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一项关于与酿酒酵母杀伤现象相关的双链RNA的传递与结构的研究。

A study of the transmission and structure of double stranded RNAs associated with the killer phenomenon in Saccharomyces cerevisiae.

作者信息

Sweeney T K, Tate A, Fink G R

出版信息

Genetics. 1976 Sep;84(1):27-42. doi: 10.1093/genetics/84.1.27.

Abstract

Killer strains contain two double stranded RNAs, L and M. The M dsRNA appears to be necessary for production of a toxin and for resistance to that toxin. Mutant strains have been found that are defective in their ability to kill and in their resistance to toxin. These sensitive, non-killer strains have altered dsRNA composition. One class has no M dsRNA. Another class of sensitive, non-killers called suppressives has no M dsRNA but instead has smaller dsRNAscalledS. Indiploidsresulting from a cross of a wild-type killer by a suppressive the transmission of the M dsRNA is suppressed by the S dsRNA. When a suppressive is crossed by a strain with no M dsRNA, the diploids and all four meiotic spores have the S dsRNA characteristic of the parental suppressive strain. Suppressive strains do not suppress each other. Intercrosses between two different suppressives yields diploids with both parental S dsRNAs. These two S dsRNAs are transmitted to all 4 meiotic progeny. Another class of mutants has been found which is defective for one of the traits but retains the other. One type, temperature-sensitive killers, has a normal dsRNA composition but is unable to kill at 30 degrees. The other type, immunity-minus, has a complex dsRNA pattern. The immunity-minus strain is extremely unstable during mitotic growth and segregates several different types of non-killers. Analysis of the dsRNAs from wild type and the mutants by electron microscopy shows that the L, M, and S dsRNAs are linear. All strains regardless of killer phenotype appear to have the same size L dsRNA.

摘要

杀伤菌株含有两条双链RNA,L和M。M双链RNA似乎是产生毒素和对该毒素产生抗性所必需的。已发现突变菌株在杀伤能力和对毒素的抗性方面存在缺陷。这些敏感的非杀伤菌株的双链RNA组成发生了改变。一类没有M双链RNA。另一类敏感的非杀伤菌株称为抑制性菌株,没有M双链RNA,而是有较小的称为S的双链RNA。在野生型杀伤菌株与抑制性菌株杂交产生的二倍体中,M双链RNA的传递被S双链RNA抑制。当抑制性菌株与没有M双链RNA的菌株杂交时,二倍体和所有四个减数分裂孢子都具有亲本抑制性菌株特有的S双链RNA。抑制性菌株不会相互抑制。两个不同抑制性菌株之间的杂交产生具有两个亲本S双链RNA的二倍体。这两个S双链RNA会传递给所有4个减数分裂后代。还发现了另一类突变体,它们在其中一个性状上有缺陷,但保留了另一个性状。一种类型是温度敏感型杀伤菌株,其双链RNA组成正常,但在30摄氏度时无法杀伤。另一种类型是免疫缺陷型,具有复杂的双链RNA模式。免疫缺陷型菌株在有丝分裂生长过程中极其不稳定,会分离出几种不同类型的非杀伤菌株。通过电子显微镜对野生型和突变体的双链RNA进行分析表明,L、M和S双链RNA是线性的。所有菌株无论杀伤表型如何,似乎都具有相同大小的L双链RNA。

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The inheritance of the killer character in yeast.酵母中杀伤特性的遗传
Genet Res. 1969 Feb;13(1):71-83. doi: 10.1017/s0016672300002743.

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