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Shaw SR 《Science (New York, N.Y.)》1969,165(3888):88-90
The extent to which light can escape from one ommatidium into its neighbors in the compound eye has been examined by recording from single receptors during stimulation of single facets. In the "apposition" eye of the drone honeybee and locust, optical interaction is extremely small. In the "superposition" eye of the crayfish, more than half the light captured by the average cell gets in through neighboring facets, even when screening pigments are in the fully lightadapted position. 相似文献
48.
Shaw EB 《Science (New York, N.Y.)》1932,76(1981):566-567
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Genetic variation in HTLV-III/LAV over time in patients with AIDS or at risk for AIDS 总被引:89,自引:0,他引:89
B H Hahn G M Shaw M E Taylor R R Redfield P D Markham S Z Salahuddin F Wong-Staal R C Gallo E S Parks W P Parks 《Science (New York, N.Y.)》1986,232(4757):1548-1553
In a study of genetic variation in the AIDS virus, HTLV-III/LAV, sequential virus isolates from persistently infected individuals were examined by Southern blot genomic analysis, molecular cloning, and nucleotide sequencing. Four to six virus isolates were obtained from each of three individuals over a 1-year or 2-year period. Changes were detected throughout the viral genomes and consisted of isolated and clustered nucleotide point mutations as well as short deletions or insertions. Results from genomic restriction mapping and nucleotide sequence comparisons indicated that viruses isolated sequentially had evolved in parallel from a common progenitor virus. The rate of evolution of HTLV-III/LAV was estimated to be at least 10(-3) nucleotide substitutions per site per year for the env gene and 10(-4) for the gag gene, values a millionfold greater than for most DNA genomes. Despite this relatively rapid rate of sequence divergence, virus isolates from any one patient were all much more related to each other than to viruses from other individuals. In view of the substantial heterogeneity among most independent HTLV-III/LAV isolates, the repeated isolation from a given individual of only highly related viruses raises the possibility that some type of interference mechanism may prevent simultaneous infection by more than one major genotypic form of the virus. 相似文献
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Lopatto D Alvarez C Barnard D Chandrasekaran C Chung HM Du C Eckdahl T Goodman AL Hauser C Jones CJ Kopp OR Kuleck GA McNeil G Morris R Myka JL Nagengast A Overvoorde PJ Poet JL Reed K Regisford G Revie D Rosenwald A Saville K Shaw M Skuse GR Smith C Smith M Spratt M Stamm J Thompson JS Wilson BA Witkowski C Youngblom J Leung W Shaffer CD Buhler J Mardis E Elgin SC 《Science (New York, N.Y.)》2008,322(5902):684-685