Wickner R B
Genetics. 1976 Feb;82(2):273-85. doi: 10.1093/genetics/82.2.273.
Mutants of the killer plasmid of Saccharomyces cerevisiae have been isolated that depend upon chromosomal diploidy for the expression of plasmid functions and for replication or maintenance of the plasmid itself. These mutants are not defective in any chromosomal gene needed for expression or replication of the killer plasmid.--Haploids carrying these mutant plasmids (called d for diploid-depen;ent) are either unable to kill or unable to resist being killed or both and show frequent loss of the plasmid. The wild-type phenotype (K+R+) is restored by mating the d plasmid-carrying strain with either (a) a wild-type sensitive strain which apparently has no killer plasmid; (b) a strain which has been cured of the killer plasmid by growth at elevated temperature; (c) a strain which has been cured of the plasmid by growth in the presence of cycloheximide; (d) a strain which has lost the plasmid because it carries a mutation in a chromosomal mak gene; or (e) a strain of the opposite mating type which carries the same d plasmid and has the same defective phenotype, indicating that the restoration of the normal phenotype is not due to recombination between plasmid genomes or complementation of plasmid or chromosomal genes.--Sporulation of the phenotypically K+R+ diploids formed in matings between d and wild-type nonkiller strains yields tetrads, all four of whose haploid spores are defective for killing or resistance or maintenance of the plasmid or a combination of these. Every defective phenotype may be found among the segregants of a single diploid clone carrying a d plasmid. These defective segregants resume the normal killer phenotype in the diploids formed when a second round of mating is performed, and the segregants from a second round of meiosis and sporulation are again defective.
酿酒酵母杀伤质粒的突变体已被分离出来,这些突变体的质粒功能表达以及质粒自身的复制或维持依赖于染色体二倍体状态。这些突变体在杀伤质粒表达或复制所需的任何染色体基因中均无缺陷。——携带这些突变质粒的单倍体(称为d,代表依赖二倍体)要么无法杀伤,要么无法抵抗被杀伤,或者两者皆有,并且质粒频繁丢失。通过将携带d质粒的菌株与以下菌株交配,可恢复野生型表型(K+R+):(a)显然没有杀伤质粒的野生型敏感菌株;(b)通过在高温下生长而治愈了杀伤质粒的菌株;(c)通过在环己酰亚胺存在下生长而治愈了质粒的菌株;(d)由于在染色体mak基因中携带突变而丢失了质粒的菌株;或(e)携带相同d质粒且具有相同缺陷表型的相反交配型菌株,这表明正常表型的恢复不是由于质粒基因组之间的重组或质粒或染色体基因的互补。——在d菌株与野生型非杀伤菌株交配形成的表型为K+R+的二倍体进行孢子形成时,产生的四分体中,其所有四个单倍体孢子在杀伤、抗性、质粒维持或这些情况的组合方面均有缺陷。在携带d质粒的单个二倍体克隆的分离物中可发现每种缺陷表型。当进行第二轮交配时,这些有缺陷的分离物在形成的二倍体中恢复正常的杀伤表型,并且第二轮减数分裂和孢子形成产生的分离物再次出现缺陷。