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携带trpE26突变的枯草芽孢杆菌菌株中染色体片段易位的证据。

Evidence for the Translocation of a Chromosome Sement in Bacillus subtilis Strains Carrying the trpE26 Mutation.

作者信息

Trowsdale J, Anagnostopoulos C

出版信息

J Bacteriol. 1975 Jun;122(3):886-98. doi: 10.1128/jb.122.3.886-898.1975.

Abstract

The replication order of markers was studied in Bacillus subtilis strains bearing the trpE26 mutation by the use of the density transfer technique. An important difference in this order was observed in comparison with that of strain 168 T-. All markers tested of a chromosome segment extending from trpD to ilvA replicated early, after purB6 and before thr-5. Two markers flanking this region, trpE8 and citK7, replicated late as usual. The results suggested that this segment was shifted in trpE26 strains to a region closer to the origin of replication. PBS-1-mediated transduction crosses corroborated this hypothesis and revealed the position of the translocated segment. (i) Linkage was demonstrated for markers in the segment (hisH2, tryA1, met B3, ilvA2) to thr-5 and ald; (ii) aroB2 and citK7 were found to be linked; and (iii) linkage of cysB3 to thr-5 was lost in trpE26 strains. These findings made it possible to account for the characteristics of the trpE26 mutation and to propose a model explaining the fact that all trpE26+ transformants or transductants are merodiploid. The model calls for fusion of two genetic elements: two independent chromosomes, or two arms of a replicating structure. The resulting chromosome bears a long tandem duplication. Most of the features of this system of merodiploid formation can be interpreted by use of this model: the segregation pattern of the diploids, the stabilization of the unstable clones, and the length of the duplicated region. A relatively stable diploid strain was also studied by the density transfer technique. The data show that it remained diploid for the region corresponding to the translocated segment and are in agreement with the structure predicted by the model.

摘要

利用密度转移技术,研究了携带trpE26突变的枯草芽孢杆菌菌株中标记的复制顺序。与168 T-菌株相比,观察到该顺序存在重要差异。从trpD延伸到ilvA的染色体片段上所有测试的标记在purB6之后且在thr-5之前早期复制。该区域两侧的两个标记trpE8和citK7像往常一样晚期复制。结果表明,该片段在trpE26菌株中转移到了更接近复制起点的区域。PBS-1介导的转导杂交证实了这一假设,并揭示了易位片段的位置。(i) 证明了该片段中的标记(hisH2、tryA1、met B3、ilvA2)与thr-5和ald连锁;(ii) 发现aroB2和citK7连锁;(iii) 在trpE26菌株中cysB3与thr-5的连锁消失。这些发现使得解释trpE26突变的特征并提出一个模型来解释所有trpE26+转化体或转导子都是部分二倍体这一事实成为可能。该模型要求两个遗传元件融合:两条独立的染色体,或复制结构的两条臂。产生的染色体带有一个长的串联重复。部分二倍体形成系统的大多数特征可以用这个模型来解释:二倍体的分离模式、不稳定克隆的稳定以及重复区域的长度。还通过密度转移技术研究了一个相对稳定的二倍体菌株。数据表明,对应于易位片段的区域它仍然是二倍体,这与模型预测的结构一致。

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