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81.
The principles of fluorescent microscopy are discussed, together with the apparatus necessary for its study. Specially necessary is a lamp giving radiation in the ultraviolet, with filters to remove most of the visible light. Some histological structures have a natural fluorescence and may be studied directly. In other instances fluorescence is induced by the addition of various activating substances (usually dyes) known as fluorochromes. A list of commercial preparations of this sort is given, together with the type of fluorescence which they induce in various histological structures.  相似文献   
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Rhizobium trifolii organisms associated with eleven species ofTrifolium were isolated and studied by means of antigen-antibody agglutination and immune diffusion techniques. Ten serologic types were differentiated from the eleven species of nativeTrifolium. Certain serologic types of rhizobia were widely distributed among the native species ofTrifolium, whereas other rhizobial types were found only on one or two species. The distribution pattern appears to be independent of the proportion of each type present in the soil population. This may indicate specificity of selection between a host legume and serologic types of rhizobia.  相似文献   
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Summary The effect of cycloheximide upon protein synthesis, RNA metabolism, and polyribosome stability was investigated in the parent and in two temperature-sensitive mutant yeast strains defective respectively in the initiation of polypeptide chains and in messenger RNA synthesis. Cycloheximide at high concentrations (100 g/ml) severely inhibits but does not completely stop protein synthesis (Fig. 1); the incorporation of 14C-amino acids into polyribosome-associated nascent polypeptide chains continues at a slow but measurable rate (Figs. 2 and 3). Polyribosome structures are stable in the parent strain at 36° whether or not cycloheximide is present (Fig. 5). However, in Mutant ts- 136, a mutant defective in messenger as well as in stable RNA production, polyribosomes decay at the restrictive temperature (36° C) at the same rate whether or not cycloheximide is present (Fig. 5). Thus the maintenance of polyribosome structures is dependent upon the continued synthesis of messenger RNA even under conditions of extremely slow polypeptide chain elongation. In mutant ts- 187, a mutant defective in the initiation of polypeptide chains, all of the polyribosomes decay to monoribosomes within 2 minutes after a shift to the restrictive temperature; cycloheximide completely prevents this decay demonstrating that this mutant is capable of continued messenger RNA synthesis at 36° C. Consistent with these observations is the fact that a newly synthesized heterogeneously sedimenting RNA fraction continues to enter polyribosomes in the presence of cycloheximide whereas the entrance of newly synthesized ribosomal RNA is severely inhibited (Figs. 7, 8, 9). The decay or lack of decay of polyribosomes at the restrictive temperature is, therefore, a rapid and discriminating test for the analysis of mutants defective in macromolecule synthesis. Mutants which exhibit a decay of polyribosomes in the presence of cycloheximide are likely to be defective directly or indirectly in the synthesis of messenger RNA whereas mutants in which decay is prevented or slowed by cycloheximide are likely to be defective in some factor required for the association of ribosomes and messenger RNA.  相似文献   
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To investigate the effect of different environmental and personal factors on ventilatory function 10,971 children resident and going to school in four areas of Kent were examined. Details of past respiratory illnesses were obtained by a questionary completed by the parents; the examination included measurement of height, weight, and peak expiratory flow.Area of residence, social class, family size, and a past history of pneumonia, bronchitis, or asthma were found to be associated with differing levels of peak expiratory flow. These four factors acted independently, and the effects were additive. It is suggested that environment in the early years of life can produce adverse changes which may exist throughout life and contribute to the development of chronic respiratory disease.  相似文献   
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