View Item 
      •   IPB Repository
      • IPBana
      • Published by Others
      • Faculty of Mathematics and Natural Sciences
      • View Item
      •   IPB Repository
      • IPBana
      • Published by Others
      • Faculty of Mathematics and Natural Sciences
      • View Item
      JavaScript is disabled for your browser. Some features of this site may not work without it.

      Complete Genome Sequence of the Facultative Anaerobic Magnetotactic Bacterium Magnetospirillum sp. strain AMB-1

      Thumbnail
      View/Open
      _ATW DNA Res 2005 (Compl Genome Seq).pdf (237.6Kb)
      Date
      2005
      Author
      Matsunaga, Tadashi
      Okamura, Yoshiko
      Fukuda, Yorikane
      Wahyudi, Aris Tri
      Murase, Yaeko
      Takeyama, Haruko
      Metadata
      Show full item record
      Abstract
      Magnetospirillum sp. strain AMB-1 is a Gram-negative a-proteobacterium that synthesizes nano-sized magnetites, referred to as magnetosomes, aligned intracellularly in a chain. The potential of this nano-sized material is growing and will be applicable to broad research areas. It has been expected that genome analysis would elucidate the mechanism of magnetosome formation by magnetic bacteria. Here we describe the genome of Magnetospirillum sp.AMB-1 wild type, which consists of a single circular chromosome of 4 967 148 bp. For identification of genes required for magnetosome formation, transposon mutagenesis and determination of magnetosome membrane proteins were performed. Analysis of a non-magnetic transposon mutant library focused on three unknown genes from 2752 unknown genes and three genes from 205 signal transduction genes. Partial proteome analysis of the magnetosome membrane revealed that the membrane contains numerous oxidation/reduction proteins and a signal response regulator that may function in magnetotaxis. Thus, oxidation/reduction proteins and elaborate multidomain signaling proteins were analyzed. This comprehensive genome analysis will enable resolution of the mechanisms of magnetosome formation and provide a template to determine how magnetic bacteria maintain a species-specific, nanosized, magnetic single domain and paramagnetic morphology.
      URI
      http://repository.ipb.ac.id/handle/123456789/54529
      Collections
      • Faculty of Mathematics and Natural Sciences [471]

      Copyright © 2020 Library of IPB University
      All rights reserved
      Contact Us | Send Feedback
      Indonesia DSpace Group 
      IPB University Scientific Repository
      UIN Syarif Hidayatullah Institutional Repository
      Universitas Jember Digital Repository
        

       

      Browse

      All of IPB RepositoryCollectionsBy Issue DateAuthorsTitlesSubjectsThis CollectionBy Issue DateAuthorsTitlesSubjects

      My Account

      Login

      Application

      google store

      Copyright © 2020 Library of IPB University
      All rights reserved
      Contact Us | Send Feedback
      Indonesia DSpace Group 
      IPB University Scientific Repository
      UIN Syarif Hidayatullah Institutional Repository
      Universitas Jember Digital Repository