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To assess mechanisms of hybridization and speciation, we isolated and characterized 12 dinucleotide microsatellite DNA loci for the toad‐headed lizards, Phrynocephalus przewalskii complex. A total of 48 specimens were examined and all loci were polymorphic with seven to 25 alleles per locus. The observed and expected heterozygosities ranged from 0.282 to 0.946 and 0.400 to 0.937, respectively. These loci are therefore suitable for a wide range of population level studies within the P. przewalskii complex.  相似文献   
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1. The development of periphytic algae and bacteria is controlled by a combination of interacting biotic processes and abiotic factors. Distinguishing between the selection pressure resulting from pollution and that of natural environmental factors is therefore one of the most critical aspects of assessing the impact of pollutants on the diversity and function of benthic microbial communities in natural ecosystems. 2. We studied how current velocity and season affect the ability of river biofilms to cope with complex chemical pollution. We compared the diversity, structure and production of periphytic algae and bacteria from four sampling zones with differing chemical water quality levels and different flow velocities over the course of two seasons (summer and winter). 3. The three factors tested all influenced biofilm development, but this depended on the biological variable being measured. Bacterial and algal densities were highly dependent on season and chemical water quality. Algal density was lower in summer than in winter, but bacterial density and production increased from upstream (reference) to downstream (polluted), and this increase was more marked in winter. The impact of chemical water quality was also dependent on the season. 4. An interaction between current velocity and pollution was also detected. During the summer, there was no difference in bacterial density or production between the upstream and downstream segments in the fast current zones, whereas both variables were higher downstream in the slow current zones. Such interactions between environmental factors and the impact of water quality on biofilms must be taken into account in assessments of the effects of chemicals on biofilm community structure and functioning in rivers.  相似文献   
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The jaw movements and muscular activity of masticatory muscles of five assessors, having bitterness thresholds about 8 μM quinine in water, were monitored throughout chewing of similar strength gelatin gels containing 0, 40, 70 or 100 μM quinine. Gel bitterness ratings were not related to sensory texture which was 78kN/m2 by shear test. On average, 100 μM quinine gels were as bitter as 7 to 30 μM quinine in water, depending on the assessor. Chewing patterns were not affected by concentration of quinine in the gels. During mastication of acceptable gels, there appears to be no feedback from taste to the motor control of mastication. In gels of the same consistency and the same concentration of quinine, assessors who chewed more rated higher for bitterness. The implications for mimicking mastication by machine and the training of assessors for solid foods are discussed.  相似文献   
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ABSTRACT. Inhibition, inactivation, pH, and kinetic studies using both homogenates and purified lysosomal fractions of Paramecium caudalum and of P. tetraurelia were carried out to examine the lysosomal acid phosphatase (AcPase) and its relationship to p-nitrophenylphosphatase (pNPPase), glucose-6-phosphatase (G6Pase), and 5′-nucleotidase (AMPase). The results generally support the idea that Paramecium cells contain a distinct lysosomal AcPase with a broad substrate specificity. The hydrolysis of glucose-6-phosphate (G6P) and adenosine 5′-monophosphate (AMP) was shown to be due to this enzyme, suggesting that true G6Pase and AMPase may be lacking in these two species; however, some hydrolysis of AMP at pH 7.5 catalyzed by an unknown soluble enzyme distinct from alkaline phosphatase and Na+-K+-ATPase was observed. Since the hydrolysis of p-nitrophenylphosphate (pNPP) at acid pH was also shown to be due to AcPase alone, pNPPase could be used as a rapid assay for Paramecium AcPase. At an alkaline pH, however, this activity was catalyzed by an alkaline phosphatase located in the cytosol fraction. P. caudatum AcPase was shown to have kinetic properties similar to those of purified rat liver and human prostatic AcPase and to have relative substrate affinities in the order of G6P < β-glycerophosphate < pNPP < AMP. These different substrate affinities might account for the observed differences in the inhibition of the four lysosomal activities by NaF, L(+)-tartrate, and molybdate, all of which inhibited the hydrolysis of G6P, β-glycerophosphate, and pNPP competitively, but which exhibited a noncompetitive inhibition of a mixed type with the hydrolysis of AMP.  相似文献   
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ABSTRACT. The temporal changes in the size and pH of digestive vacuoles (DV) in Paramecium caudatum were reevaluated. Cells were pulsed briefly with polystyrene latex spheres or heat-killed yeast stained with three sulfonphthalein indicator dyes. Within 5 min of formation the intravacuolar pH declined from ~7 to 3. With the exception of a transient and early increase in vacuolar size, vacuole condensation occurred rapidly and paralleled the acidification so that vacuoles reached their lowest pH and minimal size simultaneously. Neutralization and expansion of vacuole size began when vacuoles were GT8 min old. No labeled vacuoles were defecated prior to 21 min after formation but almost all DV were defecated within 1 h so that the digestive cycle of individual vacuoles ranged from 21 to 60 min. Based on these size and pH changes, the presence of acid phosphatase activity, and membrane morphology, digestive vacuoles can be grouped into four stages of digestion. The DV-I are GT6 min old and undergo rapid condensation and acidification. The DV-II are between 4 to 10 min old and are the most condensed and acidic vacuoles. The DV-III range in age from 8 to ~20 min and include the expanding or expanded vacuoles that result from lysosomes fusing with DV-II. The DV-IV are GD21 min old, and since digestion is presumably completed, they can be defecated. The rise in intravacuolar pH that accompanies vacuole expansion suggests that lysosomes play a role in vacuole neutralization in addition to their degradative functions. The acidification and condensation processes in DV-I appear to be unrelated to lysosomal function, as no acid phosphaiase activity has been detected at this stage, but may be related to phagosomal functions important in killing food organisms, denaturing proteins prior to digestion, and preparing vacuole membrane for fusion with lysosomes.  相似文献   
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With a global commitment to scaling up AIDS care and treatment in resource‐poor settings for some of the most HIV‐affected countries in Africa, availability of antiretroviral treatment is no longer the principal obstacle to expanding access to treatment. A shortage of trained healthcare personnel to initiate treatment and manage patients represents a more challenging barrier to offering life‐saving treatment to all patients in need. Physician‐centered treatment policies accentuate this challenge. Despite evidence that task shifting for nurse‐centered AIDS patient care is effective and can alleviate severe physician shortages that currently obstruct treatment scale‐up, political commitment and policy action to support task shifting models of care has been slow to absent. In this paper we review the evidence in support of task shifting for AIDS treatment in Africa and argue that continued policy inaction amounts to unwarranted healthcare rationing and as such is ethically untenable.  相似文献   
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UDUEBO  AGNES E. 《Annals of botany》1975,39(3):605-610
The structure of the pycnidiospores of B. theobromae was investigatedby a combination of light microscope, a scanning electron microscopeand a transmission electron microscope observations. As observedwith the light microscope the hyaline non-septate pycnidiosporeis highly vesiculated while the pigmented septate one exhibitslongitudinal hyaline striations. Investigations with the scanningelectron microscope showed the hyaline non-septate pycnidiosporeto be smooth-walled without any form of ornamentation. The pigmentedseptate pycnidiospore on the other hand had a rough outer surfacewith a transverse groove, which probably indicated the positionof the septum. The longitudinal striations seen on such pycnidiosporeswith the light microscope were not observed under these conditions.Observations with the transmission electron microscope showedthat the outermost layer of the hyaline pycnidiospore was smootherthan that of the pigmented one. The pigment was on the outerlayer of the double-layered wall of the pigmented pycnidiospore.The inner non-pigmented wall layer was continuous with the septum.The septum tapered gradually to a thin layer in the centre whereit was perforated by a simple pore. The observations indicatedthat the pigmented spore was multinucleate while the hyalineone was uninucleate.  相似文献   
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