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Isolation and Preliminary Characterization of Temperature-Sensitive Mutants of Influenza Virus

机译:流感病毒温度敏感突变体的分离与初步鉴定

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摘要

Isolation of temperature-sensitive (ts) mutants was attempted from the WSN strain of influenza A virus which was grown and assayed in MDBK cells. After growth of wild-type virus in the presence of 5-fluorouracil, 15 ts mutants were selected for which the ratio of plaquing efficiency at 39.5 C to that at 33 C was 10−3 or less. In pairwise crosses of ts mutants, recombination and complementation were either very efficient or undetectable. It is suggested, therefore, that the viral genome consists of physically discrete units and recombination occurs as an exchange of these units. All 15 mutants have been assigned with certainty into five recombination groups. Three mutants are suspected to be double mutants. Any two complementing mutants always recombined with each other, and noncomplementing mutants did not recombine. In physiological tests, mutants showed diverse patterns of functional defects at the nonpermissive temperature. However, it was not always possible to correlate these physiological defects with the results of genetic characterization.
机译:尝试从在MDBK细胞中生长和检测的甲型流感病毒的WSN株中分离出对温度敏感的(ts)突变体。在5-氟尿嘧啶存在下使野生型病毒生长后,选择了15 ts突变体,其在39.5 C与33 C下的成斑效率之比为10 或更低。在ts突变体的成对杂交中,重组和互补是非常有效的或不可检测的。因此,建议病毒基因组由物理上离散的单元组成,并且重组是通过交换这些单元而发生的。已将所有15个突变体确定地分为五个重组组。怀疑三个突变体是双突变体。任何两个互补突变体总是彼此重组,而非互补突变体则不重组。在生理测试中,突变体在非容许温度下显示出多种功能缺陷模式。然而,并非总是可能将这些生理缺陷与基因表征的结果相关联。

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