Research Square (Research Square),
Journal Year:
2024,
Volume and Issue:
unknown
Published: April 24, 2024
AbstractCellulomonas
fimi
Clb-11
can
reduce
high
toxic
Cr
(VI)
to
low
(III).
In
this
study,
transcriptomics
was
used
analyze
the
key
genes,
which
involved
in
uptake
and
reduction
C.
fimi
Clb-11.
The
results
showed
that
when
C.
fimi
Clb-11
subjected
0.5
mM
stress,
654
genes
were
upregulated.
Among
them,
phosphate
transport
protein
encoding
gene
phoU,
inorganic
TC.PIT,
molybdate
modA,
modB,
modC
passive
of
by
Clb-11.
Cytochrome
c
subunits
qcrAqcrC,
as
well
cytochrome
oxidase
coxBcoxC
intracellular
Additionally,
several
unreported
found
be
upregulated
under
stress.
Manganese
mntH
nickel
system
permease
ABC.PE.PABC.PE.P1
may
participate
Osmoprotectant
ATP-binding
opuA,
osmoprotectant
substrate-binding
opuC,
opuBD
crucial
for
maintaining
water
content
cells
enhancing
resistance
(VI).
Proton
pump
subunit
atpA,
atpB,
atpE,
atpF,
atpH,
sodium-hydrogen
antiporter
mnhAmnhC,
extracellular
proton
secretion
extracellular.
Iron
complex
ABC.FEV.S,
vacuolar
iron
transporter
VIT,
FMN
reductase
ssuE,
quinone
oxidoreductase
QOR
qorqorB
pyruvate
dehydrogenase
pdhA,
pdhB,
pdhC,
succinate
sdhA,
sdhB,
sdhD,
play
important
roles
supplying
electrons
Our
study
provides
theoretical
references
optimizing
microbial
chromium
pollution
remediation
techniques.
Frontiers in Bioengineering and Biotechnology,
Journal Year:
2024,
Volume and Issue:
12
Published: Aug. 5, 2024
The
development
of
sustainable
processes
is
the
most
important
basis
to
realize
shift
from
fossil-fuel
based
industry
bio-based
production.
Non-model
microbes
represent
a
great
resource
due
their
advantageous
traits
and
unique