Tersicoccus phoenicis

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Tersicoccus phoenicis is a member of the bacterial family Micrococcaceae. It has only been found in spacecraft assembly clean room facilities and is resistant to the methods normally used to clean such facilities. The species name is derived from tersi, Latin for clean; coccus, Greek for berry; and phoenicis, from NASA's Phoenix lander, the spacecraft being prepared when these bacterium were first discovered.[1]

Tersicoccus phoenicis
Microscopic image of Tersicoccus phoenicis[1]
Scientific classification
Kingdom:
Phylum:
Class:
Order:
Family:
Genus:
Tersicoccus
Species:
T. phoenicis
Binomial name
Tersicoccus phoenicis
Vaishampayan, et. al., 2013[1][2]

Occurrence

T. phoenicis are only known to exist at two locations on Earth, and were were independently found in geographically separated clean room facilities nearly 4,000 km (2,500 mi) apart.[1][2] One example was located during a 2007 microbial test swabbing of the Phoenix lander's clean room floor in the Payload Hazardous Servicing Facility at Kennedy Space Center (Florida, United States),[1][3] while the other was found in the Herschel Space Observatory's clean room at Guiana Space Centre (Kourou, French Guiana).[4]

Parag Vaishampayan, a microbiologist with NASA's Jet Propulsion Laboratory, suggests that this species may exist naturally outside of the clean room environment but has not been seen before due to the difficulty in isolating a single type amongst the density of microbes found in nature.[1]

Characteristics

These bacteria are non-spore-forming, aerobic, non-motile, and Gram-positive.[2][5] It is roughly spherical (coccus) in shape and measures approximately 1 micrometre (0.00004 in) in diameter.[6] This species maintains a coccal morphology throughout their growth; the rod–coccus life cycle typically observed in nearly all Arthrobacter species is not present.[2] It is able to survive in an environment with few nutrients.[1]

Two strains of T. phoenicis are known to exist, one at each discovery site: 1P05MAT at the American facility and KO_PS43 at the French Guianan facility.[3][4]

Significance

Because species like T. phoenicis are hardy enough to survive the sterilization measures used in spacecraft clean rooms, scientists study them and index their genetic material so that if a potential extraterrestrial bacterium were returned to Earth aboard a spacecraft, it could be compared to the index and ruled out as something that may have been originally launched with the spacecraft. Additionally, by examining the characteristics of resistant microbes such as T. phoenicis, scientists may be able to develop improved sterilization methods.[1][5][7] This is necessary to prevent the contamination of other celestial bodies by organisms aboard visiting spacecraft.[7]

See also

References

  1. ^ a b c d e f g h Webster, Guy (November 6, 2013). "Rare New Microbe Found in Two Distant Clean Rooms". NASA.gov. Retrieved November 6, 2013.
  2. ^ a b c d Vaishampayan, Parag; Moissl-Eichinger, Christine; Pukall, Rüdiger; Schumann, Peter; Spröer, Cathrin; Augustus, Angela; Hayden Roberts, Anne; Namba, Greg; Cisneros, Jessica; et al. (July 2013). "Description of Tersicoccus phoenicis gen. nov., sp. nov. isolated from spacecraft assembly clean room environments". International Journal of Systematic and Evolutionary Microbiology. 63 (Pt 7): 2463–2471. doi:10.1099/ijs.0.047134-0. PMID 23223813.
  3. ^ a b "Details: DSM-30849". Leibniz Institut DSMZ. Retrieved November 10, 2013.
  4. ^ a b "Details: DSM-30842". Leibniz Institut DSMZ. Retrieved November 10, 2013.
  5. ^ a b Vaishampayan, Parag; Venkateswaran, Kasthuri; Schwendner, Petra; Moissl-Eichinger, Christine (June 1, 2012). "Hardy Bacterium Isolated From Two Geographically Distinct Spacecraft Assembly Cleanroom Facilities". NASA Tech Briefs. Retrieved November 10, 2013.
  6. ^ "New life found in Nasa's spacecraft clean rooms". The Daily Telegraph. November 7, 2013. Retrieved November 10, 2013.
  7. ^ a b Kooser, Amanda (November 7, 2013). "New species of microbe thrives in spacecraft clean rooms". CNET.com. Retrieved November 10, 2013.