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An experimental test of the adaptive evolution of phototropins: blue-light photoreceptors controlling phototropism in Arabidopsis thaliana.

Phototropins are blue-light photoreceptor molecules mediating the capacity for phototropism or bending toward or away from directional light. Like the red-light sensing phytochromes that control shade avoidance, phototropins modulate developmental plasticity in plant architecture. Yet, unlike phytochromes, the adaptive significance of phototropins has been largely a topic of conjecture. In Arabidopsis thaliana, phototropism of seedling and plant stems is under the control of two paralogous genes, PHOT1 and PHOT2, that encode different phototropins with partially redundant light response qualities. The PHOT1 gene product interacts with the NPH3 gene product to cause phototropic bending over a broad range of light intensity, from very weak light in the soil to stronger light in the aerial environment. The PHOT2 gene product modulates shoot bending in response to light of higher intensity only. We compared the fitness of wild-type, phot1, phot2, and nph3 genotypes over a range of light conditions in the field. Seeds were sown in the field on the soil surface and left bare or covered with either gravel or bark mulch chips. Plantings were made under full sun and dense canopy cover. Rates of seedling emergence, survival to flowering, and total seed set were measured. All mutant genotypes had significantly reduced lifetime fitness compared to wild-type. Consistent with their different fluence rate sensitivities, phot1 and phot2 signaling pathways affected fitness at discrete life-cycle stages. Fitness costs of phot1 and nph3 were expressed mainly during seedling emergence from the soil whereas that of phot2 was expressed solely after emergence. Surprisingly, the only significant genotype-by-environment interaction for fitness occurred during emergence: genotypes blind to dim blue light (phot1 and nph3) had poor emergence in the open, but not in the shade. Possibly, the loss of negative phototropism in seedling roots of mutant genotypes reduced establishment success in open (dry soil) conditions. Results show that phototropin-modulated pathways are adaptive and that their evolution has involved functional specialization. However, mechanism(s) of selection on these pathways remain a mystery.

Adaptation, Physiological↗

Evolution of lymph thrombi in experimental Brugia malayi infections: a scanning electron microscopic study.

Lymph thrombi in cats experimentally-infected with Brugia malayi were examined by scanning electron microscopy. A variety of morphological forms were noted and it appeared that thrombi undergo a maturation process characterized by at least three transitional phases. Initially, the thrombus consists of erythrocytes encased in fibrin (Phase I). Phase II thrombi are characterized by the appearance of phagocytic cells and fibroblasts on the surface of the thrombus. At the end of the maturation process, the thrombus surface consists solely of fibroblasts or endothelial cells, perhaps derived from the vessel wall (Phase III). Occlusion of the lymphatic lumen by thrombi and the accompanying inflammatory response triggered by B. malayi infection may be a major factor in the pathogenesis of lymph stasis in this disorder.

Animals↗

The measurement of exchangeable sodium and total body sodium in rats in vivo compared with chemical analysis postmortem.

Measurements of body sodium content in rats were made in vivo by either neutron activation analysis or the use of the radioisotope, 22Na. The results were compared with estimates of TBNa of the carcases. Neutron activation analysis provided an accurate measure of total body sodium content. NaE, measured with 22Na, was consistently and quantitatively lower than total body sodium content. Each of these methods may be useful in the study of body sodium content in small animals during growth and during the evolution of experimental hypertension.

Animals↗

Neoplastic progression in experimental hepatocarcinogenesis.

The evolution of cancer through a series of progressive steps is discussed in the rat liver model on the basis of the multi-hit-multi-step hypothesis. The available evidence for this hypothesis is reviewed with special attention to its kinetic aspects. The neoplastic cell stages which can be distinguished during the protracted developmental process leading from the early precancerous foci to the malignant hepatocellular carcinoma are discussed in the light of the histological evidence for step-by-step progression manifested as focus-in-focus lesions. The inducibility of progression of the early precancerous foci to the transplantable neoplastic nodule stage by a new experimental protocol of the initiation-promotion-initiation type is indicative of the operation of a common molecular mechanism, i.e., somatic mutation, during the first and later steps of the carcinogenic process.

Animals↗

Evolution of the cutaneous immune response to experimental Haemophilus ducreyi infection and its relevance to HIV-1 acquisition.

Haemophilus ducreyi causes the sexually transmitted disease chancroid, which facilitates HIV-1 transmission. Skin biopsies were obtained from subjects experimentally infected with H. ducreyi to study the evolution of the immune response and immunophenotypes relevant to transmission of HIV-1. Compared with peripheral blood, there was an enrichment of T cells and macrophages after 48 h of infection in the skin. Neutrophils became the predominant cell type by 7-9 days. By immunohistochemistry, macrophage-inflammatory protein-1alpha was not present early in infection, but was abundant at later stages. RANTES was present throughout the papular and pustular stages of experimental infection, but not present in uninfected control skin. Stromal cell-derived factor-1 was present at low levels in all samples examined. Macrophages in lesions had significantly increased expression of CCR5 and CXCR4 compared with peripheral blood cells, and CD4 T cells had significant up-regulation of CCR5. The magnitude of increased expression of these receptors was not replicated when PBMCs were incubated with H. ducreyi or H. ducreyi lipooligosaccharide in vitro. Together with the disruption of mucosal and skin barriers, the presence of cells with up-regulated HIV-1 coreceptors in H. ducreyi-infected lesions may provide an environment that facilitates the acquisition of R5 (CCR5), X4 (CXCR4), and dual-tropic HIV-1 strains.

Chancroid↗

Changes in matrix metalloproteinases during the evolution of interstitial renal fibrosis in a rat experimental model.

The aim of the present study was to analyze the matrix metalloproteinase (MMP) activity during the evolution of interstitial renal fibrosis in a rat experimental model of unilateral ureteral obstruction. The interstitial type I collagenase and the gelatinolytic activities were analyzed by radiolabeled substrate degradation. Interstitial collagenase activity was low at all times while gelatinolytic activity increased on day 6 of evolution, with a decrease in activity from this point. The use of organomercurials revealed the presence of latent enzyme in all cases. Normal kidney samples contained MMP-9 in both active and proenzyme forms as revealed by zymography. On day 3 MMP-9 dimers appeared, and increased activity was observed until day 6. A decrease in the gelatinolytic activity was detected from days 9-15 of evolution. This observation was confirmed by Western blot analysis that revealed the presence of proMMP-9 mainly from days 6-12. Tissue inhibitor of metalloproteinase-1 (TIMP-1) was also detected alone and in combination with proMMP-1 and MMP-1, particularly from days 6-15 of evolution. The presence of MMP-9 and MMP-1 was detected in the cytoplasm of cortical tubular cells by immunohistochemistry, with no difference between the experimental and the normal kidneys. There was also an increase in collagen concentration from day 3 after surgery that increased during the entire evolution of the experimental model. This work reveals that the decrease in the MMP-9 and MMP-1 enzymatic activity, due to their interaction with TIMP-1 and to the lack of activation of the latent forms, may participate in the excessive collagen deposit during the evolution of experimental interstitial renal fibrosis.

Animals↗

Feline glucose-6-phosphate dehydrogenase cellular mosaicism. Application to the study of retrovirus-induced pure red cell aplasia.

Neoplasms result from the uncontrolled proliferation of abnormal or transformed cells. The early stages of this process are difficult to study because of the lack of sensitive and specific markers of clonal evolution in an experimental system. We have developed a cat model using cellular mosaicism for glucose-6-phosphate dehydrogenase (G-6-PD). Our findings confirm that the structural locus for feline G-6-PD is on the X-chromosome and demonstrate that it is randomly inactivated in somatic cells. Heterozygous cats have balanced ratios of G-6-PD enzyme types in peripheral blood cells and hematopoietic progenitors that remain stable over time. In our initial studies, we used the model to analyze the events surrounding marrow failure experimentally induced by selected strains of feline leukemia virus (FeLV). Two G-6-PD heterozygous cats, one F1 male hybrid and one domestic cat were infected with FeLV (C or KT) and developed pure red cell aplasia (PRCA). Colonies arising from the more mature erythroid colony-forming cell were not detected in marrow culture of anemic animals although erythroid bursts persisted, suggesting that the differentiation of early erythroid progenitors (BFU-E) was inhibited in vivo. The ratio of G-6-PD types in hematopoietic progenitors and peripheral blood cells from the heterozygous cats did not change when the animals developed PRCA. Thus, the anemia did not result from the clonal expansion of a transformed myeloid stem cell. With this experimental approach, one may prospectively assess clonal evolution and cellular interactions in other FeLV-induced diseases.

Animals↗

Ecological mechanisms for coexistence of colour polymorphism in a coral-reef fish: an experimental evaluation.

The evolution of different colour morphs and how they are maintained in animal populations is poorly understood. We investigated the mechanisms maintaining yellow and brown morphs of a coral-reef fish, Pseudochromis fuscus, at Lizard Island, on the Great Barrier Reef. Histological examination of the gonads revealed that colour morphs were not sex-limited, therefore sexual selection does not appear to promote dichromatism in this species. The field distributions of the two colour morphs were spatially segregated, limiting the opportunity for negative frequency-dependent selection to operate. Our results support another ecological mechanism of coexistence. The yellow morph occurred in deeper areas, usually close to the reef edge, where there was a proportionally high cover of live branching corals. In contrast, the brown morph occurred in shallower areas, more distant from the reef edge, that were proportionally low in live branching corals. Within these habitats, each colour morph of P. fuscus displayed a close association with similar coloured damselfishes from the genus Pomacentrus. The yellow morph was associated with predominantly yellow damselfishes (P. moluccensis and P. amboinensis) and the brown morph with darker coloured species (P. adelus and P. chrysurus). Multiple-choice experiments in the laboratory revealed that: (1) each colour morph of P. fuscus preferentially selected habitat patches occupied by damselfishes with the same colouration; and (2) differences in microhabitat use between the two colour morphs of P. fuscus were due to the presence of different coloured damselfishes in these microhabitats. P. fuscus is a predator of newly recruited damselfishes and the striking resemblance between each morph of P. fuscus and the damselfish with which it was associated, suggests that aggressive mimicry may promote coexistence of P. fuscus colour morphs.

Animals↗

An experimental demonstration of Fisher's principle: evolution of sexual proportion by natural selection.

Most sexually reproducing species have sexual proportions around 1:1. This major biological phenomenon remained unexplained until 1930, when FISHER proposed that it results from a mechanism of natural selection. Here we report the first experimental test of his model that obeys all its assumptions. We used a naturally occurring X-Y meiotic drive system--the sex-ratio trait of Drosophila mediopunctat--to generate female-biased experimental populations. As predicted by FISHER, these populations evolved toward equal sex proportions due to natural selection, by accumulation of autosomal alleles that direct the parental reproductive effort toward the rare sex. Classical Fisherian evolution is a rather slow mechanism: despite a very large amount of genetic variability, the experimental populations evolved from 16% of males to 32% of males in 49 generations and would take 330 generations (29 years) to reach 49%. This slowness has important implications for species potentially endangered by skewed sexual proportions, such as reptiles with temperature sex determination.

Alleles↗

Evolution of epicardial R wave voltage following experimental coronary artery occlusion: effects of hyaluronidase.

The goals of this investigation were: 1) to examine the pattern of evolution of epicardial R wave voltage during the 24 h after experimental coronary artery occlusion; and 2) to determine whether hyaluronidase, an agent shown previously to reduce myocardial ischaemic injury, alters this evolution. Coronary artery occlusion was performed in 36 dogs. In the control dogs, the average R wave voltage (R) recorded over the ischaemic myocardium increased by 7.6 +/- 0.8 mV (P less than 0.001) from before to 15 min after coronary artery occlusion, then gradually returned to baseline over the ensuing 4 h. Subsequently, R wave voltage continued to fall, and 24 h after occlusion, R was 17.8 +/- 1.8 mV (P less than 0.001) less than before occlusion. In the hyaluronidase-treated dogs (500 NF units . kg-1), R recorded over the ischaemic myocardium increased similarly to the controls before hyaluronidase administration. However, in contrast to the control dogs, the administration of hyaluronidase 20 min after occlusion caused R to return to baseline over the ensuing 40 min and 24 h after occlusion, the treated animals lost significantly less R wave voltage than the controls (P less than 0.001).

Animals↗

Animal experimentation: pro and con arguments using the theory of evolution.

The theory of evolution has been used in arguments regarding animal experimentation. Two such arguments are analyzed, one against and one in favor. Each argument stresses the relevance of the theory of evolution to normative ethics but attempts explicitly to avoid the so-called naturalistic fallacy. According to the argument against animal experimentation, the theory of evolution 'undermines' the idea of a special human dignity and supports 'moral individualism'. The latter view implies that if it is wrong to use humans in experiments, then it is also wrong to use animals, unless there are relevant differences between them that justify a difference in treatment. No such differences can be found with regard to animals which lead 'biographical lives'. The argument in favor of animal experimentation is based on evolutionary psychology. It states that humans, as all social animals, are speciesist by nature and stresses that this should be taken seriously in normative ethics. This does not mean that animal interests should not be considered, only that vital human interests may outweigh them. In order to assess the arguments, one has to take a stand on certain more basic issues: 'is' versus 'ought', impartiality versus special obligations, and feelings/intuitions versus reason. Given the author's own position with regard to these more basic considerations, the-evolutionary argument in favor of animal experimentation is judged to be more convincing than the one against but not decisive. It is also maintained that not all animal experiments are acceptable. Which animal experiments are acceptable and which are not has to be decided on a case-by-case basis.

Animal Rights↗

Protein evolution: intrinsic preferences in peptide bond formation: a computational and experimental analysis.

Two possibilities exist for the evolution of individual enzymes/proteins from a milieu of amino acids, one based on preference and selectivity and the other on the basis of random events. Logic is overwhelmingly in favour of the former. By protein data base analysis and experiments, we have provided data to show the manifestation of two types of preferences, namely, the choice of the neighbour and its acceptance from the amino end (left) or the carboxyl end (right). The study tends to show that if the 20 proteinous amino acids were made to combine in water, the resulting profile would be nonrandom. Such selectivity could be a factor in protein evolution.

Evolution, Molecular↗

Evolution of ELNES spectra as a function of experimental settings for any uniaxial specimen: a fully relativistic study.

We perform calculations of the fully relativistic, corrected geometrical weighting of the pi* and sigma* transitions measured from the 1s core loss electron energy loss spectroscopy (EELS) spectrum in any uniaxial specimen. We present a complete calculation of the differential scattering cross-section (DSCS), taking into account the collection angle, the illumination angle and the tilt of the sample over the optical axis. Owing to high electron velocity in an EELS experiment, the relativistic correction has to be considered. We thus, present a relativistic, corrected DSCS by using the theory recently developed by Jouffrey et al. [Ultramicroscopy 102 (2004) 61] and P. Schattschneider et al. [Phys. Rev. B 72 (2005) 045142]. The relativistic correction is first performed in the natural coordinate system of the scattering event. We then point out a straightforward method to introduce this correction in the microscopic coordinate system, where all calculations have to be done to be experimentally useful. Using the fully corrected DSCS, we present an expression predicting the evolution of the R=pi*/(pi*+sigma*) ratio (related to the ratio of sp2 and sp3 bondings) as a function of experimental settings. We show how the R-evolution can be predicted, for any experimental setting, by the knowledge of one unique reference value. We verify on graphite specimens, the validity of the R-calculation by comparing theoretical predictions presented in this work with experimental data published elsewhere [Daniels et al., Ultramicroscopy 96 (2003) 523 and Menon et al., Ultramicroscopy 74 (1998) 83].

Journal Article↗