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1.
Tansley Review No. 112   总被引:4,自引:0,他引:4  
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Isolation of Aeromonas caviae from ice-cream   总被引:1,自引:0,他引:1  
Sixty-four samples of ice-cream were examined for the presence of Aeromonas species. Culture was by direct inoculation onto xylose deoxycholate citrate agar and into alkaline peptone water. Aeromonas caviae was isolated from three of the 64 samples (4–7%). The potential pathogenic significance of this organism in ice-cream is discussed.  相似文献   
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SYNOPSIS. A current model concerning the process of limb regenerationin vertebrates is examined. According to this model (Bryantet al, 1981), new positional values in the proximal-distal limbaxis are laid down as a result of local interactions betweencells in the limb circumference. Cells with disparate circumferentialpositional values come together at the site of future outgrowthand intercalation between them generates more distal levelsof the pattern. The results of a number of experiments on surgicallycreated symmetrical limb stumps are discussed in relation tothis model. In addition, an extension of this model to accountfor digit formation is presented, and the implications of thisformulation for limb evolution are discussed.  相似文献   
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Carbonic Anhydrase and the Regulation of Photosynthesis   总被引:14,自引:0,他引:14  
THE role of CO2 in the regulation of photosynthetic and respiratory metabolism in plants is little understood in the unicellular alga Chlorella pyrenoidosa; for example, after autotrophic growth in high CO2 (5·5% by volume), transfer to a CO2 concentration about ten times less than the concentration in air results initially in low rates of photosynthesis characterized by the virtual absence of the Calvin cycle1 of CO2 fixation2. An induction period of about 2 h is necessary before normal photosynthetic rates are established. Cells grown in air (0.03% CO2) do not show this effect and photosynthesize at comparatively high rates even in very low concentrations of CO2.  相似文献   
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This study measured the quantities of effective pollen vectors and their pollen loads arriving at the canopies of dioecious tropical rain forest trees in north-east Queensland. Population flowering synchrony, effective pollinator populations and pollen loads transferred between staminate and pistillate trees were compared among three insect-pollinated tree species. All three were visited by a wide range of insects, 75% of which (mostly 3–6 mm long) carried conspecific pollen. Fewer than 8% of individual insects were found to be carrying single-species pollen exclusively and none could be described as specialist pollen foragers. The introduced honeybee carried greater quantities of pollen than any native species but was not necessarily a reliable pollinator. The brief flowering periods in Neolitsea dealbata (3–4 weeks) and Litsea leefeana (4–5 weeks) populations were synchronized among individuals. Flowering in the Diospyros pentamera population extended over 15 weeks and most individuals were in flower for most of this period. Staminate trees began flowering earlier, produced more flowers and attracted relatively more insects than did pistillate trees, suggesting a density-dependent response of pollinators to flowering performance. Pollen was trapped in greater quantities on insects at staminate trees than at pistillate trees. Insect numbers increased at peak flowering periods and Diptera were the most abundant flower visitors. Anthophilous Coleoptera were more numerous at staminate than at pistillate trees in all three tree species populations. Larger quantities of pollen were mobilized during peak flowering times although the greatest quantities were transferred to pistillate canopies towards the end of the population flowering periods. Diptera carried pollen more often to pistillate N. dealbata and L. leefeana trees than did other groups whereas Coleoptera carried pollen more often to pistillate D. pentamera trees. The two contrasting flowering performances in the three tree species are discussed with reference to mechanisms that facilitate pollen transfer between staminate and pistillate trees.  相似文献   
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SYNOPSIS. The functional diversity of vertebrate skeletal musclelargely depends upon its structure. An important aspect of thisis its hierarchical design. At the cellular level, muscle fibersform three categories whose functional properties grade intoeach other: slow-oxidative fibers with high endurance to fatigue,fast-oxidative\glycolytic fibers also endurant but with greatermetabolic diversity, and fast-glycolytic fibers with limitedendurance but quick response. This partitioning of functionalproperties found among single muscle fibers is conserved ata second level of the structural hierarchy, since the groupof myofibers innervated by a single motor neuron (together calleda motor unit) is composed of the same fiber type. Differentmotor units may be recruited in an orderly pattern dependingupon the functional demands of a particular behavior. Finally,groups of motor units innervated by axons travelling togetherin the primary nerve branches may form discrete neuromuscularcompartments at a third level of structural hierarchy. Differentmotor units may be found in regional arrays in these compartmentsso that slow or fast units tend to be clumped together and maybe recruited together as larger functional units. This hierarchicalorganization of skeletal muscle may be a fundamental vertebrateplan that allows the diversity of functions so evident in vertebratebehavior.  相似文献   
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Compared to air-breathers, animals that respire aquaticallyhave limited access to O2 and their habitats are more subjectto hypoxia. Because O2 diffuses more slowly through water thanair, animals in water experience greater diffusion boundarylayer effects on respiratory gas diffusion. While ventilationand specialized exchange surfaces mitigate O2 diffusion limitationson respiration, most animal phyla, particularly those confinedto aquatic habitats, lack these. Diffusion limitation influencesthe ontogeny of aquatic animals and may have also shaped Precambrianmetazoans. In spite of a more limited O2 access, aquatic animalsdisplay a much greater spectrum of respiratory adaptation, rangingfrom the loss of Hb in icefishes to the independent evolution,invention, and acquisition of Hb in many invertebrates confinedto hypoxic habitats. Three features of aquatic respiratory systemsdistinguishing them from aerial systems are the widespread occurrenceof integumental respiration, the frequent presence of combinedrespiratory and feeding surfaces, and the profound effect ofhypoxia on shaping respiratory adaptation, both in shallow waterand in the deep sea.  相似文献   
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