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The potential for intraspecific horizontal gene exchange by natural genetic transformation: sexual isolation among genomovars of Pseudomonas stutzeri

机译:自然遗传转化的内部卧式基因交换的潜力:Pseudomonass Stutzeri的基因组术中的性孤立

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The potential for natural genetic transformation among the seven genomovars (gvs) of Pseudomonas stutzeri was investigated. Of the 12 strains originating from a variety of environments, six strains (50%) from five gvs were competent for DNA uptake (RifR marker). The transformation frequencies varied over more than three orders of magnitude. With three highly transformable strains (ATCC 17587, ATCC 17641, JM300) from two gvs and all other strains as DNA donors, sexual isolation from other pseudomonad species (Pseudomonas alcaligenes, Pseudomonas mendocina) and also from other P. stutzeri gvs was observed (i.e. heterogamic transformation was reduced). For ATCC 17587 (gv?2) and ATCC 17641 (gv?8), heterogamic transformation was up to two and three orders of magnitude lower with other P. stutzeri gv?and the other species employed, respectively, than in homogamic transformations. Interestingly, whereas with ATCC 17587 and ATCC 17641 heterogamic transformation with donors of the same gv?was as high as homogamic transformation, JM300 (gv?8) was sexually isolated from its nearest relative (ATCC 17641). Also, sexual isolation of JM300 from other P. stutzeri gvs was most pronounced among the recipients tested, in some cases reaching the highest levels found with the other species as DNA donors (reduction of heterogamic transformation by 4000-fold). Results obtained here from nucleotide sequence analysis of part (422?nt) of the gene for the RNA polymerase β subunit (rpoB) from various strains indicated that sexual isolation of ATCC 17641 increased with nucleotide sequence divergence. Implications of the observed great heterogeneity in transformability, competence levels and sexual isolation among strains are discussed with regard to the evolution of P. stutzeri.
机译:研究了七种子情素(GVS)的七种基因组(GVS)的天然遗传转化的潜力研究。在源自各种环境的12个菌株中,来自五个GV的六种菌株(50%)是DNA摄取(RIFR标志物)的能力。变换频率在三个以上的数量级上变化。用来自两种GV和所有其他菌株的三种高度可转化的菌株(ATCC 17587,ATCC 17641,JM300)作为DNA供体,从其他假单胞菌种类(假单胞菌alcaligenes,假单胞菌门CONDOCINA)以及其他P.Stutzeri GVS的性分离(即异源性转化减少了)。对于ATCC 17587(GVα2)和ATCC 17641(GVα8),与其他P.Stutzeri GV的异源性转化达到两倍且三个数量级,并且分别与统一转化中使用的其他物种。有趣的是,与ATCC 17587和ATCC 17641与相同GV的供体的异源性转化?与同型转化一样高,JM300(GV≥8)与最近的相对(ATCC 17641)进行性分离。此外,来自其他P.Stutzeri GV的JM300的性孤立在测试的受体中最为明显,在某些情况下,达到与DNA供体的其他物种发现的最高水平(减少了4000倍的异源性转化)。这里获得的结果来自各种菌株的RNA聚合酶β亚基(RPOB)的部分(422〜NT)的核苷酸序列分析表明,ATCC 17641的性分离随核苷酸序列发散而增加。关于P.Stutzeri的演变,讨论了观察到的变革性,能力水平和性孤立中的巨大异质性的影响。

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