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利用携带枯草芽孢杆菌 sacB 基因的转座子对根瘤菌质粒进行治愈和缺失的直接筛选。

Direct selection for curing and deletion of Rhizobium plasmids using transposons carrying the Bacillus subtilis sacB gene.

作者信息

Hynes M F, Quandt J, O'Connell M P, Pühler A

机构信息

Soil Science Section, Agriculture Canada Research Station, Lethbridge, Alberta.

出版信息

Gene. 1989 May 15;78(1):111-20. doi: 10.1016/0378-1119(89)90319-3.

Abstract

We have constructed derivatives of the transposon Tn5 carrying the mob site (oriT) of plasmid RP4, and an nptI-sacB-sacR cassette [Ried and Collmer, Gene 57 (1987) 239-246]. The mob site, in conjunction with the antibiotic-resistance markers carried on the transposons, allows identification of transposon inserts in cryptic plasmids by mobilisation to other strains. The sacB-sacR genes allow direct selection for the loss or curing of plasmids, because only strains which no longer contain an active sacB gene are able to grow on media containing sucrose. We have tested these transposons in four strains of Rhizobium leguminosarum and two strains of Rhizobium meliloti, and have been able to demonstrate curing of several large cryptic plasmids, and generation of large deletions in many other plasmids. This method has enabled us to show that the R. leguminosarum plasmids pRL12JI and pR1eVF39f carry auxotrophic markers, and that the plasmid pR1eVF39c carries genes which affect colony morphology.

摘要

我们构建了携带质粒RP4的mob位点(oriT)以及nptI - sacB - sacR盒式结构的转座子Tn5衍生物[里德和科尔默,《基因》57(1987年)239 - 246]。mob位点与转座子上携带的抗生素抗性标记相结合,通过向其他菌株的转移来鉴定隐蔽质粒中的转座子插入。sacB - sacR基因允许直接选择质粒的丢失或消除,因为只有不再含有活性sacB基因的菌株才能在含有蔗糖的培养基上生长。我们已在四株豌豆根瘤菌和两株苜蓿根瘤菌中测试了这些转座子,并能够证明消除了几个大的隐蔽质粒,并在许多其他质粒中产生了大的缺失。这种方法使我们能够表明豌豆根瘤菌质粒pRL12JI和pR1eVF39f携带营养缺陷型标记,并且质粒pR1eVF39c携带影响菌落形态的基因。

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