Biology:Clostridia

From HandWiki

The Clostridia are a highly polyphyletic class of Bacillota, including Clostridium and other similar genera. They are distinguished from the Bacilli by lacking aerobic respiration. They are obligate anaerobes and oxygen is toxic to them. Species of the class Clostridia are often but not always Gram-positive (see Halanaerobium) and have the ability to form spores.[1] Studies show they are not a monophyletic group, and their relationships are not entirely certain. Currently, most are placed in a single order called Clostridiales, but this is not a natural group and is likely to be redefined in the future.

Most species of the genus Clostridium are saprophytic organisms that ferment plant polysaccharides [2] and are found in many places in the environment, most notably the soil. However, the genus does contain some human pathogens (outlined below). The toxins produced by certain members of the genus Clostridium are among the most dangerous known. Examples are tetanus toxin (known as tetanospasmin) produced by C. tetani and botulinum toxin produced by C. botulinum. Some species have been isolated from women with bacterial vaginosis.[3]

Species

Notable species of this class include:[citation needed]

Heliobacteria and Christensenella are also members of the class Clostridia.

Some of the enzymes produced by this group are used in bioremediation.

Phylogeny

The currently accepted taxonomy is based on the List of Prokaryotic names with Standing in Nomenclature (LPSN)[4] and National Center for Biotechnology Information (NCBI)[5]

16S rRNA based LTP_10_2024[6][7][8] 120 marker proteins based GTDB 09-RS220[9][10][11]
"Clostridiia" s.l.
 
 
 
 

Peptococcales

 
 

"Proteinivoracales"

 
 
 

Eubacteriales

 
 
 
 
 
 
 

Limnochordales

 
 

"Capillibacteriales"

 
 
 
 

Sulfobacillales

 
 
 

Symbiobacteriales

 
 

Thermaerobacterales

 
 
 
 
 
 
 

Dethiobacterales

 
 

Natranaerobiales

 
 
 
 

Gelria

 
 
 
 

Koleobacterales

 
 
 

Caldicellulosiruptorales

 
 

"Caldanaerobiales"

 
 
 
 
 
 

Thermacetogeniales

 
 

Carboxydothermales

 
 
 
 
 
 

Desulfovirgulaceae

 
 

Ammonificales

 
 
 
 

"Brockiales"

 
 
 

Dictyoglomerales

 
 

Thermosediminibacterales

 
 
 
 
 

Thermoanaerobacterales

 
 
 
 
 
 
 
 
 

Tissierellales 1

 
 
 

Tissierellales

 
 

Peptostreptococcales

 
 
 
 
 
 
 
 

Thermolithobacterales

 
 

Carboxydocellales

 
 
 
 
 
 
 

Desulfitibacterales

 
 

Desulfitisporales

 
 
 
 
 

Calderihabitantales

 
 

Moorellales

 
 
 
 

Zhaonellaceae

 
 

Syntrophomonadales

 
 
 
 
 
 
 
 
 

"Thermanaerosceptrales"

 
 

Thermincolales

 
 
 
 

"Heliobacteriales"

 
 

Desulfitobacteriales

 
 
 
 

Desulfotomaculales

 
 
 
 

Halanaerobiales [incl. "Anoxybacterales", Halobacteroidales]

 
 
 

"Hydrogenisporales"

 
 

Selenomonadales [incl. Acidaminococcales, Anaeromusales, "Dendrosporobacterales", Propionisporales, "Sporomusales", Veillonellales]

 
 
 
 
 
 
 
 
 

Gracilibacteraceae

 
 

Lutisporales

 
 
 

Clostridiales

 
 
 
 
 

Christensenellales

 
 
 

Aristaeellaceae

 
 
 

Mahellales

 
 

Caldicoprobacterales

 
 
 
 
 
 
 

Monoglobales [incl. "Petroclostridiales"]

 
 
 

Acetivibrionales [incl. "Saccharofermentanales", "Thermoclostridiaceae"]

 
 

"Oscillospirales"

 
 
 
 

Lachnospirales

 
 
 
 
 
 
{Bacillota_A}
 
 
Bacillota G
Limnochordia

Limnochordales

 
"Hydrogenisporia"
 

"Capillibacteriales"

 
 

"Hydrogenisporales"

 
 
 
 
 
 
Bacillota E
 
UBA3575

"Ca. Acetocimmeria"

 
 
 
 
Thermaerobacteria

Thermaerobacterales

 
 
 
Symbiobacteriia

Symbiobacteriales

 
Sulfobacillia

Sulfobacillales

 
 
 
 
 
 
 
 
"Selenobacteria"
"Selenomonadia"
 

Veillonellales

 
 
 

Acidaminococcales

 
 
 

Sporomusales_A

 
 
 
 

Lucifera {UPPP01}

 
 

Sporomusales C

 
 
 
 

"Sporomusales"

 
 
 
 

Pelosinus {UMGS1260}

 
 

Propionisporales

 
 
 
 

Anaeromusales

 
 
 

"Dendrosporobacterales"

 
 

Selenomonadales

 
 
 
 
 
 
 
 
 
 
"Desulfotomaculota"
 
 
 
Peptococcia
 

"Thermanaerosceptrales"

 
 

Peptococcales

 
 
"Dehalobacteriia"
 
 

"Avidehalobacterales"

 
 

"Cryptoclostridiales"

 
 
 

"Dehalobacteriales"

 
 
 
 
Desulfitobacteriia
 

"Heliobacteriales"

 
 

Desulfitobacteriales

 
 
 
 
 
 
"Moorellia"
 

Zhaonellaceae {DULZ01}

 
 
 

Desulfitibacterales

 
 
 

Calderihabitantales

 
 

Moorellales

 
 
 
 
 
 
DSM‑12270

Thermacetogeniales

 
Syntrophomonadia

Syntrophomonadales

 
 
 
 
 
 
"Carboxydocellia"

Carboxydocellales

 
Thermincolia

Thermincolales

 
 
 
"Carboxydothermia"

Carboxydothermales

 
Desulfotomaculia
 

Ammonificales

 
 

Desulfotomaculales

 
 
 
 
 
 
 
 
Bacillota D
 
"Proteinivoracia"

"Proteinivoracales"

 
 
 
"Dethiobacteria"
 

"Ca. Contubernalis" {SKNC01}

 
 

"Dethiobacterales"

 
 
Natranaerobiia

Natranaerobiales

 
 
 
 
 
"Halanaerobiaeota"
"Halanaerobiia"
 

"Anoxybacterales"

 
 
 

Halanaerobiales

 
 

Halobacteroidales

 
 
 
 
Bacillota A
 
Thermosediminibacteria
 

Koleobacterales

 
 

Thermosediminibacterales

 
 
 
 
"Thermoanaerobacteria"
 

Caldicellulosiruptorales

 
 

Thermoanaerobacterales

 
 
"Clostridiia" s.s.
 
 

Mahellales

 
 

Caldicoprobacterales

 
 
 
 
 
 

Lutisporales

 
 

Clostridiales

 
 
 
 

Eubacteriales

 
 
 

Tissierellales

 
 

Peptostreptococcales

 
 
 
 
 
 

Christensenellales

 
 
 
 
 

"Merdicolales"

 
 
 
 

"Egerieisomatales"

 
 

"Saccharofermentanales"

 
 
 
 

"Thermoclostridiaceae"

 
 

Acetivibrionales

 
 
 
 
 
 
 
 

"Petroclostridiales"

 
 

Monoglobales

 
 
 
 

"Qingrenia" {UMGS1810}

 
 

"Avimonoglobales"

 
 
 
 

"Oscillospirales"

 
 
 
 

Lachnospirales

 
 
 
 
 
 
 
 
 
 
 
Bacillota s.s.

"Bacillia" [incl. Alicyclobacillia; Desulfuribacillia; Culicoidibacteria]

 
 
 
 
 

Epidemiology

Since they are commonly found in soils and in microbiota of humans and animals, Clostridia wounds and infections are found worldwide. Host defenses against the microbe are nearly absent, and very little innate immunity exists, if any. Clostridia can be diagnosed by recognizing the characteristics of the lesion of the infection along with Gram stains of the tissue and bacterial culture.[1] Although the body does not have adequate defenses alone, this microbe can be controlled with the help of antibiotics, like penicillin, and tissue debridement for the more severe cases.[citation needed]

Clostridia and health

Clostridia bacteria are commonly found in the gut microbiome.[12]

Clostridioides difficile

Overuse of antibiotics can cause imbalance of the gut microbiome, leading to overgrowth of the species Clostridioides difficile causing a serious infection (CDI).[13] Effects of this infection include severe diarrhea and the severity of many bowel related diseases is also increased as a result of the infection. Other Clostridium bacteria in the gut have been linked to brain connectivity and healthy function.[14]

Patients that have been subjected to fecal microbiota transplants to treat their CDI have seen improvements in their mood and mental health.[13] This preliminary research seems to suggest a tentative link between the presence of Clostridia in the gut microbiome and overall mental health, with gut microbiome transplants as an avenue of future research into novel treatments for certain psychiatric disorders.[citation needed]

References

  1. ↑ 1.0 1.1 Baron, Samuel (1996). Medical Microbiology (4th ed.). Galveston: Universirt of Texas Medical Branch. ISBN 0-9631172-1-1. 
  2. ↑ Boutard, Magali; Cerisy, Tristan; Nogue, Pierre-Yves (2014). "Functional diversity of carbohydrate-active enzymes enabling a bacterium to ferment plant biomass". PLOS Genetics 10 (11). doi:10.1371/journal.pgen.1004773. PMID 25393313. 
  3. ↑ Africa, Charlene; Nel, Janske; Stemmet, Megan (2014). "Anaerobes and Bacterial Vaginosis in Pregnancy: Virulence Factors Contributing to Vaginal Colonisation". International Journal of Environmental Research and Public Health 11 (7): 6979–7000. doi:10.3390/ijerph110706979. ISSN 1660-4601. PMID 25014248. 
  4. ↑ A.C. Parte. "Clostridia". List of Prokaryotic names with Standing in Nomenclature (LPSN). https://lpsn.dsmz.de/class/Clostridia. 
  5. ↑ Sayers. "Clostridia". National Center for Biotechnology Information (NCBI) taxonomy database. https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?mode=Tree&id=186801&lvl=3&lin=f&keep=1&srchmode=1&unlock. 
  6. ↑ "The LTP". https://imedea.uib-csic.es/mmg/ltp/#LTP. 
  7. ↑ "LTP_all tree in newick format". https://imedea.uib-csic.es/mmg/ltp/wp-content/uploads/ltp/LTP_all_10_2024.ntree. 
  8. ↑ "LTP_10_2024 Release Notes". https://imedea.uib-csic.es/mmg/ltp/wp-content/uploads/ltp/LTP_10_2024_release_notes.pdf. 
  9. ↑ "GTDB release 09-RS220". https://gtdb.ecogenomic.org/about#4%7C. 
  10. ↑ "bac120_r220.sp_labels". https://data.gtdb.ecogenomic.org/releases/release220/220.0/auxillary_files/bac120_r220.sp_labels.tree. 
  11. ↑ "Taxon History". https://gtdb.ecogenomic.org/taxon_history/. 
  12. ↑ Lopetuso, Loris R.; Scaldaferri, Franco; Petito, Valentina; Gasbarrini, Antonio (2013-08-13). "Commensal Clostridia: leading players in the maintenance of gut homeostasis" (in en). Gut Pathogens 5 (1): 23. doi:10.1186/1757-4749-5-23. ISSN 1757-4749. PMID 23941657. 
  13. ↑ 13.0 13.1 Jalanka, J.; Hillamaa, A.; Satokari, R.; Mattila, E.; Anttila, V.-J.; Arkkila, P. (2018). "The long-term effects of faecal microbiota transplantation for gastrointestinal symptoms and general health in patients with recurrent Clostridium difficile infection" (in en). Alimentary Pharmacology & Therapeutics 47 (3): 371–379. doi:10.1111/apt.14443. ISSN 1365-2036. PMID 29226561. 
  14. ↑ Labus, Jennifer S.; Hsiao, Elaine; Tap, Julien; Derrien, Muriel; Gupta, Arpana; Le Nevé, Boris; Brazeilles, Rémi; Grinsvall, Cecilia et al. (2017). "Clostridia from the Gut Microbiome are Associated with Brain Functional Connectivity and Evoked Symptoms in IBS". Gastroenterology 152 (5): S40. doi:10.1016/S0016-5085(17)30496-1. 

Wikidata ☰ Q132809 entry