نتایج جستجو برای: methylobacterium extorquens

تعداد نتایج: 719  

Journal: :FEMS microbiology letters 2000
M M Figueira L Laramée J C Murrell D Groleau C B Miguez

The production of green fluorescent protein (GFP) in Methylobacterium extorquens was studied by creating four different constructs using pJB3KmD, pRK310 and pVK101 vectors, as well as pLac and soluble methane monooxygenase (sMMO) promoters. Plasmids were introduced into the cells by electroporation. Expression of GFP by selected clones was evaluated by growing cells in complex or defined media....

Journal: :The Journal of biological chemistry 2012
Kathrin Schneider Rémi Peyraud Patrick Kiefer Philipp Christen Nathanaël Delmotte Stéphane Massou Jean-Charles Portais Julia A Vorholt

Acetyl-CoA assimilation was extensively studied in organisms harboring the glyoxylate cycle. In this study, we analyzed the metabolism of the facultative methylotroph Methylobacterium extorquens AM1, which lacks isocitrate lyase, the key enzyme in the glyoxylate cycle, during growth on acetate. MS/MS-based proteomic analysis revealed that the protein repertoire of M. extorquens AM1 grown on ace...

Journal: :Microbiology 2001
C J Marx M E Lidstrom

Full exploitation of the information available in bacterial genome sequences requires the availability of facile tools for rapid genetic manipulation. One bacterium for which new genetic tools are needed is the methylotroph Methylobacterium extorquens AM1. IncQ and small IncP vectors were shown to be unsuitable for use in this bacterium, but a spontaneous mutant of a small IncP plasmid was isol...

2016
Tomoyuki Minami Misue Anda Hisayuki Mitsui Masayuki Sugawara Takakazu Kaneko Shusei Sato Seishi Ikeda Takashi Okubo Hirohito Tsurumaru Kiwamu Minamisawa

Methylobacterium inhabits the phyllosphere of a large number of plants. We herein report the results of comparative metagenome analyses on methylobacterial communities of soybean plants grown in an experimental field in Tohoku University (Kashimadai, Miyagi, Japan). Methylobacterium was identified as the most dominant genus (33%) among bacteria inhabiting soybean stems. We classified plant-deri...

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