Microbiology Research,
Год журнала:
2023,
Номер
14(1), С. 243 - 261
Опубликована: Фев. 14, 2023
With
the
rapid
development
of
industry,
Cr
has
become
one
major
heavy
metal
pollutants
in
soil,
severely
impacting
soil
microecology,
among
which
rhizosphere
microorganisms
can
improve
microenvironment
to
promote
plant
growth.
However,
how
bacterial
communities
respond
stress
under
different
cultivation
modes
remains
be
further
studied.
Therefore,
this
study,
a
greenhouse
pot
experiment
combined
with
16S
rRNA
high-throughput
sequencing
technology
was
used
study
effects
at
200
mg
kg−1
on
community
structure
and
diversity
Iris
tectorum
modes.
The
results
showed
that
index
(Shannon
Simpson)
abundance
(Ace
Chao)
increased
significantly
wetland
stress.
Moreover,
changed
by
20.1%
due
addition
Cr,
leading
15.9%
decrease
common
species
community,
Proteobacteria,
Actinobacteria,
Chloroflexi,
Acidobacteriota
accounted
for
more
than
74.8%
total
sequence.
increase
diversity,
rhizosphere-dominant
bacteria
growth-promoting
significantly.
Meanwhile,
symbiotic
network
analysis
found
two
modes,
synergistic
effect
between
dominant
enhanced,
improved.
In
addition,
through
redundancy
analysis,
it
C,
N,
P
nutrients
uncontaminated
were
main
driving
factors
succession
I.
tectorum,
content
contaminated
factor
rhizosphere.
summary,
will
provide
basis
response
interaction
plants
restoration
Diversity,
Год журнала:
2023,
Номер
15(2), С. 175 - 175
Опубликована: Янв. 26, 2023
Heavy
metals
and
flooding
are
among
the
primary
environmental
factors
affecting
plants
microorganisms.
This
review
separately
considers
impact
of
heavy
metal
contamination
soils
on
microorganisms
plants,
plant
microbial
biodiversity,
plant–microorganism
interactions.
The
use
beneficial
is
considered
one
most
promising
methods
increasing
stress
tolerance
since
plant-associated
microbes
reduce
accumulation,
so
focuses
interactions
their
practical
application
in
phytoremediation.
as
an
adverse
factor
outlined.
It
has
been
shown
that
bacteria
under
conditions
primarily
suffer
from
a
lack
oxygen
activation
anaerobic
microflora.
combined
effects
also
discussed.
In
conclusion,
we
summarize
plants.