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Penicillium chrysogenum (formerly known as Penicillium notatum) is a species of fungus in the genus Penicillium. It is common in temperate and subtropical regions and can be found on salted food products, [ 1 ] but it is mostly found in indoor environments, especially in damp or water-damaged buildings. [ 2 ]
Penicillium camemberti: fungus: cheese [2] [5] v Penicillium caseifulvum: fungus: cheese [2] Penicillium chrysogenum: fungus: cheese [2] Penicillium chrysogenum: fungus: meat sausage [5] Penicillium commune: fungus: cheese (surface-ripened) [2] [4] Penicillium nalgiovense: fungus: cheese [2] Penicillium nalgiovense: fungus: meat ham ...
Penicillium abidjanum [2] Penicillium adametzii [2] Penicillium adametzioides [2] Penicillium aeris [3] Penicillium aethiopicum [2] Penicillium albicans [2] Penicillium albidum [2] Penicillium albocoremium; Penicillium alexiae [4] Penicillium alfredii [5] Penicillium alicantinum [4] Penicillium allahabadense [6] Penicillium allii; Penicillium ...
Penicillium growth can still occur indoors even if the relative humidity is low, as long as there is sufficient moisture available on a given surface. A British study determined that Aspergillus- and Penicillium-type spores were the most prevalent in the indoor air of residential properties, and exceeded outdoor levels. [14]
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The mould was identified as Penicillium chrysogenum and designated as NRRL 1951 or cantaloupe strain. [106] [116] The spores may have escaped from the NRRL. [117] [a] [b] Between 1941 and 1943, Moyer, Coghill and Raper developed methods for industrialized penicillin production and isolated higher-yielding strains of the Penicillium fungus.
Penicillium rubens is a species of fungus in the genus Penicillium and was the first species known to produce the antibiotic penicillin. It was first described by Philibert Melchior Joseph Ehi Biourge in 1923. For the discovery of penicillin from this species Alexander Fleming shared the Nobel Prize in Physiology or Medicine in 1945. [1]
"The isopenicillin-N acyltransferase of Penicillium chrysogenum has isopenicillin-N amidohydrolase, 6-aminopenicillanic acid acyltransferase and penicillin amidase activities, all of which are encoded by the single penDE gene". European Journal of Biochemistry. 215 (2): 323–332. doi: 10.1111/j.1432-1033.1993.tb18038.x. ISSN 0014-2956