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Titlebook: Molecules in Time and Space; Bacterial Shape, Div Miguel Vicente,Javier Tamames,Jesús Mingorance Book 2004 Springer Science+Business Media

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書(shū)目名稱(chēng)Molecules in Time and Space
副標(biāo)題Bacterial Shape, Div
編輯Miguel Vicente,Javier Tamames,Jesús Mingorance
視頻videohttp://file.papertrans.cn/639/638648/638648.mp4
圖書(shū)封面Titlebook: Molecules in Time and Space; Bacterial Shape, Div Miguel Vicente,Javier Tamames,Jesús Mingorance Book 2004 Springer Science+Business Media
描述.During the last decade a wealth of new data has arisen from the use of new fluorescent labelling techniques and the sequencing of whole microbial genomes. One important conclusion from these data is that bacterial cells are much more structured than previously thought. The wall and the outer membrane contain topological domains, some proteins localize or move in specific patterns inside the cells, and some genes appear clustered in the chromosome and form conserved evolutionary units. Many of these structures are related to the cell cycle and to the process of cell morphogenesis, two processes that are themselves related to each other. From these observations the dcw gene cluster appears as a phylogenetic trait that is mainly conserved in bacilli. .Molecules in Time and Space. reviews the data on the formation of subcellular patterns or structures in bacteria, presents observations and hypotheses on the establishment and the maintenance of cell shape, and on the organization of genetic information in the chromosome..
出版日期Book 2004
關(guān)鍵詞Chromosom; Escherichia coli; bacteria; bacterial cell; conservation; genes; prokaryotes; proteins
版次1
doihttps://doi.org/10.1007/b113362
isbn_softcover978-1-4757-7937-0
isbn_ebook978-0-306-48579-4
copyrightSpringer Science+Business Media New York 2004
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978-1-4757-7937-0Springer Science+Business Media New York 2004
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https://doi.org/10.1007/b113362Chromosom; Escherichia coli; bacteria; bacterial cell; conservation; genes; prokaryotes; proteins
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Book 2004omes. One important conclusion from these data is that bacterial cells are much more structured than previously thought. The wall and the outer membrane contain topological domains, some proteins localize or move in specific patterns inside the cells, and some genes appear clustered in the chromosom
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robial genomes. One important conclusion from these data is that bacterial cells are much more structured than previously thought. The wall and the outer membrane contain topological domains, some proteins localize or move in specific patterns inside the cells, and some genes appear clustered in the
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