Department of Molecular Biology, School of Biological Sciences, Madurai Kamaraj University, Madurai-21, India.
Folia Microbiol (Praha). 2021 Aug;66(4):569-578. doi: 10.1007/s12223-021-00867-z. Epub 2021 Apr 5.
In our previous study, all Pseudomonas strains THP6, THP41, and OHP5 were identified as fluoride-resistant bacteria isolated from Dindigul district, Tamilnadu, India. The selected strains exhibiting a high level of fluoride resistance was determined in Luria broth (LB) medium and LB agar plates. In a further effort, fluoride-resistant organisms were tested for hemolytic activity and showed β-hemolysis on blood agar plates. The virulence factors such as gyrB, toxA, algD and lasB, plcH, rhlC and biofilm response genes (pslA, pelA, ppyR) were detected by PCR analysis. The putative genus-specific and species-specific PCR also confirmed that the selected fluoride-resistant strains were belonging to Pseudomonas aeruginosa species. Fluoride-resistance gene crcB was amplified by gene-specific primers. The crcB gene was cloned in TA vector and transformed into E. coli DH5α. Comparative and blast analysis of THP6, THP41, and OHP5 strains crcB gene sequences were high homology with P. aeruginosa fluoride efflux transporter crcB and P. aeruginosa putative fluoride ion transporter crcB. The recombinants were efficiently growing in the NaF containing LB agar plates. The fluoride tolerance of these strains was also associated with resistance to multiple antibiotics. These results can lead to the use of the fluoride resistance gene of P. aeruginosa for the development of a biosensor for fluoride detection.
在我们之前的研究中,所有的假单胞菌菌株 THP6、THP41 和 OHP5 均被鉴定为从印度泰米尔纳德邦丁迪古尔地区分离出的耐氟细菌。从 Luria 肉汤(LB)培养基和 LB 琼脂平板中确定了具有高水平耐氟性的选定菌株。在进一步的努力中,耐氟生物体被测试了溶血活性,并在血琼脂平板上显示出β溶血。通过 PCR 分析检测了毒力因子如 gyrB、toxA、algD 和 lasB、plcH、rhlC 和生物膜反应基因(pslA、pelA、ppyR)。假定的属特异性和种特异性 PCR 也证实了所选的耐氟菌株属于铜绿假单胞菌。用基因特异性引物扩增了氟抗性基因 crcB。crcB 基因被克隆到 TA 载体中,并转化到 E. coli DH5α 中。THP6、THP41 和 OHP5 菌株 crcB 基因序列的比较和blast 分析与铜绿假单胞菌氟外排转运体 crcB 和铜绿假单胞菌假定的氟离子转运体 crcB 具有高度同源性。重组菌在含有 NaF 的 LB 琼脂平板上有效生长。这些菌株的氟耐受性也与对多种抗生素的耐药性有关。这些结果可以导致使用铜绿假单胞菌的氟抗性基因来开发用于氟检测的生物传感器。