Literature DB >> 1812468

Aspects of the growth and metabolism of Fusobacterium nucleatum ATCC 10953 in continuous culture.

A H Rogers1, P S Zilm, N J Gully, A L Pfennig, P D Marsh.   

Abstract

Fusobacterium nucleatum ATCC 10953, a type strain of one of the newly proposed subspecies of this group of organisms, was grown anaerobically in continuous culture in a chemically defined medium. Its response to conditions of varying pH, nutritional environment, and imposed growth rate were then examined. The organism failed to grow at pH 7.8 but grew at pH 5.8, although the cell yield was greatly reduced. At pH 6.8 the cell yield was halved and less than 50% of available glucose was consumed. The optimum growth pH was around 7.4 when the culture appeared to be limited for both glucose and the amino acids glutamate, histidine and serine. Some intracellular polyglucose (IP) was produced and acetate, butyrate and ammonia were the major fermentation end-products, as they were under all growth conditions tested. Increasing the available glucose or amino acids did not alter cell numbers but the amount of IP was greatly increased. When glucose was omitted from the medium, the cell yield was halved and the culture then became limited for lysine as well as for glutamate, histidine and serine. Growth rate had little overall effect on the organism's physiology and the maximum growth rate at pH 7.4 was 0.20 h-1, a doubling time of 3.5 h. Glucose was thus channelled into stable IP synthesis only when the growth limitation imposed by lack of fermentable amino acids was relieved. The metabolism of IP and the ability to obtain carbon and energy from a variety of substrates may explain why F. nucleatum is one of the most commonly detected organisms in subgingival dental plaque.

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Year:  1991        PMID: 1812468     DOI: 10.1111/j.1399-302x.1991.tb00486.x

Source DB:  PubMed          Journal:  Oral Microbiol Immunol        ISSN: 0902-0055


  11 in total

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2.  Identification of Fusobacterium nucleatum in primary and secondary endodontic infections and its association with clinical features by using two different methods.

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Review 3.  Taxonomy, biology, and periodontal aspects of Fusobacterium nucleatum.

Authors:  A I Bolstad; H B Jensen; V Bakken
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4.  Staphylococcus aureus Overcomes Anaerobe-Derived Short-Chain Fatty Acid Stress via FadX and the CodY Regulon.

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5.  Sugar metabolism by fusobacteria: regulation of transport, phosphorylation, and polymer formation by Fusobacterium mortiferum ATCC 25557.

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6.  Genome sequence of Fusobacterium nucleatum subspecies polymorphum - a genetically tractable fusobacterium.

Authors:  Sandor E Karpathy; Xiang Qin; Jason Gioia; Huaiyang Jiang; Yamei Liu; Joseph F Petrosino; Shailaja Yerrapragada; George E Fox; Susan Kinder Haake; George M Weinstock; Sarah K Highlander
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7.  Identification and characterization of fusolisin, the Fusobacterium nucleatum autotransporter serine protease.

Authors:  Lior Doron; Shunit Coppenhagen-Glazer; Yara Ibrahim; Amir Eini; Ronit Naor; Graciela Rosen; Gilad Bachrach
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8.  Abnormal pregnancy outcomes in mice using an induced periodontitis model and the haematogenous migration of Fusobacterium nucleatum sub-species to the murine placenta.

Authors:  Sara Stockham; Justine E Stamford; Claire T Roberts; Tracy R Fitzsimmons; Ceilidh Marchant; P Mark Bartold; Peter S Zilm
Journal:  PLoS One       Date:  2015-03-25       Impact factor: 3.240

9.  Cultivation of a Synergistetes strain representing a previously uncultivated lineage.

Authors:  S R Vartoukian; R M Palmer; W G Wade
Journal:  Environ Microbiol       Date:  2010-01-13       Impact factor: 5.491

10.  A proteomic investigation of Fusobacterium nucleatum alkaline-induced biofilms.

Authors:  Jactty Chew; Peter S Zilm; Janet M Fuss; Neville J Gully
Journal:  BMC Microbiol       Date:  2012-09-03       Impact factor: 3.605

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