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Tersicoccus
''Tersicoccus'' is a Gram-positive genus of bacteria from the family Micrococcaceae The family ''Micrococcaceae'' includes bacterial genera of Gram positive cocci that inhabit the air and skin, such as ''Micrococcus luteus''. Genera The family ''Micrococcaceae'' comprises the following genera: * '' Acaricomes'' Pukall ''et al .... References Micrococcaceae Bacteria genera {{Actinobacteria-stub ...
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Tersicoccus Phoenicis
''Tersicoccus phoenicis'' is a member of the bacterial family Micrococcaceae. It has only been found in two Cleanroom, 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 (spacecraft), ''Phoenix'' lander, the spacecraft being prepared when these bacteria were first discovered. Occurrence ''Tersicoccus phoenicis'' are only known to exist at two locations on Earth, and were independently found in geographically separated clean room facilities nearly apart. One example was located during a 2007 microbial test swabbing of the Phoenix (spacecraft), ''Phoenix'' lander clean room floor in the Payload Hazardous Servicing Facility at Kennedy Space Center (Florida, United States), while the other was found in the Herschel Space Observatory's clean room at Guiana Space Centre (Kourou, French Guiana). ...
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Micrococcaceae
The family ''Micrococcaceae'' includes bacterial genera of Gram positive cocci that inhabit the air and skin, such as ''Micrococcus luteus''. Genera The family ''Micrococcaceae'' comprises the following genera: * '' Acaricomes'' Pukall ''et al''. 2006 * '' Arthrobacter'' Conn and Dimmick 1947 (Approved Lists 1980) * '' Auritidibacter'' Yassin ''et al''. 2011 * '' Citricoccus'' Altenburger ''et al''. 2002 * '' Enteractinococcus'' Cao ''et al''. 2012 * '' Falsarthrobacter'' Busse and Moore 2018 * '' Galactobacter'' Hahne ''et al''. 2019 * '' Garicola'' Lo ''et al''. 2015 * '' Glutamicibacter'' Busse 2016 * '' Haematomicrobium'' Schumann and Busse 2017 * ''Kocuria'' Stackebrandt ''et al''. 1995 * '' Micrococcoides'' Tóth ''et al''. 2017 * ''Micrococcus'' Cohn 1872 (Approved Lists 1980) * '' Neomicrococcus'' Prakash ''et al''. 2015 * '' Nesterenkonia'' Stackebrandt ''et al''. 1995 * '' Paenarthrobacter'' Busse 2016 * '' Paeniglutamicibacter'' Busse 2016 * '' Pseudarthrobacter'' B ...
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List Of Prokaryotic Names With Standing In Nomenclature
List of Prokaryotic names with Standing in Nomenclature (LPSN) is an online database that maintains information on the naming and taxonomy of prokaryotes, following the taxonomy requirements and rulings of the International Code of Nomenclature of Prokaryotes The International Code of Nomenclature of Prokaryotes (ICNP) formerly the International Code of Nomenclature of Bacteria (ICNB) or Bacteriological Code (BC) governs the scientific names for Bacteria and Archaea.P. H. A. Sneath, 2003. A short hist .... The database was curated from 1997 to June 2013 by Jean P. Euzéby. From July 2013 to January 2020, LPSN was curated by Aidan C. Parte. In February 2020, a new version of LPSN was published as a service of the Leibniz Institute DSMZ, thereby also integrating the Prokaryotic Nomenclature Up-to-date service. References External links List of Prokaryotic names with Standing in Nomenclature
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Gram-positive
In bacteriology, gram-positive bacteria are bacteria that give a positive result in the Gram stain test, which is traditionally used to quickly classify bacteria into two broad categories according to their type of cell wall. Gram-positive bacteria take up the crystal violet stain used in the test, and then appear to be purple-coloured when seen through an optical microscope. This is because the thick peptidoglycan layer in the bacterial cell wall retains the stain after it is washed away from the rest of the sample, in the decolorization stage of the test. Conversely, gram-negative bacteria cannot retain the violet stain after the decolorization step; alcohol used in this stage degrades the outer membrane of gram-negative cells, making the cell wall more porous and incapable of retaining the crystal violet stain. Their peptidoglycan layer is much thinner and sandwiched between an inner cell membrane and a bacterial outer membrane, causing them to take up the counterstain (saf ...
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