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Pyrosequencing Inc 16s rrna gene amplicon 454 pyrosequencing tapia
16s Rrna Gene Amplicon 454 Pyrosequencing Tapia, supplied by Pyrosequencing Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/16s+rrna+gene+amplicon+454+pyrosequencing+tapia/16s+pyrosequencing+rrna/pm41656513-158-147-152
Average 86 stars, based on 1 article reviews
16s rrna gene amplicon 454 pyrosequencing tapia - by Bioz Stars, 2026-09
86/100 stars

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Denaturing Gradient Gel Electrophoresis:

Article Title: Microbial Communities Powering Plant-Microbial Fuel Cells: Diversity, Functions and Biotechnological Perspectives.
Article Snippet: .. Microbial communities analysis method References 16S rRNA gene- based DGGE band sequencing (Sanger) Kaku et al. (2008) 16S rRNA gene- based methods: DGGE, T- RFLP, Sanger clone libraries De Schamphelaire et al. (2010) 16S rRNA gene amplicon 454 pyrosequencing and qRTPCR; FISH- CLSM (rRNAtargeted probes) Timmers et al. (2012) 16S rRNA gene amplicon pyrosequencing, Illuminabased shotgun metagenomics (HiSeq) Kouzuma et al. (2013) qPCR targeting archaeal 16S rRNA genes (group- specific primers) Arends et al. (2014) 16S rRNA gene amplicon 454 pyrosequencing Ahn et al. (2014) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries (PMFC- A2) Cabezas et al. (2015) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries, 454 pyrosequencing (bacteria) Lin and Lu (2015) 16S rRNA gene amplicon 454 pyrosequencing (bacteria), 16S rRNA gene Sanger- based clone libraries (archaea) Lu et al. (2015) 16S rRNA gene amplicon 454 pyrosequencing Ueoka et al. (2016) 16S rRNA gene amplicon 454 pyrosequencing Tapia et al. (2017) Selective plating, biochemical identification Azri et al. (2018) Illumina 16S rRNA amplicon sequencing (HiSeq) Liu et al. (2018) Illumina 16S rRNA amplicon sequencing Sudirjo et al. (2019) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan and Yu (2021) Isolation and Sanger- based 16S rRNA sequencing Arulmani et al. (2021) Illumina 16S rRNA amplicon sequencing Tongphanpharn et al. (2023) (Continues) Microbial communities analysis method References Illumina 16S rRNA amplicon sequencing (MiSeq) Sarma et al. (2024) Illumina 16S rRNA amplicon sequencing (MiSeq) Chen et al. (2024) Illumina 16S rRNA amplicon sequencing (NovaSeq) Gan et al. (2025) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan et al. (2025) TABLE 2 | (Continued) 17517915, 2026, 2, D ow nloaded from https://envirom icro-journals.onlinelibrary.w iley.com /doi/10.1111/1751-7915.70310, W iley O nline L ibrary on [17/02/2026]. ..

Sequencing:

Article Title: Microbial Communities Powering Plant-Microbial Fuel Cells: Diversity, Functions and Biotechnological Perspectives.
Article Snippet: .. Microbial communities analysis method References 16S rRNA gene- based DGGE band sequencing (Sanger) Kaku et al. (2008) 16S rRNA gene- based methods: DGGE, T- RFLP, Sanger clone libraries De Schamphelaire et al. (2010) 16S rRNA gene amplicon 454 pyrosequencing and qRTPCR; FISH- CLSM (rRNAtargeted probes) Timmers et al. (2012) 16S rRNA gene amplicon pyrosequencing, Illuminabased shotgun metagenomics (HiSeq) Kouzuma et al. (2013) qPCR targeting archaeal 16S rRNA genes (group- specific primers) Arends et al. (2014) 16S rRNA gene amplicon 454 pyrosequencing Ahn et al. (2014) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries (PMFC- A2) Cabezas et al. (2015) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries, 454 pyrosequencing (bacteria) Lin and Lu (2015) 16S rRNA gene amplicon 454 pyrosequencing (bacteria), 16S rRNA gene Sanger- based clone libraries (archaea) Lu et al. (2015) 16S rRNA gene amplicon 454 pyrosequencing Ueoka et al. (2016) 16S rRNA gene amplicon 454 pyrosequencing Tapia et al. (2017) Selective plating, biochemical identification Azri et al. (2018) Illumina 16S rRNA amplicon sequencing (HiSeq) Liu et al. (2018) Illumina 16S rRNA amplicon sequencing Sudirjo et al. (2019) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan and Yu (2021) Isolation and Sanger- based 16S rRNA sequencing Arulmani et al. (2021) Illumina 16S rRNA amplicon sequencing Tongphanpharn et al. (2023) (Continues) Microbial communities analysis method References Illumina 16S rRNA amplicon sequencing (MiSeq) Sarma et al. (2024) Illumina 16S rRNA amplicon sequencing (MiSeq) Chen et al. (2024) Illumina 16S rRNA amplicon sequencing (NovaSeq) Gan et al. (2025) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan et al. (2025) TABLE 2 | (Continued) 17517915, 2026, 2, D ow nloaded from https://envirom icro-journals.onlinelibrary.w iley.com /doi/10.1111/1751-7915.70310, W iley O nline L ibrary on [17/02/2026]. ..

Terminal Restriction Fragment Length Polymorphism:

Article Title: Microbial Communities Powering Plant-Microbial Fuel Cells: Diversity, Functions and Biotechnological Perspectives.
Article Snippet: .. Microbial communities analysis method References 16S rRNA gene- based DGGE band sequencing (Sanger) Kaku et al. (2008) 16S rRNA gene- based methods: DGGE, T- RFLP, Sanger clone libraries De Schamphelaire et al. (2010) 16S rRNA gene amplicon 454 pyrosequencing and qRTPCR; FISH- CLSM (rRNAtargeted probes) Timmers et al. (2012) 16S rRNA gene amplicon pyrosequencing, Illuminabased shotgun metagenomics (HiSeq) Kouzuma et al. (2013) qPCR targeting archaeal 16S rRNA genes (group- specific primers) Arends et al. (2014) 16S rRNA gene amplicon 454 pyrosequencing Ahn et al. (2014) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries (PMFC- A2) Cabezas et al. (2015) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries, 454 pyrosequencing (bacteria) Lin and Lu (2015) 16S rRNA gene amplicon 454 pyrosequencing (bacteria), 16S rRNA gene Sanger- based clone libraries (archaea) Lu et al. (2015) 16S rRNA gene amplicon 454 pyrosequencing Ueoka et al. (2016) 16S rRNA gene amplicon 454 pyrosequencing Tapia et al. (2017) Selective plating, biochemical identification Azri et al. (2018) Illumina 16S rRNA amplicon sequencing (HiSeq) Liu et al. (2018) Illumina 16S rRNA amplicon sequencing Sudirjo et al. (2019) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan and Yu (2021) Isolation and Sanger- based 16S rRNA sequencing Arulmani et al. (2021) Illumina 16S rRNA amplicon sequencing Tongphanpharn et al. (2023) (Continues) Microbial communities analysis method References Illumina 16S rRNA amplicon sequencing (MiSeq) Sarma et al. (2024) Illumina 16S rRNA amplicon sequencing (MiSeq) Chen et al. (2024) Illumina 16S rRNA amplicon sequencing (NovaSeq) Gan et al. (2025) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan et al. (2025) TABLE 2 | (Continued) 17517915, 2026, 2, D ow nloaded from https://envirom icro-journals.onlinelibrary.w iley.com /doi/10.1111/1751-7915.70310, W iley O nline L ibrary on [17/02/2026]. ..

Amplification:

Article Title: Microbial Communities Powering Plant-Microbial Fuel Cells: Diversity, Functions and Biotechnological Perspectives.
Article Snippet: .. Microbial communities analysis method References 16S rRNA gene- based DGGE band sequencing (Sanger) Kaku et al. (2008) 16S rRNA gene- based methods: DGGE, T- RFLP, Sanger clone libraries De Schamphelaire et al. (2010) 16S rRNA gene amplicon 454 pyrosequencing and qRTPCR; FISH- CLSM (rRNAtargeted probes) Timmers et al. (2012) 16S rRNA gene amplicon pyrosequencing, Illuminabased shotgun metagenomics (HiSeq) Kouzuma et al. (2013) qPCR targeting archaeal 16S rRNA genes (group- specific primers) Arends et al. (2014) 16S rRNA gene amplicon 454 pyrosequencing Ahn et al. (2014) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries (PMFC- A2) Cabezas et al. (2015) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries, 454 pyrosequencing (bacteria) Lin and Lu (2015) 16S rRNA gene amplicon 454 pyrosequencing (bacteria), 16S rRNA gene Sanger- based clone libraries (archaea) Lu et al. (2015) 16S rRNA gene amplicon 454 pyrosequencing Ueoka et al. (2016) 16S rRNA gene amplicon 454 pyrosequencing Tapia et al. (2017) Selective plating, biochemical identification Azri et al. (2018) Illumina 16S rRNA amplicon sequencing (HiSeq) Liu et al. (2018) Illumina 16S rRNA amplicon sequencing Sudirjo et al. (2019) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan and Yu (2021) Isolation and Sanger- based 16S rRNA sequencing Arulmani et al. (2021) Illumina 16S rRNA amplicon sequencing Tongphanpharn et al. (2023) (Continues) Microbial communities analysis method References Illumina 16S rRNA amplicon sequencing (MiSeq) Sarma et al. (2024) Illumina 16S rRNA amplicon sequencing (MiSeq) Chen et al. (2024) Illumina 16S rRNA amplicon sequencing (NovaSeq) Gan et al. (2025) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan et al. (2025) TABLE 2 | (Continued) 17517915, 2026, 2, D ow nloaded from https://envirom icro-journals.onlinelibrary.w iley.com /doi/10.1111/1751-7915.70310, W iley O nline L ibrary on [17/02/2026]. ..

Fluorescence In Situ Hybridization:

Article Title: Microbial Communities Powering Plant-Microbial Fuel Cells: Diversity, Functions and Biotechnological Perspectives.
Article Snippet: .. Microbial communities analysis method References 16S rRNA gene- based DGGE band sequencing (Sanger) Kaku et al. (2008) 16S rRNA gene- based methods: DGGE, T- RFLP, Sanger clone libraries De Schamphelaire et al. (2010) 16S rRNA gene amplicon 454 pyrosequencing and qRTPCR; FISH- CLSM (rRNAtargeted probes) Timmers et al. (2012) 16S rRNA gene amplicon pyrosequencing, Illuminabased shotgun metagenomics (HiSeq) Kouzuma et al. (2013) qPCR targeting archaeal 16S rRNA genes (group- specific primers) Arends et al. (2014) 16S rRNA gene amplicon 454 pyrosequencing Ahn et al. (2014) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries (PMFC- A2) Cabezas et al. (2015) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries, 454 pyrosequencing (bacteria) Lin and Lu (2015) 16S rRNA gene amplicon 454 pyrosequencing (bacteria), 16S rRNA gene Sanger- based clone libraries (archaea) Lu et al. (2015) 16S rRNA gene amplicon 454 pyrosequencing Ueoka et al. (2016) 16S rRNA gene amplicon 454 pyrosequencing Tapia et al. (2017) Selective plating, biochemical identification Azri et al. (2018) Illumina 16S rRNA amplicon sequencing (HiSeq) Liu et al. (2018) Illumina 16S rRNA amplicon sequencing Sudirjo et al. (2019) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan and Yu (2021) Isolation and Sanger- based 16S rRNA sequencing Arulmani et al. (2021) Illumina 16S rRNA amplicon sequencing Tongphanpharn et al. (2023) (Continues) Microbial communities analysis method References Illumina 16S rRNA amplicon sequencing (MiSeq) Sarma et al. (2024) Illumina 16S rRNA amplicon sequencing (MiSeq) Chen et al. (2024) Illumina 16S rRNA amplicon sequencing (NovaSeq) Gan et al. (2025) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan et al. (2025) TABLE 2 | (Continued) 17517915, 2026, 2, D ow nloaded from https://envirom icro-journals.onlinelibrary.w iley.com /doi/10.1111/1751-7915.70310, W iley O nline L ibrary on [17/02/2026]. ..

Confocal Laser Scanning Microscopy:

Article Title: Microbial Communities Powering Plant-Microbial Fuel Cells: Diversity, Functions and Biotechnological Perspectives.
Article Snippet: .. Microbial communities analysis method References 16S rRNA gene- based DGGE band sequencing (Sanger) Kaku et al. (2008) 16S rRNA gene- based methods: DGGE, T- RFLP, Sanger clone libraries De Schamphelaire et al. (2010) 16S rRNA gene amplicon 454 pyrosequencing and qRTPCR; FISH- CLSM (rRNAtargeted probes) Timmers et al. (2012) 16S rRNA gene amplicon pyrosequencing, Illuminabased shotgun metagenomics (HiSeq) Kouzuma et al. (2013) qPCR targeting archaeal 16S rRNA genes (group- specific primers) Arends et al. (2014) 16S rRNA gene amplicon 454 pyrosequencing Ahn et al. (2014) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries (PMFC- A2) Cabezas et al. (2015) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries, 454 pyrosequencing (bacteria) Lin and Lu (2015) 16S rRNA gene amplicon 454 pyrosequencing (bacteria), 16S rRNA gene Sanger- based clone libraries (archaea) Lu et al. (2015) 16S rRNA gene amplicon 454 pyrosequencing Ueoka et al. (2016) 16S rRNA gene amplicon 454 pyrosequencing Tapia et al. (2017) Selective plating, biochemical identification Azri et al. (2018) Illumina 16S rRNA amplicon sequencing (HiSeq) Liu et al. (2018) Illumina 16S rRNA amplicon sequencing Sudirjo et al. (2019) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan and Yu (2021) Isolation and Sanger- based 16S rRNA sequencing Arulmani et al. (2021) Illumina 16S rRNA amplicon sequencing Tongphanpharn et al. (2023) (Continues) Microbial communities analysis method References Illumina 16S rRNA amplicon sequencing (MiSeq) Sarma et al. (2024) Illumina 16S rRNA amplicon sequencing (MiSeq) Chen et al. (2024) Illumina 16S rRNA amplicon sequencing (NovaSeq) Gan et al. (2025) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan et al. (2025) TABLE 2 | (Continued) 17517915, 2026, 2, D ow nloaded from https://envirom icro-journals.onlinelibrary.w iley.com /doi/10.1111/1751-7915.70310, W iley O nline L ibrary on [17/02/2026]. ..

Metagenomics:

Article Title: Microbial Communities Powering Plant-Microbial Fuel Cells: Diversity, Functions and Biotechnological Perspectives.
Article Snippet: .. Microbial communities analysis method References 16S rRNA gene- based DGGE band sequencing (Sanger) Kaku et al. (2008) 16S rRNA gene- based methods: DGGE, T- RFLP, Sanger clone libraries De Schamphelaire et al. (2010) 16S rRNA gene amplicon 454 pyrosequencing and qRTPCR; FISH- CLSM (rRNAtargeted probes) Timmers et al. (2012) 16S rRNA gene amplicon pyrosequencing, Illuminabased shotgun metagenomics (HiSeq) Kouzuma et al. (2013) qPCR targeting archaeal 16S rRNA genes (group- specific primers) Arends et al. (2014) 16S rRNA gene amplicon 454 pyrosequencing Ahn et al. (2014) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries (PMFC- A2) Cabezas et al. (2015) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries, 454 pyrosequencing (bacteria) Lin and Lu (2015) 16S rRNA gene amplicon 454 pyrosequencing (bacteria), 16S rRNA gene Sanger- based clone libraries (archaea) Lu et al. (2015) 16S rRNA gene amplicon 454 pyrosequencing Ueoka et al. (2016) 16S rRNA gene amplicon 454 pyrosequencing Tapia et al. (2017) Selective plating, biochemical identification Azri et al. (2018) Illumina 16S rRNA amplicon sequencing (HiSeq) Liu et al. (2018) Illumina 16S rRNA amplicon sequencing Sudirjo et al. (2019) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan and Yu (2021) Isolation and Sanger- based 16S rRNA sequencing Arulmani et al. (2021) Illumina 16S rRNA amplicon sequencing Tongphanpharn et al. (2023) (Continues) Microbial communities analysis method References Illumina 16S rRNA amplicon sequencing (MiSeq) Sarma et al. (2024) Illumina 16S rRNA amplicon sequencing (MiSeq) Chen et al. (2024) Illumina 16S rRNA amplicon sequencing (NovaSeq) Gan et al. (2025) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan et al. (2025) TABLE 2 | (Continued) 17517915, 2026, 2, D ow nloaded from https://envirom icro-journals.onlinelibrary.w iley.com /doi/10.1111/1751-7915.70310, W iley O nline L ibrary on [17/02/2026]. ..

Real-time Polymerase Chain Reaction:

Article Title: Microbial Communities Powering Plant-Microbial Fuel Cells: Diversity, Functions and Biotechnological Perspectives.
Article Snippet: .. Microbial communities analysis method References 16S rRNA gene- based DGGE band sequencing (Sanger) Kaku et al. (2008) 16S rRNA gene- based methods: DGGE, T- RFLP, Sanger clone libraries De Schamphelaire et al. (2010) 16S rRNA gene amplicon 454 pyrosequencing and qRTPCR; FISH- CLSM (rRNAtargeted probes) Timmers et al. (2012) 16S rRNA gene amplicon pyrosequencing, Illuminabased shotgun metagenomics (HiSeq) Kouzuma et al. (2013) qPCR targeting archaeal 16S rRNA genes (group- specific primers) Arends et al. (2014) 16S rRNA gene amplicon 454 pyrosequencing Ahn et al. (2014) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries (PMFC- A2) Cabezas et al. (2015) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries, 454 pyrosequencing (bacteria) Lin and Lu (2015) 16S rRNA gene amplicon 454 pyrosequencing (bacteria), 16S rRNA gene Sanger- based clone libraries (archaea) Lu et al. (2015) 16S rRNA gene amplicon 454 pyrosequencing Ueoka et al. (2016) 16S rRNA gene amplicon 454 pyrosequencing Tapia et al. (2017) Selective plating, biochemical identification Azri et al. (2018) Illumina 16S rRNA amplicon sequencing (HiSeq) Liu et al. (2018) Illumina 16S rRNA amplicon sequencing Sudirjo et al. (2019) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan and Yu (2021) Isolation and Sanger- based 16S rRNA sequencing Arulmani et al. (2021) Illumina 16S rRNA amplicon sequencing Tongphanpharn et al. (2023) (Continues) Microbial communities analysis method References Illumina 16S rRNA amplicon sequencing (MiSeq) Sarma et al. (2024) Illumina 16S rRNA amplicon sequencing (MiSeq) Chen et al. (2024) Illumina 16S rRNA amplicon sequencing (NovaSeq) Gan et al. (2025) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan et al. (2025) TABLE 2 | (Continued) 17517915, 2026, 2, D ow nloaded from https://envirom icro-journals.onlinelibrary.w iley.com /doi/10.1111/1751-7915.70310, W iley O nline L ibrary on [17/02/2026]. ..

Bacteria:

Article Title: Microbial Communities Powering Plant-Microbial Fuel Cells: Diversity, Functions and Biotechnological Perspectives.
Article Snippet: .. Microbial communities analysis method References 16S rRNA gene- based DGGE band sequencing (Sanger) Kaku et al. (2008) 16S rRNA gene- based methods: DGGE, T- RFLP, Sanger clone libraries De Schamphelaire et al. (2010) 16S rRNA gene amplicon 454 pyrosequencing and qRTPCR; FISH- CLSM (rRNAtargeted probes) Timmers et al. (2012) 16S rRNA gene amplicon pyrosequencing, Illuminabased shotgun metagenomics (HiSeq) Kouzuma et al. (2013) qPCR targeting archaeal 16S rRNA genes (group- specific primers) Arends et al. (2014) 16S rRNA gene amplicon 454 pyrosequencing Ahn et al. (2014) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries (PMFC- A2) Cabezas et al. (2015) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries, 454 pyrosequencing (bacteria) Lin and Lu (2015) 16S rRNA gene amplicon 454 pyrosequencing (bacteria), 16S rRNA gene Sanger- based clone libraries (archaea) Lu et al. (2015) 16S rRNA gene amplicon 454 pyrosequencing Ueoka et al. (2016) 16S rRNA gene amplicon 454 pyrosequencing Tapia et al. (2017) Selective plating, biochemical identification Azri et al. (2018) Illumina 16S rRNA amplicon sequencing (HiSeq) Liu et al. (2018) Illumina 16S rRNA amplicon sequencing Sudirjo et al. (2019) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan and Yu (2021) Isolation and Sanger- based 16S rRNA sequencing Arulmani et al. (2021) Illumina 16S rRNA amplicon sequencing Tongphanpharn et al. (2023) (Continues) Microbial communities analysis method References Illumina 16S rRNA amplicon sequencing (MiSeq) Sarma et al. (2024) Illumina 16S rRNA amplicon sequencing (MiSeq) Chen et al. (2024) Illumina 16S rRNA amplicon sequencing (NovaSeq) Gan et al. (2025) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan et al. (2025) TABLE 2 | (Continued) 17517915, 2026, 2, D ow nloaded from https://envirom icro-journals.onlinelibrary.w iley.com /doi/10.1111/1751-7915.70310, W iley O nline L ibrary on [17/02/2026]. ..

Isolation:

Article Title: Microbial Communities Powering Plant-Microbial Fuel Cells: Diversity, Functions and Biotechnological Perspectives.
Article Snippet: .. Microbial communities analysis method References 16S rRNA gene- based DGGE band sequencing (Sanger) Kaku et al. (2008) 16S rRNA gene- based methods: DGGE, T- RFLP, Sanger clone libraries De Schamphelaire et al. (2010) 16S rRNA gene amplicon 454 pyrosequencing and qRTPCR; FISH- CLSM (rRNAtargeted probes) Timmers et al. (2012) 16S rRNA gene amplicon pyrosequencing, Illuminabased shotgun metagenomics (HiSeq) Kouzuma et al. (2013) qPCR targeting archaeal 16S rRNA genes (group- specific primers) Arends et al. (2014) 16S rRNA gene amplicon 454 pyrosequencing Ahn et al. (2014) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries (PMFC- A2) Cabezas et al. (2015) 16S rRNA gene- based methods: T- RFLP, Sanger clone libraries, 454 pyrosequencing (bacteria) Lin and Lu (2015) 16S rRNA gene amplicon 454 pyrosequencing (bacteria), 16S rRNA gene Sanger- based clone libraries (archaea) Lu et al. (2015) 16S rRNA gene amplicon 454 pyrosequencing Ueoka et al. (2016) 16S rRNA gene amplicon 454 pyrosequencing Tapia et al. (2017) Selective plating, biochemical identification Azri et al. (2018) Illumina 16S rRNA amplicon sequencing (HiSeq) Liu et al. (2018) Illumina 16S rRNA amplicon sequencing Sudirjo et al. (2019) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan and Yu (2021) Isolation and Sanger- based 16S rRNA sequencing Arulmani et al. (2021) Illumina 16S rRNA amplicon sequencing Tongphanpharn et al. (2023) (Continues) Microbial communities analysis method References Illumina 16S rRNA amplicon sequencing (MiSeq) Sarma et al. (2024) Illumina 16S rRNA amplicon sequencing (MiSeq) Chen et al. (2024) Illumina 16S rRNA amplicon sequencing (NovaSeq) Gan et al. (2025) Illumina 16S rRNA amplicon sequencing (MiSeq) Guan et al. (2025) TABLE 2 | (Continued) 17517915, 2026, 2, D ow nloaded from https://envirom icro-journals.onlinelibrary.w iley.com /doi/10.1111/1751-7915.70310, W iley O nline L ibrary on [17/02/2026]. ..



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86
Pyrosequencing Inc 16s rrna gene amplicon 454 pyrosequencing tapia
16s Rrna Gene Amplicon 454 Pyrosequencing Tapia, supplied by Pyrosequencing Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/16s+rrna+gene+amplicon+454+pyrosequencing+tapia/16s+pyrosequencing+rrna/pm41656513-158-147-152
Average 86 stars, based on 1 article reviews
16s rrna gene amplicon 454 pyrosequencing tapia - by Bioz Stars, 2026-09
86/100 stars
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