首页> 外文期刊>Journal of microbiology and biotechnology >Genes for the Catabolism of Deoxyfructosyl Glutamine in pAtC58 Are Attributed to Utilization of Octopine in Agrobacterium tumefaciens Strain NT1
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Genes for the Catabolism of Deoxyfructosyl Glutamine in pAtC58 Are Attributed to Utilization of Octopine in Agrobacterium tumefaciens Strain NT1

机译:pAtC58中的脱氧果糖基谷氨酰胺分解代谢的基因归因于根癌农杆菌NT1菌株中的章鱼碱的利用。

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Nopaline-type Agrobacterium tumefaciens strain C58 cannot utilize octopine (Oct) as the sole carbon and nitrogen sources. This strain harbors two plasmids; a virulent plasmid, pTiC58, and a megaplasmid, pAtC58. From strain NT1, which is a derivative of C58 harboring only pAtC58, we isolated spontaneous mutants that utilize Oct as the sole nitrogen source. These Oct-catabolizing mutants, however, could not utilize the opine as the sole carbon source. In contrast, strain UIA5, a plasmid-free derivative of C58, could not give rise to such mutants. The mutations isolated from NT1 were mapped to socR in pAtC58, which is a negative regulator of the soc operon responsible for the uptake and catabolism of an Amadori opine, deoxyfructosyl glutamine (Dfg). A derivative of UIA5 carrying a clone of the soc operon with a transposon inserted in socR also utilizes Oct as the sole nitrogen source. However, UIA5 harboring the operon with mutations in each of the structural genes in the soc operon, soc A, B, C, and D, lost the ability to generate spontaneous Oct-utilizing mutants, suggesting that soc genes in pAtC58 are required for the utilization of Oct as a nitrogen source, and that derepressed expression of these genes allows cells to utilize Oct. In contrast, Oct-catabolizing mutants derived from C58, which grew using Oct as the sole nitrogen source, could also utilize the opine as the sole carbon source. These mutants did not carry any detectable mutations in socR or the region upstream to the gene in pAtC58, suggesting that mutations occurring elsewhere in the genome, most likely in pTiC58, allow the uptake and catabolism of the opine.
机译:胭脂碱型根癌农杆菌菌株C58不能利用章鱼碱(Oct)作为唯一的碳源和氮源。该菌株带有两个质粒。毒性质粒pTiC58和大质粒pAtC58。从仅包含pAtC58的C58衍生物NT1菌株中,我们分离出利用Oct作为唯一氮源的自发突变体。这些Oct分解代谢突变体,但是,不能利用鸦片作为唯一的碳源。相反,菌株UIA5,C58的无质粒衍生物,不能产生这种突变体。从NT1分离的突变被定位到pAtC58中的socR,pAtC58是soc操纵子的负调控子,负责Amadori鸦片脱氧果糖基谷氨酰胺(Dfg)的吸收和分解代谢。带有soc操纵子克隆并插入转座子的UIA5衍生物也利用Oct作为唯一的氮源。但是,UIA5携带的操纵子在soc操纵子的每个结构基因中都有突变,soc A,B,C和D失去了产生自发利用Oct的突变体的能力,这表明pAtC58中的soc基因是必需的。利用Oct作为氮源,而这些基因的表达降低使得细胞可以利用Oct。相反,使用Oct作为唯一氮源生长的C58衍生的Oct代谢突变体也可以利用鸦片作为唯一氮源。碳源。这些突变体在pAtC58中的socR或基因上游区域没有携带任何可检测到的突变,这表明基因组其他地方(最可能在pTiC58中)发生的突变允许摄取和分解阿片类药物。

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