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DNA限制是斯氏假单胞菌JM300自然转化的一个障碍。

DNA restriction is a barrier to natural transformation in Pseudomonas stutzeri JM300.

作者信息

Berndt Cecilia, Meier Petra, Wackernagel Wilfried

机构信息

Genetik, Fachbereich Biologie, Geo- und Umweltwissenschaften, Carl von Ossietzky Universität Oldenburg, POB 2503, D-26111 Oldenburg, Germany.

出版信息

Microbiology (Reading). 2003 Apr;149(Pt 4):895-901. doi: 10.1099/mic.0.26033-0.

Abstract

Natural transformation is a mechanism for intra- and interspecific transfer of chromosomal DNA in Pseudomonas stutzeri. During this process a single strand derived from duplex DNA is transported into the cytoplasm and recombined with resident DNA. By electroporation, which introduces duplex DNA into cells, 100-fold lower transformation frequencies of P. stutzeri JM300 were observed with shuttle vector or broad-host-range plasmid DNA when the plasmids had replicated in Escherichia coli and not in P. stutzeri JM300. Moreover, the natural transformation with cloned chromosomal P. stutzeri JM300 DNA was reduced about 40-fold when the DNA had not been propagated in P. stutzeri JM300 but in E. coli. Restriction was also active during natural transformation by single-stranded DNA. Restriction during natural transformation and electroporation was abolished in mutants isolated from mutagenized JM300 cells after applying a multiple plasmid electroporation strategy for the enrichment of restriction-defective strains. The mutants had retained the ability for DNA modification. The P. stutzeri strain ATCC 17587 was found to have no restriction-modification system as seen in JM300. It is discussed whether restriction during natural transformation acts at presynaptic or postsynaptic stages of transforming DNA. Restriction as a barrier to transformation apparently contributes to sexual isolation and therefore may promote speciation in the highly diverse species P. stutzeri.

摘要

自然转化是斯氏假单胞菌中染色体DNA进行种内和种间转移的一种机制。在此过程中,双链DNA衍生的单链被转运到细胞质中,并与宿主DNA重组。通过电穿孔法将双链DNA导入细胞时,当穿梭载体或广宿主范围质粒DNA在大肠杆菌中而非斯氏假单胞菌JM300中复制时,观察到斯氏假单胞菌JM300的转化频率降低了100倍。此外,当克隆的斯氏假单胞菌JM300染色体DNA未在斯氏假单胞菌JM300中而是在大肠杆菌中繁殖时,其天然转化效率降低了约40倍。在单链DNA介导的自然转化过程中,限制作用也很活跃。在应用多质粒电穿孔策略富集限制缺陷菌株后,从诱变的JM300细胞中分离出的突变体中,自然转化和电穿孔过程中的限制作用被消除。这些突变体保留了DNA修饰能力。发现斯氏假单胞菌菌株ATCC 17587没有JM300中所见的限制修饰系统。文中讨论了自然转化过程中的限制作用是在转化DNA的突触前还是突触后阶段起作用。限制作为转化的障碍显然有助于性隔离,因此可能促进高度多样化的斯氏假单胞菌物种的物种形成。

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