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About:
Inverse metabolic engineering of Bacillus subtilis for xylose utilization based on adaptive evolution and whole-genome sequencing
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scientific article published on 22 October 2014
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rdf:type
Item
description
wetenschappelijk artikel
(nl)
наукова стаття, опублікована в жовтні 2014
(uk)
im Oktober 2014 veröffentlichter wissenschaftlicher Artikel
(de)
scientific article published on 22 October 2014
(en)
artículu científicu espublizáu n'ochobre de 2014
(ast)
publication date
wds:Q66621734-2267D12D-D93C-4DDA-9117-6A14300B11A3
publication date
2014-10-22 00:00:00Z
(
xsd:dateTime
)
language of work or name
wds:Q66621734-2C9011E2-5A39-4DBA-AF24-5DD400C8C194
language of work or name
English
exact match
wds:Q66621734-F4FAF8D2-76C1-4AAD-B4EC-BE46468CBBA4
exact match
https://scigraph.springernature.com/pub.10.1007/s00253-014-6131-7
author name string
wds:Q66621734-25F765B5-54BD-4B5D-81B3-8ADFD08FFAC2
wds:Q66621734-312BEC69-778B-40DE-B92E-23B61BA161C6
wds:Q66621734-6ADA4859-D70B-42F0-BC15-402F0CF69014
wds:Q66621734-BACD7060-A2A9-4614-8EC5-6C4D5508F29D
wds:Q66621734-CBC48457-0AB8-4EC2-8E32-C3F421EE5BCC
author name string
Bo Zhang
Ning Li
Ya-Jie Tang
Xueming Zhao
Zhiwen Wang
rdfs:label
Inverse metabolic engineering of Bacillus subtilis for xylose utilization based on adaptive evolution and whole-genome sequencing
(en)
Inverse metabolic engineering of Bacillus subtilis for xylose utilization based on adaptive evolution and whole-genome sequencing
(nl)
skos:prefLabel
Inverse metabolic engineering of Bacillus subtilis for xylose utilization based on adaptive evolution and whole-genome sequencing
(en)
Inverse metabolic engineering of Bacillus subtilis for xylose utilization based on adaptive evolution and whole-genome sequencing
(nl)
name
Inverse metabolic engineering of Bacillus subtilis for xylose utilization based on adaptive evolution and whole-genome sequencing
(en)
Inverse metabolic engineering of Bacillus subtilis for xylose utilization based on adaptive evolution and whole-genome sequencing
(nl)
author
wds:Q66621734-9E0BE250-2CAD-4CF6-A73A-285C2B72B77F
author
Tao Chen
title
wds:Q66621734-3569DA38-551D-435A-96DB-1172CDD13E6D
title
Inverse metabolic engineering of Bacillus subtilis for xylose utilization based on adaptive evolution and whole-genome sequencing
(en)
page(s)
wds:Q66621734-DED3BFF7-3E2E-4BE0-9B41-B2D8836FB168
page(s)
885-896
instance of
wds:Q66621734-E20CA23C-DF7B-45A7-8120-FCFAB18689A4
instance of
scholarly article
main subject
wds:Q66621734-16A78521-537D-45A2-A2A3-BEC44D8D0749
wds:Q66621734-27CE18D7-DA7B-484D-B318-6A6A7FA43076
wds:Q66621734-2CC652CF-57F9-4F0C-BA5D-9582B1D16E62
main subject
whole genome sequencing
Bacillus subtilis
adaptive evolution
PubMed ID
wds:Q66621734-FE64F42A-4D45-43F3-B7AE-DF3A114F1410
PubMed ID
http://rdf.ncbi.nlm.nih.gov/pubchem/reference/25620468
PubMed ID
25620468
published in
wds:Q66621734-86AA9E2E-C88D-4667-8035-601C8E30F0C0
published in
Applied Microbiology and Biotechnology
issue
wds:Q66621734-BA1C7CF2-9DDF-4EAD-A5CE-4C7112C63A07
volume
wds:Q66621734-632A6564-6FAC-44BC-BA2B-98210442C5AF
issue
2
volume
99
DOI
wds:Q66621734-1C48CEBD-877F-41AE-BA69-E6932168BD82
DOI
http://dx.doi.org/10.1007/S00253-014-6131-7
DOI
10.1007/S00253-014-6131-7
Dimensions Publication ID
wds:Q66621734-E9D7F425-7E71-4985-AEC9-EDB55F41DD33
Dimensions Publication ID
1019869082
is
about
of
https://www.wikidata.org/wiki/Special:EntityData/Q66621734
is
cites work
of
Enhanced 2-keto-L-gulonic acid production by applying L-sorbose-tolerant helper strain in the co-culture system.
High-level intra- and extra-cellular production of D-psicose 3-epimerase via a modified xylose-inducible expression system in Bacillus subtilis.
Metabolic engineering of Bacillus subtilis for production of para-aminobenzoic acid - unexpected importance of carbon source is an advantage for space application.
Production of Acetoin through Simultaneous Utilization of Glucose, Xylose, and Arabinose by Engineered Bacillus subtilis
Identification of functional butanol-tolerant genes from mutants derived from error-prone PCR-based whole-genome shuffling
Integrated whole-genome and transcriptome sequence analysis reveals the genetic characteristics of a riboflavin-overproducing Bacillus subtilis
is
cites work
of
wds:Q51150431-8F7EC73A-7F77-4E63-A409-0EA088C6F198
wds:Q51191078-5CD8FE72-A8F4-4C91-BB9D-A8DC1770949F
wds:Q64901478-77169D0B-E0C2-457A-9EC0-9E26416224CD
wds:Q36088412-F4529414-0844-45F8-BA87-BD0B778B969C
wds:Q64089120-B1D0295A-F060-48A1-98CA-5A4D775C2EEE
wds:Q88976998-E2A469C2-1865-449E-8B4B-28004CCDD37D
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