonstrated, that both vertebrate form and embryological development follow a pattern which correlates with the shapes formed by a spiral as it unfolds. The fact that the DNA molecule which carries the genetic information for embryological development, also has a helical structure, has suggested the hypothesis, that vertebrate form and its development are related to the molecular shape of the genetic material. A theoretical vertebrate genetic molecular structure is proposed and it is demonstrated how this structure by "unfolding", as growth occurs, (the mechanism for which is suggested) provides an accurate prepattern and a template for vertebrate embryological development and vertebrate form. Evolutionary implications follow, which question the Neo-Darwinian synthesis. These are firstly, that the vertebrate pattern is not the result of random genetic variations and natural selection, but owes its origin to a spiral pattern, possibly that of DNA. Secondly, that progressive changes occurring in the shape of the genetic molecule provide an explanation and a mechanism for the evolution of species; a concept which is demonstrated.

Animals↗

Spatial models for hybrid zones.

We introduce a spatially explicit model of natural hybrid zones that allows us to consider how patterns of allele frequencies and linkage disequilibria change over time. We examine the influence of hybrid zone origins on patterns of variation at two loci, a locus under selection in a two-patch environment, and a linked neutral locus. We consider several possible starting conditions that represent explicit realizations of two alternative scenarios for hybrid zone origins: primary intergradation and secondary contact. Our results indicate that in some circumstances, differences in hybrid zone origins will result in substantially different patterns of variation that may persist for thousands of generations. Our conclusions are generally similar to those previously derived from partial differential equations, but there are also some important differences.

Alleles↗

Origins of laboratory mice deduced from restriction patterns of mitochondrial DNA.

To determine the origins of laboratory mice, the restriction patterns of mitochondrial DNAs (mtDNAs) from various strains were compared with those of relevant subspecies and/or races of Mus musculus. In most strains and substrains of laboratory mice examined (50/55), the cleavage patterns were identical to those of the European subspecies M. m. domesticus. Those that varied include two sublines of NZB, the strain NZC, and the Japanese strain RR. The NZB and NZC patterns were identical to that of the European subspecies M. m. brevirostris, which itself has restriction patterns similar to M. m. domesticus. On the other hand, the RR pattern was identical to M. m. molossinus-like mice trapped in Western China and slightly different from Japanese M. m. molossinus. These findings suggest that the strains NZB and NZC stemmed from a European founder stock which differed from the ancestral stocks of other laboratory strains and that the ancestral mice of the RR strain had been transported from China to Japan. Therefore, most laboratory strains of mice are derived from the European subspecies M. m. domesticus while M. m. brevirostris and M. m. molossinus have made minor contributions. M. m. musculus does not appear to have made any contribution.

Animals↗

Neuromagnetic evidence that the P100 component of the pattern reversal visual evoked response originates in the bottom of the calcarine fissure.

Visual evoked magnetic fields due to pattern reversal stimuli were measured in 5 normal subjects using a helmet-shaped 66 channel magnetoencephalography system linked to MRI. The magnetic topography of the prominent 100 ms response (P100m) evoked by fullfield visual showed a double-dipole pattern in the occipital areas of all subjects. Right or left half-field stimuli and upper or lower quadrant-field stimuli evoked a single-dipole pattern in the contralateral occipital area. The P100m sources were then localized using a current dipole model and superimposed on MRI images of each subject. The visual cortex was morphologically variable among the subjects, but the P100m dipoles were all localized at the lateral bottom of the calcarine fissure. Moreover, these P100m dipoles had similar orientations for both half-or quadrant-field stimuli. These results suggest that the P100m is located in a smaller part of the striate cortex than previously reported.

Adult↗

Temporospatial cell interactions regulating mandibular and maxillary arch patterning.

The cellular origin of the instructive information for hard tissue patterning of the jaws has been the subject of a long-standing controversy. Are the cranial neural crest cells prepatterned or does the epithelium pattern a developmentally uncommitted population of ectomesenchymal cells? In order to understand more about how orofacial patterning is controlled we have investigated the temporal signalling interactions and responses between epithelium and mesenchymal cells in the mandibular and maxillary primordia. We show that within the mandibular arch, homeobox genes that are expressed in different proximodistal spatial domains corresponding to presumptive molar and incisor ectomesenchymal cells are induced by signals from the oral epithelium. In mouse, prior to E10, all ectomesenchyme cells in the mandibular arch are equally responsive to epithelial signals such as Fgf8, indicating that there is no pre-specification of these cells into different populations and suggesting that patterning of the hard tissues of the mandible is instructed by the epithelium. By E10.5, ectomesenchymal cell gene expression domains are still dependent on epithelial signals but have become fixed and ectopic expression cannot be induced. At E11 expression becomes independent of epithelial signals such that removal of the epithelium does not affect spatial ectomesenchymal expression. Significantly, however, the response of ectomesenchyme cells to epithelial regulatory signals was found to be different in the mandibular and maxillary primordium. Thus, whereas both mandibular and maxillary arch epithelia could induce Dlx2 and Dlx5 expression in the mandible and Dlx2 expression in the maxilla, neither could induce Dlx5 expression in the maxilla. Reciprocal cell transplantations between mandibular and maxillary arch ectomesenchymal cells revealed intrinsic differences between these populations of cranial neural crest-derived cells. Research in odontogenesis has shown that the oral epithelium of the mandibular and maxillary primordia has unique instructive signaling properties required to direct odontogenesis, which are not found in other branchial arch epithelia. As a consequence, development of jaw-specific skeletal structures may require some prespecification of maxillary ectomesenchyme to restrict the instructive influence of the epithelial signals and allow development of maxillary structures distinct from mandibular structures.

Animals↗

Life after a cardiac event: women's experience in healing.

OBJECTIVE: To describe the experience of women's recovery after an acute cardiac event. DESIGN: Grounded theory provided the methodologic basis for qualitative data generation and analysis. SAMPLE: Thirteen women who had experienced an acute cardiac event. The participants' ages ranged from 42 to 78 with a mean age of 58 years. Four participants attended the group sessions after experiencing an acute myocardial infarction; five had undergone coronary artery bypass grafting; and two had undergone percutaneous transluminal coronary angioplasty. Two participants had undergone exercise testing that indicated myocardial ischemia. The time after the cardiac event ranged from 8 weeks to 3 years at the initiation of the study, with a mean time after the cardiac event of 8 months. RESULTS: Healing, the basic social process identified from the data, explained women's struggle through the uncertainty surrounding the cardiac event as a way of creating new and positive health patterns. The process of healing consisted of three stages: surviving, originating, and patterning balance. These stages of healing illustrated determinants of individual motivation that guided the initiation and maintenance of risk factor modification efforts in women after the cardiac event. CONCLUSIONS: Results of this study provide a basis for the development and evaluation of comprehensive rehabilitative interventions designed to enhance individual recovery after a cardiac event.

Adaptation, Psychological↗

Composite patterns in neutral/neutral two-dimensional gels demonstrate inefficient replication origin usage.

The neutral/neutral two-dimensional (2-D) gel replicon mapping technique has been used to great advantage to localize and characterize origins of replication. Interestingly, many yeast origins display a composite pattern consisting of both a bubble arc and a single-fork arc. Moreover, in every instance in which neutral/neutral 2-D gels have been used to analyze origins in higher eukaryotic cells, two or more adjacent fragments display these composite patterns. We believe that composite patterns signal inefficient origin usage in yeast cells because the replicators in question are not active in every cell cycle and in higher eukaryotic replicons because initiation sites are chosen from among many potential sites lying within a zone. However, others have suggested that the single-fork arcs in these composite gel patterns arise from nicking activity that converts replication bubbles to branched structures that comigrate with bona fide single forks. Here, we have used three different replicon mapping strategies to show that broken simian virus 40 replication bubbles trace unique arcs that are clearly distinguishable from classic, intact single forks. Thus, it is likely that composite 2-D gel patterns represent origins that are inefficiently utilized.

Animals↗

The growth patterns of two transplantable acute leukaemias of spontaneous origin in rats.

The growth pattern and morphology of two transplantable acute leukaemias which arose spontaneously in pure line rats are described. They differ morphologically and on the basis of their behaviour in vivo, such as infiltration of lymphoid organs and presence in thoracic duct lymph, the leukaemia syngeneic to the August strain (referred to as the SAL) appears to be of myeloid type whereas the leukaemia syngeneic to the Hooded strain (referred to as the HRL) resembles acute lymphoblastic leukaemia. The HRL cells, but not the SAL cells, are lysed by murine anti-theta serum plus complement. These two transplantable acute leukaemias appear to be useful animal counterparts ot the human acute leukaemias and may be valuable models for studies on chemotherapy and immunotherapy.

Animals↗

Hox genes in the honey bee Apis mellifera.

Hox genes are known to control the identity of serially repeated structures in arthropods and vertebrates. We analyzed the expression pattern of the Hox genes Deformed (Dfd), Sex combs reduced (Scr), Antennapedia (Antp), and Ultrabithorax/abdominal-A (Ubx/abd-A) from the honey bee Apis mellifera. We also cloned a cDNA with the complete coding region of the Antennapedia gene from Apis. Comparison with Antp proteins from other insect species revealed several regions of homology. The expression patterns of the isolated Hox genes from Apis showed that the original expression patterns of Dfd, Scr, and Antp appear between late blastoderm and early germ band stage in a temporal and spatial sequence. Each of them shows up as a belt, spanning approximately two segment anlagen, Dfd in the anterior gnathal region, Scr in the posterior gnathal and anterior thoracic region, and Antp in the thoracic region. Following expansion of the Antp domain in the abdomen as a gradient towards the posterior, Ubx/abd-A expression appears laterally in the abdomen. During gastrulation and in the germ band stage the domains of strong expression do not overlap any more, but touch each other. After gastrulation the borders of the expression domains partly correlate with parasegment and partly with segment boundaries. Laterally, gaps between the domain of each gene may show no expression of any of the genes examined.

Amino Acid Sequence↗

Anatomy of the origin of the deep femoral artery.

OBJECTIVE: To study the variability in the level of origin of the deep femoral artery in relation to the different patterns of origin of the femoral circumflex arteries. DESIGN: 124 femoral triangles obtained from cadavers were dissected. The origins of the circumflex femoral arteries were classified into two groups. In group A medial and lateral circumflex arteries arose from the deep femoral artery. In group B either one or both femoral circumflex arteries arose from the common femoral artery. The distance of origin of the deep femoral artery from the mid point of the inguinal ligament was measured in both groups and compared. SETTING: Department of Anatomy, Faculty of Medicine, Colombo. RESULTS: A statistically significant difference was noted in the two groups regarding the level of origin of the deep femoral artery. CONCLUSION: There is a distal migration of the level of origin of the deep femoral artery when either one or both circumflex femoral arteries arose from the common femoral artery.

Anthropometry↗

Nonhepatic arteries originating from the hepatic arteries: angiographic analysis in 250 patients.

PURPOSE: To investigate the prevalence and patterns of origin of nonhepatic arteries originating from the proper hepatic artery (PHA) or its distal branches and to assess their relation to anatomic variations. MATERIALS AND METHODS: Digital subtraction celiac arteriography and selective left hepatic arteriography was performed in 250 patients with hepatocellular carcinoma. Three interventional radiologists interpreted the angiograms on the monitor by consensus. If necessary, further superselective arteriography was performed. The prevalence of nonhepatic arteries, their sites of origin, and the influence of underlying anatomic variants were analyzed. RESULTS: Nonhepatic arteries were found in 205 patients. The most common nonhepatic artery was the right gastric artery (RGA; n = 196), followed by the hepatic falciform artery (HFA; n = 129), accessory left gastric artery (LGA; n = 43), posterior superior pancreaticoduodenal artery (PSPDA; n = 18), and left inferior phrenic artery (LIPA; n = 5). The left hepatic artery (LHA) was the most frequent origin of nonhepatic arteries (170 of 250). Regardless of anatomic variation, the most common origins of the RGA and HFA were the PHA and the segment IV hepatic artery, respectively. In patients with an aberrant LHA from the LGA, no accessory LGAs or LIPAs were found. PSPDAs preferentially arose from variant hepatic arteries arising from the gastroduodenal artery. CONCLUSIONS: Nonhepatic arteries commonly arise from the hepatic arteries, especially the LHA and PHA. Moreover, variants of the celiac and hepatic arteries influence the prevalence and sites of origin of nonhepatic arteries.

Adult↗

A moving wave patterns the cone photoreceptor mosaic array in the zebrafish retina.

In this paper, we describe the embryonic origin and patterning of the planar mosaic array of cone photoreceptor spectral subtypes in the zebrafish retina. A discussion of possible molecular mechanisms that might generate the cone mosaic array considers but discards a model that accounts for formation of neuronal mosaics in the inner retina and discusses limitations of mathematical simulations that reproduce the zebrafish cone mosaic pattern. The formation and organization of photoreceptors in the ommatidia of the compound eye of Drosophila is compared with similar features in the developing zebrafish cone mosaic, and a model is proposed that invokes spatiotemporally coordinated cell-cell interactions among cone progenitors to determine the identity and positioning of cone spectral subtypes.

Animals↗

Genomic diversity among bovine herpesvirus 4 field isolates.

Twenty-eight Belgian field isolates of bovine herpesvirus 4 (BHV-4) coming from a variety of clinical diseases have been studied by restriction analysis and Southern blot hybridization. The unique central part of the genome was very well conserved among strains; only one variation in a restriction site was detected in 3 isolates which contain an additional EcoRI site also present in the LVR 140 strain; three regions in the unique part of the genome varied in size, one of these was highly variable. The polyrepetitive fragments (prDNAs) situated in tandem at both genomic ends were also variable in size; most of the isolates exhibited prDNA units of one size (major prDNA) and some of them also contained prDNA units having a different size and present in a lower amount (minor prDNA) than the major prDNA. Other isolates possessed two major prDNAs of different sizes which were both present in the same genome. The left junction fragment between the unique and the repeated sequences was also highly variable. No relationship could be established between the restriction pattern and the origin of the isolates; patterns of isolates coming from the same herd were similar except in one case. This study provides a view of the genome variability existing between BHV-4 field isolates.

Animals↗

Purification and characterization of two human liver carboxylesterases.

1. Two carboxylesterases (EC 3.1.1.1) purified from human livers were distinguished by pI (isoelectric point), nondenaturing polyacrylamide gel electrophoresis, molecular weight, catalytic activity, N-terminus and immunological cross-reactivity. 2. The low pI carboxylesterase has not been reported previously. 3. Numerous bands seen when each enzyme was focused on analytical IEF gels could not be separated. 4. When sections of the band pattern was refocused, the original complete band pattern was generated. 5. Both the mid and low pI carboxylesterases had catalytic activity for xenobiotics as well as medium and long chain fatty acid esters.

Amino Acid Sequence↗

Evoked potentials in severe brain injury.

Three-modality evoked potentials (EPs) have been used for several years in association with the electroencephalogram (EEG) as a diagnostic and prognostic tool in acute traumatic or nontraumatic coma. In 1993 we proposed to combine these in two indices: the index of global cortical function (IGCF) and the index of brain-stem conduction (IBSC). Four EP patterns based on both indices emerge at the acute stage of severe head trauma. These are easily explainable by pathophysiology. Pattern 1 corresponds to alterations in the index of global cortical function without changes in the index of brain-stem conduction. Its prognosis is good (80 to 90% of these patients recover). Pattern 2 is characterized by alterations of somatosensory EPs that are suggestive of midbrain dysfunction. The prognosis depends both on the reversibility of the midbrain dysfunction and on the extent of associated diffuse axonal lesions, whose evaluation requires MRI. Patients who recovered from Pattern 2 sometimes did so after a long interval during which they remained vegetative. Pattern 3 is characterized by alterations of brain-stem auditory EPs that are suggestive of pontine involvement. It usually follows uncontrolled intracranial hypertension and corresponds to evolving transtentorial herniation. All patients with that transient pattern eventually died. Pattern 4 is categorized by the disappearance of all activities of intracranial origin, contrasting with the preservation of all activities of retinal, spinal-cord, and peripheral-nerve origin. This pattern corresponds to brain death. In our experience, three-modality EPs are currently the best bedside brain-death confirmatory tool.

Brain↗

Field edge smoothing for multileaf collimators.

PURPOSE: To smooth the scalloped dose pattern that occurs for stepped leaves at a treatment field edge defined by a multileaf collimator. METHODS AND MATERIALS: Fields with centers shifted slightly in space were superimposed to blur the staggered dose distribution at the field edge. Film dosimetry was used to monitor changes. The dose distribution for a single field position was compared to the distribution for one and three shifts. Three depths were examined and divergent alloy blocks were included in the comparison. RESULTS: The structure that appears at an edge for a single field when leaves are staggered was nearly eliminated when the field was shifted three times to give a total of four different positions. However, shifting the field one time so that two fields were superimposed gave an intermediate result with only slight improvement in the undulating dose distribution. For the four superimposed fields, the 50% isodose pattern converged to a smoothed line running along the center of the original undulating pattern. The 80 and 20% isodoses did not converge to the center of their scalloped patterns. Instead, these isodose lines were spread leaving a larger penumbra width than a divergent alloy block. CONCLUSIONS: Shifting and adding fields is an effective method for smoothing the staggered dose distribution that results when the leaves of a multileaf collimator are stepped to form an irregular field pattern. However, the width of the penumbra for the combined fields is wider than the penumbra for a cerrobend block.

Radiotherapy↗

Yeast origins establish a strand bias for replicational mutagenesis.

To determine whether replicational mutagenesis in the yeast genome is influenced by the positions of active origins, a reporter gene was placed in two orientations at multiple locations within a 39,000 bp region of chromosome III possessing two strong origins. The frequency of mutations resulting from misincorporation of adenine opposite 8-hydroxyguanine in one strand and 6-hydroxylaminopurine opposite cytosine in the other strand differed by 3- to 10-fold, depending on the gene orientation and its distance from the origins. The observed patterns indicate that active origins establish a strand bias for mutations that is maintained over thousands of base pairs and results from lower nucleotide selectivity and/or less efficient proofreading or mismatch repair during leading strand DNA replication.

Chromosomes, Fungal↗