Microbispora
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Microbispora
''Microbispora'' is a Gram-positive, mesophilic, thermophilic and non-motile bacterial genus from the family of Streptosporangiaceae The ''Streptosporangiaceae'' are a family of bacteria Bacteria (; singular: bacterium) are ubiquitous, mostly free-living organisms often consisting of one biological cell. They constitute a large domain of prokaryotic microorganisms. .... References Further reading * Actinomycetales Bacteria genera Thermophiles {{Actinobacteria-stub ...
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Microbispora Hainanensis
''Microbispora'' is a Gram-positive, mesophilic A mesophile is an organism that grows best in moderate temperature, neither too hot nor too cold, with an optimum growth range from . The optimum growth temperature for these organisms is 37°C. The term is mainly applied to microorganisms. Organi ..., thermophilic and non-motile bacterial genus from the family of Streptosporangiaceae. References Further reading * Actinomycetales Bacteria genera Thermophiles {{Actinobacteria-stub ...
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Microbispora Siamensis
''Microbispora'' is a Gram-positive, mesophilic A mesophile is an organism that grows best in moderate temperature, neither too hot nor too cold, with an optimum growth range from . The optimum growth temperature for these organisms is 37°C. The term is mainly applied to microorganisms. Organi ..., thermophilic and non-motile bacterial genus from the family of Streptosporangiaceae. References Further reading * Actinomycetales Bacteria genera Thermophiles {{Actinobacteria-stub ...
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Microbispora Bryophytorum
''Microbispora'' is a Gram-positive, mesophilic A mesophile is an organism that grows best in moderate temperature, neither too hot nor too cold, with an optimum growth range from . The optimum growth temperature for these organisms is 37°C. The term is mainly applied to microorganisms. Organi ..., thermophilic and non-motile bacterial genus from the family of Streptosporangiaceae. References Further reading * Actinomycetales Bacteria genera Thermophiles {{Actinobacteria-stub ...
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Microbispora Thailandensis
''Microbispora'' is a Gram-positive, mesophilic A mesophile is an organism that grows best in moderate temperature, neither too hot nor too cold, with an optimum growth range from . The optimum growth temperature for these organisms is 37°C. The term is mainly applied to microorganisms. Organi ..., thermophilic and non-motile bacterial genus from the family of Streptosporangiaceae. References Further reading * Actinomycetales Bacteria genera Thermophiles {{Actinobacteria-stub ...
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Microbispora Mesophila
''Microbispora'' is a Gram-positive, mesophilic A mesophile is an organism that grows best in moderate temperature, neither too hot nor too cold, with an optimum growth range from . The optimum growth temperature for these organisms is 37°C. The term is mainly applied to microorganisms. Organi ..., thermophilic and non-motile bacterial genus from the family of Streptosporangiaceae. References Further reading * Actinomycetales Bacteria genera Thermophiles {{Actinobacteria-stub ...
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Microbispora Rosea
''Microbispora'' is a Gram-positive, mesophilic A mesophile is an organism that grows best in moderate temperature, neither too hot nor too cold, with an optimum growth range from . The optimum growth temperature for these organisms is 37°C. The term is mainly applied to microorganisms. Organi ..., thermophilic and non-motile bacterial genus from the family of Streptosporangiaceae. References Further reading * Actinomycetales Bacteria genera Thermophiles {{Actinobacteria-stub ...
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Microbispora Corallina
''Microbispora corallina'' is a bacterium with type strain DF-32T (= JCM 10267T). Its name comes from its microscopic appearance resembling coral due to spores on the tips of short sporophores branched from aerial hyphae A hypha (; ) is a long, branching, filamentous structure of a fungus, oomycete, or actinobacterium. In most fungi, hyphae are the main mode of vegetative growth, and are collectively called a mycelium. Structure A hypha consists of one or .... References Further reading * *Foulston, Lucy Clementine. Cloning and Analysis of the Microbisporicin Lantibiotic Gene Cluster from Microbispora corallina. Diss. University of East Anglia, 2010. * *Lee, May D. "Antibiotics from microbispora." U.S. Patent No. 6,551,591. 22 Apr. 2003. External linksLPSN
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Streptosporangiaceae
The ''Streptosporangiaceae'' are a family of bacteria Bacteria (; singular: bacterium) are ubiquitous, mostly free-living organisms often consisting of one biological cell. They constitute a large domain of prokaryotic microorganisms. Typically a few micrometres in length, bacteria were among .... References Actinomycetota Bacteria families {{actinobacteria-stub ...
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Actinomycetales
The Actinomycetales is an order of Actinomycetota. A member of the order is often called an actinomycete. Actinomycetales are generally gram-positive and anaerobic and have mycelia in a filamentous and branching growth pattern. Some actinomycetes can form rod- or coccoid-shaped forms, while others can form spores on aerial hyphae. Actinomycetales bacteria can be infected by bacteriophages, which are called actinophages. Actinomycetales can range from harmless bacteria to pathogens with resistance to antibiotics. Reproduction Actinomycetales have 2 main forms of reproduction: spore formation and hyphae fragmentation. During reproduction, Actinomycetales can form conidiophores, sporangiospores, and oidiospores. In reproducing through hyphae fragmentation, the hyphae formed by Actinomycetales can be a fifth to half the size of fungal hyphae, and bear long spore chains. Presence and associations Actinomycetales can be found mostly in soil and decaying organic matter, as well as in ...
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Thermophilic
A thermophile is an organism—a type of extremophile—that thrives at relatively high temperatures, between . Many thermophiles are archaea, though they can be bacteria or fungi. Thermophilic eubacteria are suggested to have been among the earliest bacteria. Thermophiles are found in various geothermally heated regions of the Earth, such as hot springs like those in Yellowstone National Park (see image) and deep sea hydrothermal vents, as well as decaying plant matter, such as peat bogs and compost. Thermophiles can survive at high temperatures, whereas other bacteria or archaea would be damaged and sometimes killed if exposed to the same temperatures. The enzymes in thermophiles function at high temperatures. Some of these enzymes are used in molecular biology, for example the ''Taq'' polymerase used in PCR. "Thermophile" is derived from the el, θερμότητα (''thermotita''), meaning heat, and el, φίλια (''philia''), love. Classification Thermophiles can be c ...
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Mesophilic
A mesophile is an organism that grows best in moderate temperature, neither too hot nor too cold, with an optimum growth range from . The optimum growth temperature for these organisms is 37°C. The term is mainly applied to microorganisms. Organisms that prefer extreme environments are known as extremophiles. Mesophiles have diverse classifications, belonging to two domains: Bacteria, Archaea, and to kingdom Fungi of domain Eucarya. Mesophiles belonging to the domain Bacteria can either be gram-positive or gram-negative. Oxygen requirements for mesophiles can be aerobic or anaerobic. There are three basic shapes of mesophiles: coccus, bacillus, and spiral. Habitat The habitats of mesophiles can include cheese and yogurt. They are often included during fermentation of beer and wine making. Since normal human body temperature is 37 °C, the majority of human pathogens are mesophiles, as are most of the organisms comprising the human microbiome. Mesophiles vs. extremophiles ...
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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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