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通过基因互补捕获仅编码2,4-二氯苯氧乙酸:α-酮戊二酸双加氧酶(TfdA)的分解代谢质粒。

Capture of a catabolic plasmid that encodes only 2,4-dichlorophenoxyacetic acid:alpha-ketoglutaric acid dioxygenase (TfdA) by genetic complementation.

作者信息

Top E M, Maltseva O V, Forney L J

机构信息

National Science Foundation Center for Microbial Ecology, Michigan State University, East Lansing 47824, USA.

出版信息

Appl Environ Microbiol. 1996 Jul;62(7):2470-6. doi: 10.1128/aem.62.7.2470-2476.1996.

Abstract

The modular pathway for the metabolism of 2,4-dichlorophenoxyacetic acid (2,4-D) encoded on plasmid pJP4 of Alcaligenes eutrophus JMP134 appears to be an example in which two genes, tfdA and tfdB, have been recruited during the evolution of a catabolic pathway. The products of these genes act to convert 2,4-D to a chloro-substituted catechol that can be further metabolized by enzymes of a modified ortho-cleavage pathway encoded by tfdCDEF. Given that modified ortho-cleavage pathways are comparatively common and widely distributed among bacteria, we sought to determine if microbial populations in soil carry tfdA on plasmid vectors that lack tfdCDEF or tfdB. To capture such plasmids from soil populations, we used a recipient strain of A. eutrophus that was rifampin resistant and carried a derivative of plasmid pJP4 (called pBH501aE) in which the tfdA had been deleted. Upon mating with mixed bacterial populations from soil treated with 2,4-D, transconjugants that were resistant to rifampin yet able to grow on 2,4-D were obtained. Among the transconjugants obtained were clones that contained a ca. 75-kb plasmid, pEMT8. Bacterial hosts that carried this plasmid in addition to pBH501aE metabolized 2,4-D, whereas strains with only pEMT8 did not. Southern hybridization showed that pEMT8 encoded a gene with a low level of similarity to the tfdA gene from plasmid pJP4. Using oligonucleotide primers based on known tfdA sequences, we amplified a 330-bp fragment of the gene and determined that it was 77% similar to the tfdA gene of plasmid pJP4 and 94% similar to tfdA from Burkholderia sp. strain RASC. Plasmid pEMT8 lacked genes that exhibited significant levels of homology to tfdB and tfdCDEF. Moreover, cell extracts from A. eutrophus(pEMT8) cultures did not exhibit TfdB, TfdC, TfdD, and TfdE activities, whereas cell extracts from A. eutrophus(pEMT8)(pBH501aE) cultures did. These data suggest that pEMT8 encodes only tfdA and that this gene can effectively complement the tfdA deletion mutation of pBH501aE.

摘要

产碱杆菌JMP134的质粒pJP4上编码的2,4-二氯苯氧基乙酸(2,4-D)代谢模块化途径似乎是一个例子,即在分解代谢途径的进化过程中招募了两个基因tfdA和tfdB。这些基因的产物将2,4-D转化为氯代儿茶酚,后者可被tfdCDEF编码的修饰邻位裂解途径的酶进一步代谢。鉴于修饰的邻位裂解途径在细菌中相对常见且分布广泛,我们试图确定土壤中的微生物群体是否在缺乏tfdCDEF或tfdB的质粒载体上携带tfdA。为了从土壤群体中捕获此类质粒,我们使用了一株对利福平耐药的产碱杆菌受体菌株,该菌株携带质粒pJP4的衍生物(称为pBH501aE),其中tfdA已被删除。与用2,4-D处理过的土壤中的混合细菌群体交配后,获得了对利福平耐药但能在2,4-D上生长的接合子。在获得的接合子中,有一些克隆含有一个约75 kb的质粒pEMT8。除pBH501aE外还携带该质粒的细菌宿主能够代谢2,4-D,而仅含有pEMT8的菌株则不能。Southern杂交表明,pEMT8编码一个与质粒pJP4的tfdA基因相似度较低的基因。使用基于已知tfdA序列的寡核苷酸引物,我们扩增了该基因的一个330 bp片段,确定其与质粒pJP4的tfdA基因相似度为77%,与伯克霍尔德菌属菌株RASC的tfdA相似度为94%。质粒pEMT8缺乏与tfdB和tfdCDEF表现出显著同源性水平的基因。此外,产碱杆菌(pEMT8)培养物的细胞提取物未表现出TfdB、TfdC、TfdD和TfdE活性,而产碱杆菌(pEMT8)(pBH501aE)培养物的细胞提取物则表现出这些活性。这些数据表明,pEMT8仅编码tfdA,并且该基因可以有效互补pBH501aE的tfdA缺失突变。

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