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251.
The frequency of memory T cells in the spleens of mice primed with the A/Puerto Rico/8/34/1 (H1N1) (PR8) influenza A virus was determined using limiting dilution protocols. The mean frequency of memory cytotoxic T lymphocytes (CTL) in spleen populations from mice primed with PR8 and restimulated in vitro with the same virus ranged, in six experiments, from 1 in 1600 to 1 in 4800. In the same experiments, the frequencies of CTL capable of lysing targets infected with the heterologous A/Hong Kong/×31/68 (H3N2) (HK) virus ranged from 1 in 1700 to 1 in 4700 nucleated spleen cells. Thus, at least 80% of PR8 (H1N1) influenza-specific cytotoxic T cells are lytic for both HK (H3N2)- and PR8-infected target cells. Further analysis of the specificity of a series of monoclonal influenza-specific CTL was achieved by expanding limit dilution cultures and then testing lytic capacity for targets infected with a range of influenza A viruses. This approach confirmed that the great majority of PR8-primed influenza-specific CTL are cross-reactive for a variety of influenza A subtypes. These experiments demonstrate the feasibility of quantitating different influenza-immune CTL specificities at a stage very close to removal of cells from the animal.  相似文献   
252.
ABSTRACT

This investigation aims at assessing patterns of spatial genetic structure of the teleost fish Sardina pilchardus across the Siculo-Tunisian Strait (a well-known discontinuous biogeographic area) and delineating putative genetic stocks within the species. For this purpose, a total of 180 specimens, collected from 11 locations stretching across the western and eastern Mediterranean coasts of Tunisia, were analysed genetically by means of 18 nuclear allozyme loci. The outcome of this study revealed strong genetic differentiation among populations, with the marked genetic distinctiveness of the central Tunisian population at Mahdia. Despite the delineation of seven well-defined genetic groups, no significant correlation was found between genetic and geographic distances. Besides, the recorded population subdivision did not align with biogeographic boundaries, suggesting the presence of chaotic genetic patchiness. Recent genetic bottlenecks were evidenced in S. pilchardus populations. Patchy migration patterns were recorded among the examined pairs of sardine populations. Among the recorded 16 polymorphic loci, GPI-2 and SOD appeared to be subject to natural selection. Patterns of population genetic differentiation and structuring were not found to be driven by outlier loci that appeared to be under selection. Furthermore, the detected neutral GPI-1 locus was found to be responsible for most of the genetic variation among identified genetic clusters. Hence, natural selection cannot cause the detected genetic heterogeneity among sardine samples. Different explanations to the origin of chaotic genetic patterns, observed within S. pilchardus, were discussed.  相似文献   
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