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Temperature-sensitive mutants of Physarum polycephalum: viability growth and nuclear replication.

机译:多头头的温度敏感突变体:活力生长和核复制。

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摘要

Using a selfing strain of Physarum polycephalum that forms haploid plasmodia, we have isolated temperature-sensitive growth mutants in two ways. The negative selectant, netropsin, was used to enrich for temperature-sensitive mutants among a population of mutagenized amoebae, and, separately, a nonselective screening method was used to isolate plasmodial temperature-sensitive mutants among clonal plasmodia derived from mutagenized amoebae. Complementation in heterokaryons was used to sort the mutants into nine functional groups. When transferred to the restrictive temperature, two mutants immediately lysed, whereas the remainder slowed or stopped growing. Of the two lytic mutants, one affected both amoebae and plasmodia, and the other affected plasmodia alone. The growth-defective mutants were examined for protein and deoxyribonucleic acid synthesis and for aberrations in mitotic behavior. One mutant may be defective in both protein and deoxyribonucleic acid synthesis, and another only in deoxyribonucleic acid synthesis. The latter shows a striking reduction in the frequency of postmitotic reconstruction nuclei at the restrictive temperature. We believe that this mutant, MA67, is affected in a step in the nuclear replication cycle occurring late in G2. Execution of this step is necessary for both mitosis and chromosome replication.
机译:使用形成单倍体疟原虫的多头Physarum polycephalum自交系,我们以两种方式分离了对温度敏感的生长突变体。负选择剂netropsin用于在诱变的变形虫的群体中富集温度敏感性突变体,并且分别使用非选择性筛选方法从诱变的变形虫的克隆性疟原虫中分离疟原虫的温度敏感性突变体。异核体中的互补被用于将突变体分为九个功能组。当转移到极限温度时,两个突变体立即裂解,而其余的变慢或停止生长。在两个溶菌突变体中,一个影响变形虫和疟原虫,另一个影响疟原虫。检查生长缺陷的突变体的蛋白质和脱氧核糖核酸合成以及有丝分裂行为的异常。一个突变体可能在蛋白质和脱氧核糖核酸合成中均具有缺陷,而另一个仅在脱氧核糖核酸合成中具有缺陷。后者显示在限定温度下有丝分裂后重建核的频率显着降低。我们相信,该突变体MA67在G2晚期发生的核复制循环的一个步骤中受到影响。该步骤的执行对于有丝分裂和染色体复制都是必需的。

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