Literature DB >> 23995536

Pyrosequencing for microbial identification and characterization.

Patrick J Cummings1, Ray Ahmed, Jeffrey A Durocher, Adam Jessen, Tamar Vardi, Kristina M Obom.   

Abstract

Pyrosequencing is a versatile technique that facilitates microbial genome sequencing that can be used to identify bacterial species, discriminate bacterial strains and detect genetic mutations that confer resistance to anti-microbial agents. The advantages of pyrosequencing for microbiology applications include rapid and reliable high-throughput screening and accurate identification of microbes and microbial genome mutations. Pyrosequencing involves sequencing of DNA by synthesizing the complementary strand a single base at a time, while determining the specific nucleotide being incorporated during the synthesis reaction. The reaction occurs on immobilized single stranded template DNA where the four deoxyribonucleotides (dNTP) are added sequentially and the unincorporated dNTPs are enzymatically degraded before addition of the next dNTP to the synthesis reaction. Detection of the specific base incorporated into the template is monitored by generation of chemiluminescent signals. The order of dNTPs that produce the chemiluminescent signals determines the DNA sequence of the template. The real-time sequencing capability of pyrosequencing technology enables rapid microbial identification in a single assay. In addition, the pyrosequencing instrument, can analyze the full genetic diversity of anti-microbial drug resistance, including typing of SNPs, point mutations, insertions, and deletions, as well as quantification of multiple gene copies that may occur in some anti-microbial resistance patterns.

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Year:  2013        PMID: 23995536      PMCID: PMC3941166          DOI: 10.3791/50405

Source DB:  PubMed          Journal:  J Vis Exp        ISSN: 1940-087X            Impact factor:   1.355


  11 in total

Review 1.  Pyrosequencing: an accurate detection platform for single nucleotide polymorphisms.

Authors:  Hossein Fakhrai-Rad; Nader Pourmand; Mostafa Ronaghi
Journal:  Hum Mutat       Date:  2002-05       Impact factor: 4.878

2.  Zero-mode waveguides for single-molecule analysis at high concentrations.

Authors:  M J Levene; J Korlach; S W Turner; M Foquet; H G Craighead; W W Webb
Journal:  Science       Date:  2003-01-31       Impact factor: 47.728

3.  Pyrosequencing: a tool for DNA sequencing analysis.

Authors:  Elahe Elahi; Mostafa Ronaghi
Journal:  Methods Mol Biol       Date:  2004

Review 4.  Genetic variation analyses by Pyrosequencing.

Authors:  Taimour Langaee; Mostafa Ronaghi
Journal:  Mutat Res       Date:  2005-06-03       Impact factor: 2.433

5.  Accurate determination of microbial diversity from 454 pyrosequencing data.

Authors:  Christopher Quince; Anders Lanzén; Thomas P Curtis; Russell J Davenport; Neil Hall; Ian M Head; L Fiona Read; William T Sloan
Journal:  Nat Methods       Date:  2009-08-09       Impact factor: 28.547

Review 6.  The evolution of Pyrosequencing® for microbiology: From genes to genomes.

Authors:  R C Novais; Y R Thorstenson
Journal:  J Microbiol Methods       Date:  2011-04-14       Impact factor: 2.363

7.  An integrated semiconductor device enabling non-optical genome sequencing.

Authors:  Jonathan M Rothberg; Wolfgang Hinz; Todd M Rearick; Jonathan Schultz; William Mileski; Mel Davey; John H Leamon; Kim Johnson; Mark J Milgrew; Matthew Edwards; Jeremy Hoon; Jan F Simons; David Marran; Jason W Myers; John F Davidson; Annika Branting; John R Nobile; Bernard P Puc; David Light; Travis A Clark; Martin Huber; Jeffrey T Branciforte; Isaac B Stoner; Simon E Cawley; Michael Lyons; Yutao Fu; Nils Homer; Marina Sedova; Xin Miao; Brian Reed; Jeffrey Sabina; Erika Feierstein; Michelle Schorn; Mohammad Alanjary; Eileen Dimalanta; Devin Dressman; Rachel Kasinskas; Tanya Sokolsky; Jacqueline A Fidanza; Eugeni Namsaraev; Kevin J McKernan; Alan Williams; G Thomas Roth; James Bustillo
Journal:  Nature       Date:  2011-07-20       Impact factor: 49.962

Review 8.  Metagenomic pyrosequencing and microbial identification.

Authors:  Joseph F Petrosino; Sarah Highlander; Ruth Ann Luna; Richard A Gibbs; James Versalovic
Journal:  Clin Chem       Date:  2009-03-05       Impact factor: 8.327

9.  Real-time DNA sequencing from single polymerase molecules.

Authors:  John Eid; Adrian Fehr; Jeremy Gray; Khai Luong; John Lyle; Geoff Otto; Paul Peluso; David Rank; Primo Baybayan; Brad Bettman; Arkadiusz Bibillo; Keith Bjornson; Bidhan Chaudhuri; Frederick Christians; Ronald Cicero; Sonya Clark; Ravindra Dalal; Alex Dewinter; John Dixon; Mathieu Foquet; Alfred Gaertner; Paul Hardenbol; Cheryl Heiner; Kevin Hester; David Holden; Gregory Kearns; Xiangxu Kong; Ronald Kuse; Yves Lacroix; Steven Lin; Paul Lundquist; Congcong Ma; Patrick Marks; Mark Maxham; Devon Murphy; Insil Park; Thang Pham; Michael Phillips; Joy Roy; Robert Sebra; Gene Shen; Jon Sorenson; Austin Tomaney; Kevin Travers; Mark Trulson; John Vieceli; Jeffrey Wegener; Dawn Wu; Alicia Yang; Denis Zaccarin; Peter Zhao; Frank Zhong; Jonas Korlach; Stephen Turner
Journal:  Science       Date:  2008-11-20       Impact factor: 47.728

10.  Short pyrosequencing reads suffice for accurate microbial community analysis.

Authors:  Zongzhi Liu; Catherine Lozupone; Micah Hamady; Frederic D Bushman; Rob Knight
Journal:  Nucleic Acids Res       Date:  2007-09-18       Impact factor: 16.971

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1.  Vibrio trends in the ecology of the Venice lagoon.

Authors:  Mohammad Shamsur Rahman; Maria Elena Martino; Barbara Cardazzo; Pierantonio Facco; Paola Bordin; Renzo Mioni; Enrico Novelli; Luca Fasolato
Journal:  Appl Environ Microbiol       Date:  2014-01-31       Impact factor: 4.792

Review 2.  Diagnostics for Wound Infections.

Authors:  Shuxin Li; Paul Renick; Jon Senkowsky; Ashwin Nair; Liping Tang
Journal:  Adv Wound Care (New Rochelle)       Date:  2020-07-07       Impact factor: 4.947

3.  Nanopore DNA Sequencing for Metagenomic Soil Analysis.

Authors:  P J Cummings; J Olszewicz; K M Obom
Journal:  J Vis Exp       Date:  2017-12-14       Impact factor: 1.355

4.  Profiling of subgingival plaque biofilm microbiota in female adult patients with clear aligners: a three-month prospective study.

Authors:  Runzhi Guo; Yunfei Zheng; Hao Liu; Xiaobei Li; Lingfei Jia; Weiran Li
Journal:  PeerJ       Date:  2018-01-02       Impact factor: 2.984

5.  Characterization of a novel yeast species Metschnikowia persimmonesis KCTC 12991BP (KIOM G15050 type strain) isolated from a medicinal plant, Korean persimmon calyx (Diospyros kaki Thumb).

Authors:  Young Min Kang; Ji Eun Choi; Richard Komakech; Jeong Hwan Park; Dae Wook Kim; Kye Man Cho; Seung Mi Kang; Sang Haeng Choi; Kun Chul Song; Chung Min Ryu; Keun Chul Lee; Jung-Sook Lee
Journal:  AMB Express       Date:  2017-11-10       Impact factor: 3.298

6.  Data-Driven Modeling for Species-Level Taxonomic Assignment From 16S rRNA: Application to Human Microbiomes.

Authors:  Ho-Jin Gwak; Mina Rho
Journal:  Front Microbiol       Date:  2020-11-12       Impact factor: 5.640

  6 in total

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