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Genetic transfer of the mcd gene in soil

机译:Mcd基因在土壤中的遗传转移

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Aims: To investigate the role of horizontal gene transfer of mcd (methylcarbamate-degrading) gene in high genetic diversity of carbofuran-degrading bacteria. Methods and Results: The actuality of genetic transfer from degraders to an Agrobacterium tumefaciens strain was determined in liquid medium. The mcd gene was chosen for transfer experiments. Transconjugants were obtained irrespective of the type of the donor strain (Gram-positive or Gram-negative), size of the inoculum, or nature and concentration of the pesticide in the medium. Soil microcosms, inoculated with or without the donor and/or recipient strains were used. The size of the initial degrading population (treated or untreated soil) and the nature of the inoculated donor strains were considered. More transconjugants were isolated in the previously treated soil than in the untreated soil. Agrobacterium transconjugants were isolated even when the donor strain was not inoculated, probably as a result of gene transfer from indigenous degrading population to the recipient strain. Moreover, potential transconjugants belonging to the Pseudomonas genus were isolated. Conclusions: Our results seem to demonstrate that the mcd gene is transferable in soil among bacterial populations. Significance and Impacts of the Study: The transfer of the mcd gene is partly responsible for the high genetic diversity of micro-organisms able to catabolize carbofuran.
机译:目的:探讨mcd(甲基氨基甲酸酯降解)基因水平基因转移在呋喃呋喃降解细菌高遗传多样性中的作用。方法和结果:确定了在液体培养基中从降解子到根癌农杆菌菌株的遗传转移的现实性。选择了mcd基因用于转移实验。不论供体菌株的类型(革兰氏阳性或革兰氏阴性),接种物的大小或培养基中农药的性质和浓度如何,都可获得转接合剂。使用接种有或没有供体和/或受体菌株的土壤微观世界。考虑了初始降解种群的大小(处理过或未处理过的土壤)和接种的供体菌株的性质。与未处理的土壤相比,在先前处理的土壤中分离出的转导结合剂更多。即使未接种供体菌株,农杆菌转导结合物也被分离出来,这可能是由于基因从本地降解人群转移到受体菌株的结果。此外,分离了假单胞菌属的潜在转导结合体。结论:我们的结果似乎证明了mcd基因可在细菌种群之间的土壤中转移。该研究的意义和影响:mcd基因的转移部分归因于能够分解呋喃丹的微生物的高遗传多样性。

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