1999•石油学会誌Open access

Evaluation of the Use of Amplified 16S rRNA Gene-restriction Fragment Length Polymorphism Analysis to Detect Enterobacter cloacae and Bacillus licheniformis for Microbial Enhanced Oil Recovery Field Pilot.

Kazuhiro FUJIWARA, Shinji TANAKA, Makiko Ohtsuka, Naoya Ichimura, Hideharu Yonebayashi, Cheng Xie HONG, Heiji Enomoto

Open full text 10 citations

Abstract

Evaluation of effectiveness of restriction fragment length polymorphism (RFLP) analysis of the 16S rRNA gene of microorganisms injected into an oil reservoir, for monitoring their levels over time, was conducted.Two microorganisms, Enterobacter cloacae TRC-322 and Bacillus licheniformis TRC-18-2-a, were focused in this paper among the microorganisms selected for injection, and gene fragments of the 16S rRNA gene of these microorganisms were amplified by polymerase chain reaction (PCR), using one set of universal primers.Samples of the reservoir brine and reservoir rock were obtained; the microorganisms inhabiting in the reservoir were isolated from these samples, and the 16S rRNA gene of these microorganisms was amplified, condition remaining the same.RFLP analysis was performed on the 16S rRNA gene of each of these microorganisms, using restriction endonucleases HhaI, MspI, AluI and TaqI as necessary.Comparison of the resultant rRNA gene fragments, demonstrated that closely-related species displaying RFLP profile similar to that of E. cloacae TRC-322 or B. licheniformis TRC-18-2-a were not among the microorganisms isolated from the reservoir.PCR-RFLP analysis of the 16S rRNA gene, using the protocol presented in this paper, is effective to detect the presence of appropriate injecting microorganisms.This method was also effective for studying microorganisms isolated from the reservoir, which have the ability to grow on a molasses.

Open-access reader

About this research paper

What this paper is about

Evaluation of effectiveness of restriction fragment length polymorphism (RFLP) analysis of the 16S rRNA gene of microorganisms injected into an oil reservoir, for monitoring their levels over time, was conducted.Two microorganisms, Enterobacter cloacae TRC-322 and Bacillus licheniformis TRC-18-2-a, were focused in this paper among the microorganisms selected for injection, and gene fragments of the 16S rRNA gene of these microorganisms were amplified by polymerase chain reaction (PCR), using one set of universal primers.Samples of the reservoir brine and reservoir rock were obtained; the microorganisms inhabiting in the reservoir were isolated from these samples, and the 16S rRNA gene of these microorganisms was amplified, condition remaining the same.RFLP analysis was performed on the 16S rRNA gene of each of these microorganisms, using restriction endonucleases HhaI, MspI, AluI and TaqI as necessary.Comparison of the resultant rRNA gene fragments, demonstrated that closely-related species displaying RFLP profile similar to that of E. cloacae TRC-322 or B. licheniformis TRC-18-2-a were not among the microorganisms isolated from the reservoir.PCR-RFLP analysis of the 16S rRNA gene, using the protocol presented in this paper, is effective to detect the presence of appropriate injecting microorganisms.This method was also effective for studying microorganisms isolated from the reservoir, which have the ability to grow on a molasses.

Why it matters

OpenAlex reports 10 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Evaluation of effectiveness of restriction fragment length polymorphism (RFLP) analysis of the 16S rRNA gene of microorganisms injected into an oil reservoir, for monitoring their levels over time, was conducted.Two microorganisms, Enterobacter cloacae TRC-322 and Bacillus licheniformis TRC-18-2-a, were focused in this paper among the microorganisms selected for injection, and gene fragments of the 16S rRNA gene of these microorganisms were amplified by polymerase chain reaction (PCR), using one set of universal primers.Samples of the reservoir brine and reservoir rock were obtained; the microorganisms inhabiting in the reservoir were isolated from these samples, and the 16S rRNA gene of these microorganisms was amplified, condition remaining the same.RFLP analysis was performed on the 16S rRNA gene of each of these microorganisms, using restriction endonucleases HhaI, MspI, AluI and TaqI as necessary.Comparison of the resultant rRNA gene fragments, demonstrated that closely-related species displaying RFLP profile similar to that of E. cloacae TRC-322 or B. licheniformis TRC-18-2-a were not among the microorganisms isolated from the reservoir.PCR-RFLP analysis of the 16S rRNA gene, using the protocol presented in this paper, is effective to detect the presence of appropriate injecting microorganisms.This method was also effective for studying microorganisms isolated from the reservoir, which have the ability to grow on a molasses.

Key concepts: Bacillus licheniformis, Microorganism, 16S ribosomal RNA, Restriction fragment length polymorphism, Biology, Enterobacter cloacae, Terminal restriction fragment length polymorphism, Microbiology

Related papers

Back to paper searchBrowse research topicsOriginal source
Evaluation of the Use of Amplified 16S rRNA Gene-restriction Fragment Length Polymorphism Analysis to Detect Enterobacter cloacae and Bacillus licheniformis for Microbial Enhanced Oil Recovery Field Pilot. — Research Paper | ScholarLens