Ureibacillus
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Ureibacillus
''Ureibacillus'' is a genus of gram-positive bacteria within the largely gram-positive Bacillota. ''Ureibacilli'' are motile and form spherical endospores. The type species of the genus is '' Ureibacillus thermosphaericus''. History The genus ''Ureibacillus'' was split from the genus ''Bacillus'' in 2001 to encompass ''Bacillus thermosphaericus'' (now ''Ureibacillus thermosphaericus'') as well as several newly discovered similar strains of bacteria. In 2020, multiple ''Lysinibacillus'' species were transferred into ''Ureibacillus'' based on branching patterns in various phylogenetic trees constructed based on conserved genome sequences, indicating their phylogenetic relatedness. The family ''Caryophanaceae'' encompassed many branching anomalies such as this one, partially due to the reliance on 16S rRNA sequences as a method for classification, which is known to have low resolution power and give differing results depending on the algorithm used. Analysis of genome sequences ...
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Bacteria
Bacteria (; : bacterium) are ubiquitous, mostly free-living organisms often consisting of one Cell (biology), biological cell. They constitute a large domain (biology), domain of Prokaryote, prokaryotic microorganisms. Typically a few micrometres in length, bacteria were among the first life forms to appear on Earth, and are present in most of its habitats. Bacteria inhabit the air, soil, water, Hot spring, acidic hot springs, radioactive waste, and the deep biosphere of Earth's crust. Bacteria play a vital role in many stages of the nutrient cycle by recycling nutrients and the nitrogen fixation, fixation of nitrogen from the Earth's atmosphere, atmosphere. The nutrient cycle includes the decomposition of cadaver, dead bodies; bacteria are responsible for the putrefaction stage in this process. In the biological communities surrounding hydrothermal vents and cold seeps, extremophile bacteria provide the nutrients needed to sustain life by converting dissolved compounds, suc ...
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The All-Species Living Tree Project
The All-Species Living Tree' Project is a collaboration between various academic groups/institutes, such as ARB, SILVA rRNA database project, and LPSN, with the aim of assembling a database of 16S rRNA sequences of all validly published species of ''Bacteria'' and ''Archaea''. At one stage, 23S sequences were also collected, but this has since stopped. Currently there are over 10,950 species in the aligned dataset and several more are being added either as new species are discovered or species that are not represented in the database are sequenced. Initially the latter group consisted of 7% of species. Similar (and more recent) projects include the Genomic Encyclopedia of Bacteria and Archaea (GEBA), which focused on whole genome sequencing of bacteria and archaea. Tree The tree was created by maximum likelihood analysis without bootstrap: consequently accuracy is traded off for size and many phylum level clades are not correctly resolved (such as the Firmicutes). (Eukaryote ...
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Lysinibacillus Timonensis
''Lysinibacillus timonensis'' is a bacterium from the genus of ''Lysinibacillus'' which has been isolated from human skin The human skin is the outer covering of the body and is the largest organ of the integumentary system. The skin has up to seven layers of ectodermal tissue (biology), tissue guarding Skeletal muscle, muscles, bones, ligaments and organ (anato .... References Bacillaceae Bacteria described in 2019 {{Bacilli-stub ...
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Lysinibacillus Yapensis
''Lysinibacillus yapensis'' is a Gram-positive, aerobic, spore-forming and motile bacterium from the genus of ''Lysinibacillus ''Lysinibacillus'' is a genus of bacteria from the family of Bacillaceae. Members of this genus, in contrast to the type species of the genus ''Bacillus'', contains peptidoglycan with lysine, aspartic acid, alanine and glutamic acid. Phylogeny ...'' which has been isolated from deep-sea sediments from the Yap Trench. References Bacillaceae Bacteria described in 2020 {{Bacilli-stub ...
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Lysinibacillus Telephonicus
''Lysinibacillus'' is a genus of bacteria from the family of Bacillaceae. Members of this genus, in contrast to the type species of the genus ''Bacillus'', contains peptidoglycan with lysine, aspartic acid, alanine and glutamic acid. Phylogeny The currently accepted taxonomy is based on the List of Prokaryotic names with Standing in Nomenclature (LPSN) and National Center for Biotechnology Information (NCBI) ''Lysinibacillus'' species assigned to other genera: * '' L. alkaliphilus'' Zhao et al. 2015 * '' L. alkalisoli'' Sun, Xu & Wu 2017 * '' L. antri'' Narsing Rao et al. 2020 * '' L. composti'' Hayat et al. 2014 * '' L. endophyticus'' Yu et al. 2017 * '' L. halotolerans'' Kong et al. 2014 * '' L. louembei'' Ouoba et al. 2015 * '' L. meyeri'' Seiler, Scherer & Wenning 2013 * ''L. odysseyi'' (La Duc, Satomi & Venkateswaran 2004) Jung et al. 2012 * '' L. telephonicus'' Rahi et al. 2017 * "'' L. timonensis''" Ndiaye et al. 2019 * '' L. yapensis'' Yu et al. 2020 See also * List o ...
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Lysinibacillus Endophyticus
''Lysinibacillus endophyticus'' is a Gram-positive, aerobic and rod-shaped bacterium from the genus of ''Lysinibacillus'' which has been isolated from the root of a maize plant. ''Lysinibacillus endophyticus'' produces indole-3-acetic acid Indole-3-acetic acid (IAA, 3-IAA) is the most common naturally occurring plant hormone of the auxin class. It is the best known of the auxins, and has been the subject of extensive studies by plant physiologists. IAA is a derivative of indole, con .... References Bacillaceae Bacteria described in 2017 {{Bacilli-stub ...
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Lysinibacillus Antri
''Lysinibacillus antri'' is a Gram-positive, rod-shaped, endospore-forming and motile bacterium from the genus of ''Lysinibacillus ''Lysinibacillus'' is a genus of bacteria from the family of Bacillaceae. Members of this genus, in contrast to the type species of the genus ''Bacillus'', contains peptidoglycan with lysine, aspartic acid, alanine and glutamic acid. Phylogeny ...'' which has been isolated from soil from a karst cave in Xingyi county. References Bacillaceae Bacteria described in 2020 {{Bacilli-stub ...
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Lysinibacillus Halotolerans
''Lysinibacillus halotolerans'' is a Gram-positive, aerobic, halotolerant, endospore-forming and rod-shaped bacterium from the genus of ''Lysinibacillus ''Lysinibacillus'' is a genus of bacteria from the family of Bacillaceae. Members of this genus, in contrast to the type species of the genus ''Bacillus'', contains peptidoglycan with lysine, aspartic acid, alanine and glutamic acid. Phylogeny ...'' which has been isolated from saline-alkaline soil from Lingxian County. References Bacillaceae Bacteria described in 2014 {{Bacilli-stub ...
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Lysinibacillus Composti
''Lysinibacillus composti'' is a Gram-positive, rod-shaped, endospore-forming and motile bacterium from the genus of ''Lysinibacillus'' which has been isolated from compost Compost is a mixture of ingredients used as plant fertilizer and to improve soil's physical, chemical, and biological properties. It is commonly prepared by Decomposition, decomposing plant and food waste, recycling organic materials, and man .... References Bacillaceae Bacteria described in 2014 {{Bacilli-stub ...
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Lysinibacillus Alkaliphilus
''Lysinibacillus alkaliphilus'' is a Gram-positive, aerobic, extremely alkaliphilic and endospore-forming bacterium from the genus of ''Lysinibacillus ''Lysinibacillus'' is a genus of bacteria from the family of Bacillaceae. Members of this genus, in contrast to the type species of the genus ''Bacillus'', contains peptidoglycan with lysine, aspartic acid, alanine and glutamic acid. Phylogeny ...''. References Bacillaceae Bacteria described in 2015 {{Bacilli-stub ...
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Ureibacillus Suwonensis
''Ureibacillus'' is a genus of gram-positive bacteria within the largely gram-positive Bacillota. ''Ureibacilli'' are motile and form spherical endospores. The type species of the genus is '' Ureibacillus thermosphaericus''. History The genus ''Ureibacillus'' was split from the genus ''Bacillus'' in 2001 to encompass ''Bacillus thermosphaericus'' (now ''Ureibacillus thermosphaericus'') as well as several newly discovered similar strains of bacteria. In 2020, multiple ''Lysinibacillus'' species were transferred into ''Ureibacillus'' based on branching patterns in various phylogenetic trees constructed based on conserved genome sequences, indicating their phylogenetic relatedness. The family ''Caryophanaceae'' encompassed many branching anomalies such as this one, partially due to the reliance on 16S rRNA sequences as a method for classification, which is known to have low resolution power and give differing results depending on the algorithm used. Analysis of genome sequences ...
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