Approach to determine the diversity of Legionella species by nested PCR-DGGE in aquatic environments.

In this study, we describe a nested PCR-DGGE strategy to detect Legionella communities from river water samples. The nearly full-length 16S rRNA gene was amplified using bacterial primer in the first step. After, the amplicons were employed as DNA templates in the second PCR using Legionella specifi...

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Main Authors: Wen-Chien Huang, Hsin-Chi Tsai, Chi-Wei Tao, Jung-Sheng Chen, Yi-Jia Shih, Po-Min Kao, Tung-Yi Huang, Bing-Mu Hsu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5293244?pdf=render
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spelling doaj-6ee829c99cf74f29979d69fc937383532020-11-24T21:14:19ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01122e017099210.1371/journal.pone.0170992Approach to determine the diversity of Legionella species by nested PCR-DGGE in aquatic environments.Wen-Chien HuangHsin-Chi TsaiChi-Wei TaoJung-Sheng ChenYi-Jia ShihPo-Min KaoTung-Yi HuangBing-Mu HsuIn this study, we describe a nested PCR-DGGE strategy to detect Legionella communities from river water samples. The nearly full-length 16S rRNA gene was amplified using bacterial primer in the first step. After, the amplicons were employed as DNA templates in the second PCR using Legionella specific primer. The third round of gene amplification was conducted to gain PCR fragments apposite for DGGE analysis. Then the total numbers of amplified genes were observed in DGGE bands of products gained with primers specific for the diversity of Legionella species. The DGGE patterns are thus potential for a high-throughput preliminary determination of aquatic environmental Legionella species before sequencing. Comparative DNA sequence analysis of excised DGGE unique band patterns showed the identity of the Legionella community members, including a reference profile with two pathogenic species of Legionella strains. In addition, only members of Legionella pneumophila and uncultured Legionella sp. were detected. Development of three step nested PCR-DGGE tactic is seen as a useful method for studying the diversity of Legionella community. The method is rapid and provided sequence information for phylogenetic analysis.http://europepmc.org/articles/PMC5293244?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Wen-Chien Huang
Hsin-Chi Tsai
Chi-Wei Tao
Jung-Sheng Chen
Yi-Jia Shih
Po-Min Kao
Tung-Yi Huang
Bing-Mu Hsu
spellingShingle Wen-Chien Huang
Hsin-Chi Tsai
Chi-Wei Tao
Jung-Sheng Chen
Yi-Jia Shih
Po-Min Kao
Tung-Yi Huang
Bing-Mu Hsu
Approach to determine the diversity of Legionella species by nested PCR-DGGE in aquatic environments.
PLoS ONE
author_facet Wen-Chien Huang
Hsin-Chi Tsai
Chi-Wei Tao
Jung-Sheng Chen
Yi-Jia Shih
Po-Min Kao
Tung-Yi Huang
Bing-Mu Hsu
author_sort Wen-Chien Huang
title Approach to determine the diversity of Legionella species by nested PCR-DGGE in aquatic environments.
title_short Approach to determine the diversity of Legionella species by nested PCR-DGGE in aquatic environments.
title_full Approach to determine the diversity of Legionella species by nested PCR-DGGE in aquatic environments.
title_fullStr Approach to determine the diversity of Legionella species by nested PCR-DGGE in aquatic environments.
title_full_unstemmed Approach to determine the diversity of Legionella species by nested PCR-DGGE in aquatic environments.
title_sort approach to determine the diversity of legionella species by nested pcr-dgge in aquatic environments.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description In this study, we describe a nested PCR-DGGE strategy to detect Legionella communities from river water samples. The nearly full-length 16S rRNA gene was amplified using bacterial primer in the first step. After, the amplicons were employed as DNA templates in the second PCR using Legionella specific primer. The third round of gene amplification was conducted to gain PCR fragments apposite for DGGE analysis. Then the total numbers of amplified genes were observed in DGGE bands of products gained with primers specific for the diversity of Legionella species. The DGGE patterns are thus potential for a high-throughput preliminary determination of aquatic environmental Legionella species before sequencing. Comparative DNA sequence analysis of excised DGGE unique band patterns showed the identity of the Legionella community members, including a reference profile with two pathogenic species of Legionella strains. In addition, only members of Legionella pneumophila and uncultured Legionella sp. were detected. Development of three step nested PCR-DGGE tactic is seen as a useful method for studying the diversity of Legionella community. The method is rapid and provided sequence information for phylogenetic analysis.
url http://europepmc.org/articles/PMC5293244?pdf=render
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