Transformation of Acetobacter xylinum with plasmid DNA by electroporation

scientific article published on November 1, 1992

Transformation of Acetobacter xylinum with plasmid DNA by electroporation is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1016/0147-619X(92)90051-B
P698PubMed publication ID1461938

P2093author name stringD. M. Johnston
S. M. Anderson
P. E. Hall
R. E. Cannon
P4510describes a project that useselectroporationQ1142521
P433issue3
P407language of work or nameEnglishQ1860
P921main subjecttransformationQ461499
Acetobacter xylinumQ16055999
electroporationQ1142521
P304page(s)194-200
P577publication date1992-11-01
P1433published inPlasmidQ15754448
P1476titleTransformation of Acetobacter xylinum with plasmid DNA by electroporation
P478volume28

Reverse relations

cites work (P2860)
Q81366896Cloning and characterization of ethanol-regulated esterase genes in Acetobacter pasteurianus
Q39916274Electroporation of Alcaligenes eutrophus with (mega) plasmids and genomic DNA fragments.
Q41361504Environmentally triggered genomic plasticity and capsular polysaccharide formation are involved in increased ethanol and acetic acid tolerance in Kozakia baliensis NBRC 16680.
Q40707599Genetic organization of Acetobacter for acetic acid fermentation
Q30387767Genome sequence and plasmid transformation of the model high-yield bacterial cellulose producer Gluconacetobacter hansenii ATCC 53582
Q42930067Identification and characterization of non-cellulose-producing mutants of Gluconacetobacter hansenii generated by Tn5 transposon mutagenesis
Q46183893Importance of codB for new codA-based markerless gene deletion in Gluconobacter strains
Q35581567Isolation and characterization of two cellulose morphology mutants of Gluconacetobacter hansenii ATCC23769 producing cellulose with lower crystallinity
Q91627590Structural changes of bacterial nanocellulose pellicles induced by genetic modification of Komagataeibacter hansenii ATCC 23769
Q35286201The consequence of an additional NADH dehydrogenase paralog on the growth of Gluconobacter oxydans DSM3504.

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