Nanosilicon-based vermicompost leachate and Trichoderma harzianum promote the growth of Panax quinquefolius L. cultivated under forests by improving soil enzyme activity
Plant Physiology and Biochemistry,
Год журнала:
2025,
Номер
unknown, С. 109811 - 109811
Опубликована: Март 1, 2025
Язык: Английский
Recruitment of beneficial microorganisms by biogas fertilizer enhances the yield and quality of Gynostemma pentaphyllum
Plant and Soil,
Год журнала:
2025,
Номер
unknown
Опубликована: Апрель 8, 2025
Язык: Английский
The Interaction Between Soil Microorganisms and Understory Ginseng During Its Growth
Horticulturae,
Год журнала:
2025,
Номер
11(5), С. 467 - 467
Опубликована: Апрель 26, 2025
Soil,
as
the
foundation
for
survival
of
understory
ginseng,
directly
impacts
its
growth
and
development.
However,
studies
focusing
on
role
soil
in
determining
quality
ginseng
are
limited.
This
study
examines
relationship
between
yield
5-,
9-,
17-year-old
their
microbiota.
The
results
indicate
that
with
increase
years,
overall
biomass
generally
shows
an
upward
trend,
while
slightly
decreases
at
9
years.
Compared
to
other
two
from
9-year-old
lower
enzyme
activity
pH
a
higher
abundance
pathogens.
17
years
has
OM
AHN
content,
along
increased
denitrifying
nitrogen-reducing
bacteria.
Correlation
networks
reveal
AK
significantly
influences
ginsenoside
AP
more
closely
related
microorganisms.
types
ginsenosides,
ginsenosides
Rh2
Rd
affected
by
greater
variety
microorganisms
chemical
factors.
As
increase,
changes
quality,
nutrients,
microbiota
do
not
follow
single
linear
trend;
instead,
there
appears
be
bottleneck
phase
certain
intermediate
stages.
Язык: Английский
DGS-YOLOv8: A Method for Ginseng Appearance Quality Detection
Agriculture,
Год журнала:
2024,
Номер
14(8), С. 1353 - 1353
Опубликована: Авг. 13, 2024
In
recent
years,
the
research
and
application
of
ginseng,
a
famous
valuable
medicinal
herb,
has
received
extensive
attention
at
home
abroad.
However,
with
gradual
increase
in
demand
for
discrepancies
are
inevitable
when
using
traditional
manual
method
grading
appearance
quality
ginseng.
Addressing
these
challenges
was
primary
focus
this
study.
This
study
obtained
batch
ginseng
samples
enhanced
dataset
by
data
augmentation,
based
on
which
we
refined
YOLOv8
network
three
key
dimensions:
firstly,
used
C2f-DCNv2
module
SimAM
mechanism
to
augment
model’s
effectiveness
recognizing
features,
followed
use
Slim-Neck
combination
(GSConv
+
VoVGSCSP)
lighten
model
These
improvements
constitute
our
proposed
DGS-YOLOv8
model,
achieved
an
impressive
mAP50
95.3%
detection.
The
improved
not
only
reduced
number
parameters
smaller
size
but
also
improves
6.86%,
2.73%,
3.82%
precision,
mAP50,
mAP50-95
over
YOLOv8n
comprehensively
outperforms
other
related
models.
With
its
potential
demonstrated
experiment,
technology
can
be
deployed
large-scale
production
lines
benefit
food
Chinese
medicine
industries.
summary,
advantages
high
detection
accuracy,
small
space
occupation,
easy
deployment,
robustness.
Язык: Английский
Ginseng extract (Ginsenoside RG3) combined with STING agonist reverses TAM/M2 polarization to inhibit TNBC evolution
Industrial Crops and Products,
Год журнала:
2024,
Номер
222, С. 119589 - 119589
Опубликована: Сен. 9, 2024
Язык: Английский
Hollow mesoporous SiO2 nanoparticle-mediated modulation of plant-soil-microbe systems: Case study in Panax ginseng cultivation
Industrial Crops and Products,
Год журнала:
2024,
Номер
224, С. 120297 - 120297
Опубликована: Дек. 14, 2024
Язык: Английский
Soil Microbial Community Shifts in Rhizosphere and Original Soils during Two and Three Years of Ginseng Cultivation
Deqiang Yang,
Zhipeng Xu,
Wenhui Yuan
и другие.
Research Square (Research Square),
Год журнала:
2024,
Номер
unknown
Опубликована: Окт. 3, 2024
Abstract
Soil
microbial
communities
play
a
key
role
in
maintaining
ecosystem
functions;
however,
little
is
known
about
the
specific
changes
Rhizosphere
soil
and
Original
of
ginseng
under
different
years
cultivation.
We
utilized
Illumina
MiSeq
sequencing
technology
to
investigate
differential
effects
cultivation
on
soil.
The
physicochemical
properties
were
analyzed
using
one-way
analysis
variance
(ANOVA).
results
showed
that
alpha-diversity
microorganisms
significant
trend
both
with
Through
NMDS
analysis,
we
further
found
differences
community
composition
between
In
order
visualize
these
differences,
top-ranked
bacterial
fungal
genera
at
cropping
depicted
help
stacking
diagrams.
bacteria
fungi
differentially
Kruskal-Wallis
test.
complex
relationship
was
deeply
explored
by
correlation
heatmap,
RDA
redundancy
Mantel
analysis.
Therefore,
this
study
not
only
sheds
light
planting
rhizosphere
soils
primary
soils,
but
also
provides
new
scientific
perspectives
for
understanding
ecosystems.
Язык: Английский
The Synergistic Effect of Plant Growth-Promoting Rhizobacteria and Spent Mushroom Substrate Improves Ginseng Quality and Rhizosphere Nutrients
Agriculture,
Год журнала:
2024,
Номер
14(11), С. 1880 - 1880
Опубликована: Окт. 24, 2024
The
ginseng
industry’s
reliance
on
chemicals
for
fertilizer
and
pesticides
has
adversely
affected
the
environment
decreased
quality
of
ginseng;
therefore,
microbial
inoculum
is
an
effective
way
to
restore
damaged
soil
in
fields.
To
investigate
effects
plant
growth-promoting
rhizobacteria
(PGPR)
spent
mushroom
substrate
(SMS)
ginseng,
high
throughput
sequencing
was
performed
examine
community
structures
rhizosphere
soil.
All
treatments
significantly
increased
nutrient,
enzyme
activity,
biomass
compared
control
(p
<
0.05).
combination
PGPR
SMS
notably
enhanced
activities:
urease
(7.29%),
sucrase
(29.76%),
acid
phosphatase
(13.24%),
amylase
(38.25%)
had
different
diversity.
Significantly,
diversity
by
increasing
abundance
beneficial
bacteria
such
as
Allorhizobium-Neorhizobium-Pararhizobium-Rhizobium
Plectosphaerella,
meanwhile
suppressing
harmful
Klebsiella.
relative
Fusarium
reduced
some
extent
with
application
alone.
organic
matter,
available
potassium,
phosphorus,
alkaline
nitrogen,
key
factors,
influenced
structures.
Overall,
positively
impacted
quality.
Язык: Английский
Appearance and Persistence of Activity in Soil Extracts Increasing Root Rot of American Ginseng (Panax quinquefolius) by Ilyonectria Mors-Panacis
Soil Systems,
Год журнала:
2024,
Номер
8(4), С. 133 - 133
Опубликована: Дек. 18, 2024
A
previous
report
showed
that
methanol
extracts
from
soil
collected
one
year
after
harvesting
American
ginseng
(Panax
quinquefolius)
contained
activity
increased
root
rot
caused
by
Ilyonectria
mors-panacis.
This
effect
was
associated
with
suppression
of
the
defense
responses
P.
quinquefolius.
The
undetectable
in
not
previously
planted
ginseng,
and
it
hypothesized
may
be
a
factor
development
replant
disease
(GRD).
GRD
can
persist
for
30
or
more
years
is
I.
survey
increases
made
at
different
times
before
commercial
harvesting.
No
mors-panacis
detected
first
crop
over
three
planting
until
prior
to
After
crop,
no
during
fall
early
spring,
but
mors-panacis’s
ability
increase
late
when
debris
had
almost
completely
decayed
warmed.
Activity
increasing
also
1
These
results
indicate
detectable
has
been
harvested
then
many
years,
which
consistent
long
persistence
GRD.
Язык: Английский