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Genetic requirements for the function of the archaeal virus SSV1 in Sulfolobus solfataricus: construction and testing of viral shuttle vectors.

机译:猪硫细菌中古细菌SSV1功能的遗传要求:病毒穿梭载体的构建和测试。

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摘要

Directed open reading frame (ORF) disruption and a serial selection technique in Escherichia coli and the extremely thermophilic archaeon Sulfolobus solfataricus allowed the identification of otherwise cryptic crucial and noncrucial viral open reading frames in the genome of the archaeal virus SSV1. It showed that the 15. 5-kbp viral genome can incorporate a 2.96-kbp insertion without loss of viral function and package this DNA properly into infectious virus particles. The selection technique, based on the preferential binding of ethidium bromide to relaxed DNA and the resulting inhibition of endonuclease cleavage to generate a pool of mostly singly cut molecules, should be generally applicable. A fully functional viral shuttle vector for S. solfataricus and E. coli was made. This vector spreads efficiently through infected cultures of S. solfataricus, its replication is induced by UV irradiation, it forms infectious virus particles, and it is stable at high copy number in both S. solfataricus and E. coli. The classification of otherwise unidentifiable ORFs in SSV1 facilitates genetic analysis of this virus, and the shuttle vector should be useful for the development of genetic systems for Crenarchaeota.
机译:在大肠杆菌和极端嗜热古细菌Sulfolobus solfataricus中进行定向开放阅读框(ORF)破坏和序列选择技术,可以鉴定古细菌SSV1基因组中否则为隐秘的关键和非关键病毒开放阅读框。结果表明,15。5-kbp病毒基因组可以整合2.96-kbp的插入而不会丧失病毒功能,并将此DNA正确包装到感染性病毒颗粒中。通常应采用基于溴化乙锭与松弛的DNA的优先结合以及对核酸内切酶裂解的抑制作用以产生大部分单切分子库的选择技术。制备了用于S.solfataricus和大肠杆菌的全功能病毒穿梭载体。该载体在感染链球菌的培养物中有效地传播,其复制通过紫外线辐射诱导,形成感染性病毒颗粒,并且在链霉菌和大肠杆菌中均以高拷贝数稳定。 SSV1中其他无法识别的ORF的分类有助于对该病毒的遗传分析,并且穿梭载体应可用于开发Crenarchaeota的遗传系统。

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