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Matt Nolan - One of the best experts on this subject based on the ideXlab platform.

  • Complete Genome Sequence of Anaerococcus prevotii type strain (PC1T)
    2014
    Co-Authors: Kurt Labutti, Susan Lucas, Feng Chen, Jan-fang Cheng, Rüdiger Pukall, Katja Steenblock, Tijana Glavina, Del Rio, Hope Tice, Matt Nolan
    Abstract:

    genus, and is of phylogenetic interest because of its arguable assignment to the provisionally arranged family ‘Peptostreptococcaceae’. A. prevotii is an obligate anaerobic coccus, usually arranged in clumps or tetrads. The strain, whose Genome is described here, was originally isolated from human plasma; other strains of the species were also isolated from clinical specimen. Here we describe the features of this organism, together with the complete ge-nome Sequence and annotation. This is the first completed Genome Sequence of a member of the genus. Next to Finegoldia magna, A. prevotii is only the second species from the family ‘Peptostreptococcaceae ’ for which a complete Genome Sequence is described. The 1,998,633 bp long Genome (chromosome and one plasmid) with its 1852 protein-coding and 61 RN

  • complete Genome Sequence of hydrogenobacter thermophilus type strain tk 6t
    Standards in Genomic Sciences, 2011
    Co-Authors: Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, Ahmet Zeytun, James Han, Roxanne Tapia
    Abstract:

    Hydrogenobacter thermophilus Kawasumi et al. 1984 is the type species of the genus Hydrogenobacter. H. thermophilus was the first obligate autotrophic organism reported among aerobic hydrogen-oxidizing bacteria. Strain TK-6T is of interest because of the unusually efficient hydrogen-oxidizing ability of this strain, which results in a faster generation time compared to other autotrophs. It is also able to grow anaerobically using nitrate as an electron acceptor when molecular hydrogen is used as the energy source, and able to aerobically fix CO2via the reductive tricarboxylic acid cycle. This is the fifth completed Genome Sequence in the family Aquificaceae, and the second Genome Sequence determined from a strain derived from the original isolate. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 1,742,932 bp long Genome with its 1,899 protein-coding and 49 RNA genes is a part of the Genomic Encyclopedia of Bacteria and Archaea project.

  • Complete Genome Sequence of Hydrogenobacter thermophilus type strain (TK-6^T)
    Standards in Genomic Sciences, 2011
    Co-Authors: Ahmet Zeytun, Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, James Han, Roxanne Tapia, Lynne Goodwin
    Abstract:

    Hydrogenobacter thermophilus Kawasumi et al. 1984 is the type species of the genus Hydrogenobacter . H. thermophilus was the first obligate autotrophic organism reported among aerobic hydrogen-oxidizing bacteria. Strain TK-6^T is of interest because of the unusually efficient hydrogen-oxidizing ability of this strain, which results in a faster generation time compared to other autotrophs. It is also able to grow anaerobically using nitrate as an electron acceptor when molecular hydrogen is used as the energy source, and able to aerobically fix CO_2 via the reductive tricarboxylic acid cycle. This is the fifth completed Genome Sequence in the family Aquificaceae , and the second Genome Sequence determined from a strain derived from the original isolate. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 1,742,932 bp long Genome with its 1,899 protein-coding and 49 RNA genes is a part of the G enomic E ncyclopedia of B acteria and A rchaea project.

  • Complete Genome Sequence of Thermomonospora curvata type strain (B9 T )
    Standards in genomic sciences, 2011
    Co-Authors: Olga Chertkov, Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, Tijana Glavina Del Rio, Lynne Goodwin, Sam Pitluck
    Abstract:

    Thermomonospora curvata Henssen 1957 is the type species of the genus Thermomonospora. This genus is of interest because members of this clade are sources of new antibiotics, enzymes, and products with pharmacological activity. In addition, members of this genus participate in the active degradation of cellulose. This is the first complete Genome Sequence of a member of the family Thermomonosporaceae. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 5,639,016 bp long Genome with its 4,985 protein-coding and 76 RNA genes is a part of the Genomic Encyclopedia of Bacteria and Archaea project.

  • Complete Genome Sequence of Brachyspira murdochii type strain (56-150^T)
    Standards in Genomic Sciences, 2010
    Co-Authors: Amrita Pati, Sabine Gronow, Johannes Sikorski, Christine Munk, Alla Lapidus, Alex Copeland, Tijana Glavina Del Tio, Matt Nolan, Susan Lucas, Feng Chen
    Abstract:

    Brachyspira murdochii Stanton et al. 1992 is a non-pathogenic, host-associated spirochete of the family Brachyspiraceae . Initially isolated from the intestinal content of a healthy swine, the ‘group B spirochaetes’ were first described as Serpulina murdochii . Members of the family Brachyspiraceae are of great phylogenetic interest because of the extremely isolated location of this family within the phylum ‘ Spirochaetes ’. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. This is the first completed Genome Sequence of a type strain of a member of the family Brachyspiraceae and only the second Genome Sequence from a member of the genus Brachyspira . The 3,241,804 bp long Genome with its 2,893 protein-coding and 40 RNA genes is a part of the G enomic E ncyclopedia of B acteria and A rchaea project.

Susan Lucas - One of the best experts on this subject based on the ideXlab platform.

  • Complete Genome Sequence of Anaerococcus prevotii type strain (PC1T)
    2014
    Co-Authors: Kurt Labutti, Susan Lucas, Feng Chen, Jan-fang Cheng, Rüdiger Pukall, Katja Steenblock, Tijana Glavina, Del Rio, Hope Tice, Matt Nolan
    Abstract:

    genus, and is of phylogenetic interest because of its arguable assignment to the provisionally arranged family ‘Peptostreptococcaceae’. A. prevotii is an obligate anaerobic coccus, usually arranged in clumps or tetrads. The strain, whose Genome is described here, was originally isolated from human plasma; other strains of the species were also isolated from clinical specimen. Here we describe the features of this organism, together with the complete ge-nome Sequence and annotation. This is the first completed Genome Sequence of a member of the genus. Next to Finegoldia magna, A. prevotii is only the second species from the family ‘Peptostreptococcaceae ’ for which a complete Genome Sequence is described. The 1,998,633 bp long Genome (chromosome and one plasmid) with its 1852 protein-coding and 61 RN

  • complete Genome Sequence of hydrogenobacter thermophilus type strain tk 6t
    Standards in Genomic Sciences, 2011
    Co-Authors: Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, Ahmet Zeytun, James Han, Roxanne Tapia
    Abstract:

    Hydrogenobacter thermophilus Kawasumi et al. 1984 is the type species of the genus Hydrogenobacter. H. thermophilus was the first obligate autotrophic organism reported among aerobic hydrogen-oxidizing bacteria. Strain TK-6T is of interest because of the unusually efficient hydrogen-oxidizing ability of this strain, which results in a faster generation time compared to other autotrophs. It is also able to grow anaerobically using nitrate as an electron acceptor when molecular hydrogen is used as the energy source, and able to aerobically fix CO2via the reductive tricarboxylic acid cycle. This is the fifth completed Genome Sequence in the family Aquificaceae, and the second Genome Sequence determined from a strain derived from the original isolate. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 1,742,932 bp long Genome with its 1,899 protein-coding and 49 RNA genes is a part of the Genomic Encyclopedia of Bacteria and Archaea project.

  • Complete Genome Sequence of Hydrogenobacter thermophilus type strain (TK-6^T)
    Standards in Genomic Sciences, 2011
    Co-Authors: Ahmet Zeytun, Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, James Han, Roxanne Tapia, Lynne Goodwin
    Abstract:

    Hydrogenobacter thermophilus Kawasumi et al. 1984 is the type species of the genus Hydrogenobacter . H. thermophilus was the first obligate autotrophic organism reported among aerobic hydrogen-oxidizing bacteria. Strain TK-6^T is of interest because of the unusually efficient hydrogen-oxidizing ability of this strain, which results in a faster generation time compared to other autotrophs. It is also able to grow anaerobically using nitrate as an electron acceptor when molecular hydrogen is used as the energy source, and able to aerobically fix CO_2 via the reductive tricarboxylic acid cycle. This is the fifth completed Genome Sequence in the family Aquificaceae , and the second Genome Sequence determined from a strain derived from the original isolate. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 1,742,932 bp long Genome with its 1,899 protein-coding and 49 RNA genes is a part of the G enomic E ncyclopedia of B acteria and A rchaea project.

  • Complete Genome Sequence of Thermomonospora curvata type strain (B9 T )
    Standards in genomic sciences, 2011
    Co-Authors: Olga Chertkov, Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, Tijana Glavina Del Rio, Lynne Goodwin, Sam Pitluck
    Abstract:

    Thermomonospora curvata Henssen 1957 is the type species of the genus Thermomonospora. This genus is of interest because members of this clade are sources of new antibiotics, enzymes, and products with pharmacological activity. In addition, members of this genus participate in the active degradation of cellulose. This is the first complete Genome Sequence of a member of the family Thermomonosporaceae. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 5,639,016 bp long Genome with its 4,985 protein-coding and 76 RNA genes is a part of the Genomic Encyclopedia of Bacteria and Archaea project.

  • Complete Genome Sequence of Brachyspira murdochii type strain (56-150^T)
    Standards in Genomic Sciences, 2010
    Co-Authors: Amrita Pati, Sabine Gronow, Johannes Sikorski, Christine Munk, Alla Lapidus, Alex Copeland, Tijana Glavina Del Tio, Matt Nolan, Susan Lucas, Feng Chen
    Abstract:

    Brachyspira murdochii Stanton et al. 1992 is a non-pathogenic, host-associated spirochete of the family Brachyspiraceae . Initially isolated from the intestinal content of a healthy swine, the ‘group B spirochaetes’ were first described as Serpulina murdochii . Members of the family Brachyspiraceae are of great phylogenetic interest because of the extremely isolated location of this family within the phylum ‘ Spirochaetes ’. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. This is the first completed Genome Sequence of a type strain of a member of the family Brachyspiraceae and only the second Genome Sequence from a member of the genus Brachyspira . The 3,241,804 bp long Genome with its 2,893 protein-coding and 40 RNA genes is a part of the G enomic E ncyclopedia of B acteria and A rchaea project.

Jan-fang Cheng - One of the best experts on this subject based on the ideXlab platform.

  • Complete Genome Sequence of Anaerococcus prevotii type strain (PC1T)
    2014
    Co-Authors: Kurt Labutti, Susan Lucas, Feng Chen, Jan-fang Cheng, Rüdiger Pukall, Katja Steenblock, Tijana Glavina, Del Rio, Hope Tice, Matt Nolan
    Abstract:

    genus, and is of phylogenetic interest because of its arguable assignment to the provisionally arranged family ‘Peptostreptococcaceae’. A. prevotii is an obligate anaerobic coccus, usually arranged in clumps or tetrads. The strain, whose Genome is described here, was originally isolated from human plasma; other strains of the species were also isolated from clinical specimen. Here we describe the features of this organism, together with the complete ge-nome Sequence and annotation. This is the first completed Genome Sequence of a member of the genus. Next to Finegoldia magna, A. prevotii is only the second species from the family ‘Peptostreptococcaceae ’ for which a complete Genome Sequence is described. The 1,998,633 bp long Genome (chromosome and one plasmid) with its 1852 protein-coding and 61 RN

  • complete Genome Sequence of hydrogenobacter thermophilus type strain tk 6t
    Standards in Genomic Sciences, 2011
    Co-Authors: Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, Ahmet Zeytun, James Han, Roxanne Tapia
    Abstract:

    Hydrogenobacter thermophilus Kawasumi et al. 1984 is the type species of the genus Hydrogenobacter. H. thermophilus was the first obligate autotrophic organism reported among aerobic hydrogen-oxidizing bacteria. Strain TK-6T is of interest because of the unusually efficient hydrogen-oxidizing ability of this strain, which results in a faster generation time compared to other autotrophs. It is also able to grow anaerobically using nitrate as an electron acceptor when molecular hydrogen is used as the energy source, and able to aerobically fix CO2via the reductive tricarboxylic acid cycle. This is the fifth completed Genome Sequence in the family Aquificaceae, and the second Genome Sequence determined from a strain derived from the original isolate. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 1,742,932 bp long Genome with its 1,899 protein-coding and 49 RNA genes is a part of the Genomic Encyclopedia of Bacteria and Archaea project.

  • Complete Genome Sequence of Hydrogenobacter thermophilus type strain (TK-6^T)
    Standards in Genomic Sciences, 2011
    Co-Authors: Ahmet Zeytun, Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, James Han, Roxanne Tapia, Lynne Goodwin
    Abstract:

    Hydrogenobacter thermophilus Kawasumi et al. 1984 is the type species of the genus Hydrogenobacter . H. thermophilus was the first obligate autotrophic organism reported among aerobic hydrogen-oxidizing bacteria. Strain TK-6^T is of interest because of the unusually efficient hydrogen-oxidizing ability of this strain, which results in a faster generation time compared to other autotrophs. It is also able to grow anaerobically using nitrate as an electron acceptor when molecular hydrogen is used as the energy source, and able to aerobically fix CO_2 via the reductive tricarboxylic acid cycle. This is the fifth completed Genome Sequence in the family Aquificaceae , and the second Genome Sequence determined from a strain derived from the original isolate. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 1,742,932 bp long Genome with its 1,899 protein-coding and 49 RNA genes is a part of the G enomic E ncyclopedia of B acteria and A rchaea project.

  • Complete Genome Sequence of Thermomonospora curvata type strain (B9 T )
    Standards in genomic sciences, 2011
    Co-Authors: Olga Chertkov, Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, Tijana Glavina Del Rio, Lynne Goodwin, Sam Pitluck
    Abstract:

    Thermomonospora curvata Henssen 1957 is the type species of the genus Thermomonospora. This genus is of interest because members of this clade are sources of new antibiotics, enzymes, and products with pharmacological activity. In addition, members of this genus participate in the active degradation of cellulose. This is the first complete Genome Sequence of a member of the family Thermomonosporaceae. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 5,639,016 bp long Genome with its 4,985 protein-coding and 76 RNA genes is a part of the Genomic Encyclopedia of Bacteria and Archaea project.

  • Complete Genome Sequence of Anaerococcus prevotii type strain (PC1(T))
    Standards in genomic sciences, 2009
    Co-Authors: Kurt Labutti, Alex Copeland, Susan Lucas, Feng Chen, Jan-fang Cheng, Rüdiger Pukall, Katja Steenblock, Hope Tice, Tijana Glavina Del Rio, Matt Nolan
    Abstract:

    Anaerococcus prevotii (Foubert and Douglas 1948) Ezaki et al. 2001 is the type species of the genus, and is of phylogenetic interest because of its arguable assignment to the provisionally arranged family ‘Peptostreptococcaceae’. A. prevotii is an obligate anaerobic coccus, usually arranged in clumps or tetrads. The strain, whose Genome is described here, was originally isolated from human plasma; other strains of the species were also isolated from clinical specimen. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. This is the first completed Genome Sequence of a member of the genus. Next to Finegoldia magna, A. prevotii is only the second species from the family ‘Peptostreptococcaceae’ for which a complete Genome Sequence is described. The 1,998,633 bp long Genome (chromosome and one plasmid) with its 1852 protein-coding and 61 RNA genes is a part of the Genomic Encyclopedia of Bacteria and Archaea project.

Hope Tice - One of the best experts on this subject based on the ideXlab platform.

  • Complete Genome Sequence of Anaerococcus prevotii type strain (PC1T)
    2014
    Co-Authors: Kurt Labutti, Susan Lucas, Feng Chen, Jan-fang Cheng, Rüdiger Pukall, Katja Steenblock, Tijana Glavina, Del Rio, Hope Tice, Matt Nolan
    Abstract:

    genus, and is of phylogenetic interest because of its arguable assignment to the provisionally arranged family ‘Peptostreptococcaceae’. A. prevotii is an obligate anaerobic coccus, usually arranged in clumps or tetrads. The strain, whose Genome is described here, was originally isolated from human plasma; other strains of the species were also isolated from clinical specimen. Here we describe the features of this organism, together with the complete ge-nome Sequence and annotation. This is the first completed Genome Sequence of a member of the genus. Next to Finegoldia magna, A. prevotii is only the second species from the family ‘Peptostreptococcaceae ’ for which a complete Genome Sequence is described. The 1,998,633 bp long Genome (chromosome and one plasmid) with its 1852 protein-coding and 61 RN

  • complete Genome Sequence of hydrogenobacter thermophilus type strain tk 6t
    Standards in Genomic Sciences, 2011
    Co-Authors: Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, Ahmet Zeytun, James Han, Roxanne Tapia
    Abstract:

    Hydrogenobacter thermophilus Kawasumi et al. 1984 is the type species of the genus Hydrogenobacter. H. thermophilus was the first obligate autotrophic organism reported among aerobic hydrogen-oxidizing bacteria. Strain TK-6T is of interest because of the unusually efficient hydrogen-oxidizing ability of this strain, which results in a faster generation time compared to other autotrophs. It is also able to grow anaerobically using nitrate as an electron acceptor when molecular hydrogen is used as the energy source, and able to aerobically fix CO2via the reductive tricarboxylic acid cycle. This is the fifth completed Genome Sequence in the family Aquificaceae, and the second Genome Sequence determined from a strain derived from the original isolate. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 1,742,932 bp long Genome with its 1,899 protein-coding and 49 RNA genes is a part of the Genomic Encyclopedia of Bacteria and Archaea project.

  • Complete Genome Sequence of Hydrogenobacter thermophilus type strain (TK-6^T)
    Standards in Genomic Sciences, 2011
    Co-Authors: Ahmet Zeytun, Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, James Han, Roxanne Tapia, Lynne Goodwin
    Abstract:

    Hydrogenobacter thermophilus Kawasumi et al. 1984 is the type species of the genus Hydrogenobacter . H. thermophilus was the first obligate autotrophic organism reported among aerobic hydrogen-oxidizing bacteria. Strain TK-6^T is of interest because of the unusually efficient hydrogen-oxidizing ability of this strain, which results in a faster generation time compared to other autotrophs. It is also able to grow anaerobically using nitrate as an electron acceptor when molecular hydrogen is used as the energy source, and able to aerobically fix CO_2 via the reductive tricarboxylic acid cycle. This is the fifth completed Genome Sequence in the family Aquificaceae , and the second Genome Sequence determined from a strain derived from the original isolate. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 1,742,932 bp long Genome with its 1,899 protein-coding and 49 RNA genes is a part of the G enomic E ncyclopedia of B acteria and A rchaea project.

  • Complete Genome Sequence of Thermomonospora curvata type strain (B9 T )
    Standards in genomic sciences, 2011
    Co-Authors: Olga Chertkov, Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, Tijana Glavina Del Rio, Lynne Goodwin, Sam Pitluck
    Abstract:

    Thermomonospora curvata Henssen 1957 is the type species of the genus Thermomonospora. This genus is of interest because members of this clade are sources of new antibiotics, enzymes, and products with pharmacological activity. In addition, members of this genus participate in the active degradation of cellulose. This is the first complete Genome Sequence of a member of the family Thermomonosporaceae. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 5,639,016 bp long Genome with its 4,985 protein-coding and 76 RNA genes is a part of the Genomic Encyclopedia of Bacteria and Archaea project.

  • Complete Genome Sequence of Anaerococcus prevotii type strain (PC1(T))
    Standards in genomic sciences, 2009
    Co-Authors: Kurt Labutti, Alex Copeland, Susan Lucas, Feng Chen, Jan-fang Cheng, Rüdiger Pukall, Katja Steenblock, Hope Tice, Tijana Glavina Del Rio, Matt Nolan
    Abstract:

    Anaerococcus prevotii (Foubert and Douglas 1948) Ezaki et al. 2001 is the type species of the genus, and is of phylogenetic interest because of its arguable assignment to the provisionally arranged family ‘Peptostreptococcaceae’. A. prevotii is an obligate anaerobic coccus, usually arranged in clumps or tetrads. The strain, whose Genome is described here, was originally isolated from human plasma; other strains of the species were also isolated from clinical specimen. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. This is the first completed Genome Sequence of a member of the genus. Next to Finegoldia magna, A. prevotii is only the second species from the family ‘Peptostreptococcaceae’ for which a complete Genome Sequence is described. The 1,998,633 bp long Genome (chromosome and one plasmid) with its 1852 protein-coding and 61 RNA genes is a part of the Genomic Encyclopedia of Bacteria and Archaea project.

Alla Lapidus - One of the best experts on this subject based on the ideXlab platform.

  • complete Genome Sequence of hydrogenobacter thermophilus type strain tk 6t
    Standards in Genomic Sciences, 2011
    Co-Authors: Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, Ahmet Zeytun, James Han, Roxanne Tapia
    Abstract:

    Hydrogenobacter thermophilus Kawasumi et al. 1984 is the type species of the genus Hydrogenobacter. H. thermophilus was the first obligate autotrophic organism reported among aerobic hydrogen-oxidizing bacteria. Strain TK-6T is of interest because of the unusually efficient hydrogen-oxidizing ability of this strain, which results in a faster generation time compared to other autotrophs. It is also able to grow anaerobically using nitrate as an electron acceptor when molecular hydrogen is used as the energy source, and able to aerobically fix CO2via the reductive tricarboxylic acid cycle. This is the fifth completed Genome Sequence in the family Aquificaceae, and the second Genome Sequence determined from a strain derived from the original isolate. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 1,742,932 bp long Genome with its 1,899 protein-coding and 49 RNA genes is a part of the Genomic Encyclopedia of Bacteria and Archaea project.

  • Complete Genome Sequence of Hydrogenobacter thermophilus type strain (TK-6^T)
    Standards in Genomic Sciences, 2011
    Co-Authors: Ahmet Zeytun, Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, James Han, Roxanne Tapia, Lynne Goodwin
    Abstract:

    Hydrogenobacter thermophilus Kawasumi et al. 1984 is the type species of the genus Hydrogenobacter . H. thermophilus was the first obligate autotrophic organism reported among aerobic hydrogen-oxidizing bacteria. Strain TK-6^T is of interest because of the unusually efficient hydrogen-oxidizing ability of this strain, which results in a faster generation time compared to other autotrophs. It is also able to grow anaerobically using nitrate as an electron acceptor when molecular hydrogen is used as the energy source, and able to aerobically fix CO_2 via the reductive tricarboxylic acid cycle. This is the fifth completed Genome Sequence in the family Aquificaceae , and the second Genome Sequence determined from a strain derived from the original isolate. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 1,742,932 bp long Genome with its 1,899 protein-coding and 49 RNA genes is a part of the G enomic E ncyclopedia of B acteria and A rchaea project.

  • Complete Genome Sequence of Thermomonospora curvata type strain (B9 T )
    Standards in genomic sciences, 2011
    Co-Authors: Olga Chertkov, Johannes Sikorski, Alla Lapidus, Matt Nolan, Susan Lucas, Jan-fang Cheng, Hope Tice, Tijana Glavina Del Rio, Lynne Goodwin, Sam Pitluck
    Abstract:

    Thermomonospora curvata Henssen 1957 is the type species of the genus Thermomonospora. This genus is of interest because members of this clade are sources of new antibiotics, enzymes, and products with pharmacological activity. In addition, members of this genus participate in the active degradation of cellulose. This is the first complete Genome Sequence of a member of the family Thermomonosporaceae. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. The 5,639,016 bp long Genome with its 4,985 protein-coding and 76 RNA genes is a part of the Genomic Encyclopedia of Bacteria and Archaea project.

  • Complete Genome Sequence of Brachyspira murdochii type strain (56-150^T)
    Standards in Genomic Sciences, 2010
    Co-Authors: Amrita Pati, Sabine Gronow, Johannes Sikorski, Christine Munk, Alla Lapidus, Alex Copeland, Tijana Glavina Del Tio, Matt Nolan, Susan Lucas, Feng Chen
    Abstract:

    Brachyspira murdochii Stanton et al. 1992 is a non-pathogenic, host-associated spirochete of the family Brachyspiraceae . Initially isolated from the intestinal content of a healthy swine, the ‘group B spirochaetes’ were first described as Serpulina murdochii . Members of the family Brachyspiraceae are of great phylogenetic interest because of the extremely isolated location of this family within the phylum ‘ Spirochaetes ’. Here we describe the features of this organism, together with the complete Genome Sequence and annotation. This is the first completed Genome Sequence of a type strain of a member of the family Brachyspiraceae and only the second Genome Sequence from a member of the genus Brachyspira . The 3,241,804 bp long Genome with its 2,893 protein-coding and 40 RNA genes is a part of the G enomic E ncyclopedia of B acteria and A rchaea project.