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基于 GFP 的转座子在假单胞菌中鉴定对 p-甲酚的降解途径及其在菌落中的优势表达。

Identification of a p-cresol degradation pathway by a GFP-based transposon in Pseudomonas and its dominant expression in colonies.

机构信息

Department of Microbiology, Changwon National University, Changwon-si, Kyongnam 641-773, Korea.

出版信息

J Microbiol Biotechnol. 2011 Nov;21(11):1179-83. doi: 10.4014/jmb.1104.04006.

Abstract

In this study, the chromosome-encoded pcuRCAXB genes that are required for p-cresol degradation have been identified by using a newly constructed green fluorescent protein (GFP)-based promoter probe transposon in the long-chain alkylphenol degrader Pseudomonas alkylphenolia. The deduced amino acid sequences of the genes showed the highest identities at the levels of 65-93% compared with those in the databases. The transposon was identified to be inserted in the pcuA gene, with the promoterless gfp gene being under the control of the pcu catabolic gene promoter. The expression of GFP was positively induced by p-cresol and was about 10 times higher by cells grown on agar than those in liquid culture. In addition, phydroxybenzoic acid was detected during p-cresol degradation. These results indicate that P. alkylphenolia additionally possesses a protocatechuate ortho-cleavage route for pcresol degradation that is dominantly expressed in colonies.

摘要

在这项研究中,通过在长链烷基酚降解菌假单胞菌烷基酚中使用新构建的基于绿色荧光蛋白(GFP)的启动子探针转座子,鉴定了编码 p-甲酚降解所需的染色体编码 pcuRCAXB 基因。与数据库中的基因相比,基因的推导氨基酸序列在 65-93%的水平上具有最高的同一性。转座子被鉴定为插入 pcuA 基因中,无启动子的 gfp 基因受 pcu 分解代谢基因启动子的控制。GFP 的表达受 p-甲酚的正诱导,在琼脂上生长的细胞比在液体培养中的表达高约 10 倍。此外,在 p-甲酚降解过程中检测到对羟基苯甲酸。这些结果表明,假单胞菌烷基酚还具有对 p-甲酚降解的原儿茶酸邻位裂解途径,该途径在菌落中占主导地位表达。

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