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Synergistota
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The Synergistota is a phylum of anaerobic bacteria that show staining and have rod/vibrioid cell shape.Hugenholtz, P., Hooper, S.D., and Kyrpides, N.C. (2009). Focus: Synergistetes. Environ. Microbiol. 11, 1327–1329. Although Synergistota have a diderm cell envelope,Gupta, R. S. (2011) Origin of Diderm (Gram-negative) Bacteria: Antibiotic Selection Pressure Rather than Endosymbiosis Likely led to the Evolution of Bacterial Cells with Two Membranes. Antonie van Leeuwenhoek. 100: 171–182 the genes for various proteins involved in lipopolysaccharides have not yet been detected in Synergistota, indicating that they may have an atypical outer cell envelope. The Synergistota inhabit a majority of anaerobic environments including animal gastrointestinal tracts, soil, oil wells, and wastewater treatment plants and they are also present in sites of human diseases such as cysts, abscesses, and areas of periodontal disease.Vartoukian, S.R., Palmer, R.M., and Wade, W.G. (2007). The division "Synergistes". Anaerobe. 13, 99–106. Due to their presence at illness related sites, the Synergistota are suggested to be opportunistic pathogens but they can also be found in healthy individuals in the of the umbilicus and in normal .Marchandin, H., Damay, A., Roudiere, L., Teyssier, C., Zorgniotti, I., Dechaud, H., Jean-Pierre, H., and Jumas-Bilak, E. (2010). Phylogeny, diversity and host specialization in the phylum Synergistetes with emphasis on strains and clones of human origin. Res. Microbiol. 161, 91–100. Species within this phylum have also been implicated in periodontal disease, gastrointestinal infections and soft tissue infections. Other species from this phylum have been identified as significant contributors in the degradation of sludge for production of in anaerobic digesters and are potential candidates for use in renewable energy production through their production of hydrogen gas.Riviere, D., Desvignes, V., Pelletier, E., Chaussonnerie, S., Guermazi, S., Weissenbach, J., Li, T., Camacho, P., and Sghir, A. (2009). Towards the definition of a core of microorganisms involved in anaerobic digestion of sludge. ISME. J. 3, 700–714. All of the known Synergistota species and genera are presently part of a single class (Synergistia), order (Synergistiales), and family (Synergistaceae).


Comparative genomics and molecular signatures
Recent comparative analyses of sequenced Synergistota genomes have led to identification of large numbers of conserved signature indels (CSIs) in protein sequences that are specific for either all sequenced Synergistota species or some of their sub-clades that are observed in phylogenetic trees. Of the CSIs that were identified, 32 in widely distributed proteins such as RpoB, RpoC, UvrD, GyrA, PolA, PolC, MraW, NadD, PyrE, RpsA, RpsH, FtsA, RadA, etc., including a large >300 aa insert in the RpoC protein, are present in various Synergistota species, but except for isolated bacteria, these CSIs are not found in the protein homologues from all other organisms. These CSIs provide novel molecular markers for distinguishing Synergistota species from all other bacteria. Seven other CSIs in important proteins including a 13 aa in RpoB were found to be uniquely present in Jonquetella, Pyramidobacter and Dethiosulfovibrio species indicating a close and specific relationship among these bacteria, which is also strongly supported by phylogenetic trees. Fifteen addition CSIs that were only present in Jonquetella and Pyramidobacter indicate a close association between these two species. Lastly, a close relationship between the Aminomonas and Thermanaerovibrio species is also supported by 9 identified CSIs. The identified molecular markers provide reliable means for the division of species from the phylum Synergistota into intermediate taxonomic ranks such as families and orders.


Phylogeny


Taxonomy
The currently accepted taxonomy is based on the List of Prokaryotic names with Standing in Nomenclature (LSPN) and the National Center for Biotechnology Information (NCBI).

  • Phylum Synergistota Jumas-Bilak et al. 2021
    • Class Jumas-Bilak et al. 2009
      • Order Jumas-Bilak et al. 2009
        • Genus " " Ndongo et al. 2017
          • Species ?" P. massiliensis" Ndongo et al. 2017
        • Genus " Candidatus " Hongoh et al. 2007
          • Species ?" Ca. T. caduceiae" Hongoh et al. 2007
        • Family Aminithiophilaceae Pradel et al. 2023
        • Family Acetomicrobiaceae Pradel et al. 2023
        • Family Pradel et al. 2023
          • Genus " " Liu et al. 2021
            • Species ?" A. propionatiphilus" Liu et al. 2021
          • Genus Díaz et al. 2007
        • Family Aminobacteriaceae Pradel et al. 2023
        • Family Dethiosulfovibrionaceae Pradel et al. 2023
        • Family Jumas-Bilak et al. 2009 Clostridiales
          • Genus Baena et al. 1999
          • Genus " Candidatus " Gilroy et al. 2021
          • Genus Ganesan et al. 2008 emend. Looft et al. 2013
          • Genus " Candidatus " Gilroy et al. 2022
            • Species ?" Ca. E. faecalis" Gilroy et al. 2022
          • Genus Allison et al. 1993
          • Genus Thermanaerovibrio Baena et al. 1999 emend. Palaniappan et al. 2013
        • Family Thermosynergistaceae Yang et al. 2021
          • Genus Thermosynergistes Yang et al. 2021
        • Family Pradel et al. 2023


See also
  • List of bacteria genera
  • List of bacterial orders

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