Copper
is
an
essential
trace
element
in
the
human
body,
and
its
level
directly
related
to
many
diseases.
While
source
of
copper
body
mainly
intake
from
food,
then
detection
ions
(Cu2+)
food
becomes
crucial.
Here,
we
synthesized
a
novel
probe
(E)-3-hydroxy-2-styryl-4H-benzo[h]chromen-4-one
(NSHF)
explored
binding
ability
NSHF
for
Cu2+
using
nuclear
magnetic
resonance
hydrogen
spectroscopy
(1H
NMR),
high
resolution
mass
spectrometry
(HRMS),
Job's
plot
method
density
functional
theory
(DFT).
shows
advantages
fast
response
time,
good
selectivity
sensitivity
Cu2+.
The
fluorescence
intensity
ratio
(F/F0)
linear
relationship
with
concentration
limit
61
nM.
was
successfully
applied
real
samples.
In
addition,
simple
convenient
platform
constructed
by
combining
smartphone
UV
lamp,
which
can
realize
rapid
This
work
provides
effective
tool
real-time
BMC Plant Biology,
Journal Year:
2024,
Volume and Issue:
24(1)
Published: March 27, 2024
Abstract
Most
vegetable
crops
are
severely
affected
by
the
uptake
of
heavy
metals
from
soil.
Heavy
in
bodies
generate
reactive
oxygen
species
(ROS)
that
unbalance
antioxidant
defense
system.
This
study
was
initiated
to
determine
physiological
and
biochemical
characteristics
spinach
plants
grown
on
soil
contaminated
with
responding
Bacillus
cereus
aerius
were
isolated
metals.
metal
contamination
led
a
significant
reduction
seed
germination,
seedling
biomass,
protein,
total
nitrogen
content
soils
compared
control
soils.
In
contrast,
increase
metallothioneins
enzymes
observed.
Plants
inoculated
B.
significantly
reduced
oxidative
stress
induced
improving
germination
(%),
growth,
nitrogen,
protein
content.
The
activities
seeds
bacterial
strains.
addition,
with,
showed
greater
stomata
opening
than
metals,
whose
almost
closed.
These
results
suggested
both
strains
enhanced
plant
growth
reducing
caused
BMC Plant Biology,
Journal Year:
2024,
Volume and Issue:
24(1)
Published: Feb. 13, 2024
Abstract
Soil
pollution
with
heavy
metals
has
grown
to
be
a
big
hassle,
leading
the
loss
in
farming
production
particularly
developing
countries
like
Pakistan,
where
no
proper
channel
is
present
for
irrigation
and
extraction
of
these
toxic
metals.
The
study
aims
ameliorate
damages
caused
by
metal
ions
(Hg-Mercury)
on
rapeseed
(
Brassica
napus
L.)
via
growth
regulator
(α-tocopherol
150
mg/L)
thermopriming
technique
at
4
°C
50
maintain
plant
agronomical
physiological
characteristics.
In
pot
experiments,
we
designed
total
11
treatments
viz.(
T0
(control),
T1
(Hg4ppm),
T2
(Hg8ppm),
T3
(Hg4ppm
+
°C),
T4
tocopherol
(150
m/L)),
T5
T6
mg/L)),
T7
(Hg8ppm
T8
T9
T10
results
revealed
that
chlorophyll
content
p
<
0.05
antioxidant
enzymes
such
as
catalase,
peroxidase,
malondialdehyde
enhanced
up
maximum
level
=
Hg4ppm
(50
under
ppm
mercuric
chloride
stress),
suggesting
high
temperature
initiate
system
reduce
photosystem
damage.
However,
protein,
proline,
superoxide
dismutase
0.05,
carotenoid,
soluble
sugar,
ascorbate
peroxidase
were
increased
non-significantly
>
0.05)
8
stress
(T9
Hg8ppm
°C)
representing
tolerance
selected
specie
synthesizing
osmolytes
resist
oxidation
mechanism.
Furthermore,
reduction
%
MC
(moisture
content)
easily
improved
foliar
application
α-tocopherol
mg/L),
remarkable
increase
vigor
germination
energy.
It
resulted
inhibitory
effect
only
lower
concentration
(4
ppm)
was
ameliorated
exogenous
levels
proline
activities
maintaining
seedling
development
contaminated
soil.
Sustainability,
Journal Year:
2025,
Volume and Issue:
17(8), P. 3491 - 3491
Published: April 14, 2025
Heavy
metal
(HMs)
toxicity
has
severely
impacted
wheat
production
and
is
considered
an
emerging
threat
to
human
health
due
bioaccumulation.
The
application
of
organic
inorganic
amendments
proven
effective
in
mitigating
HM’s
phytotoxicity
by
limiting
their
mobility
soil
plants.
A
pot
experiment
was
conducted
evaluate
the
efficiency
biochar
(BC),
bentonite
(BN),
rock
phosphate
(RP),
both
individually
combination,
alleviating
lead
(Pb)
enhancing
growth,
physiological
attributes.
present
investigation
revealed
that
BC,
BN,
RP,
combined
mineral
(MBAs)
at
1.5%
level
significantly
enhanced
growth
along
with
reducing
DTPA-extractable
Pb
30.0–49.8%
uptake
roots
15.7–37.5%
shoots
34.5–48.5%.
Antioxidant
enzymatic
activities
were
improved,
stress
indicators
reduced
under
stress,
including
hydrogen
peroxide
(H2O2)
50.7
81.0%,
malondialdehyde
(MDA)
levels
16.0
74.9%,
proline
content
34.5
64.0%,
respectively.
effectiveness
treatments
described
descending
order
viz.
MBA-1
>
MBA-3
MBA-2
BC
RP
BN
stress.
In
conclusion,
integration
biochar,
bentonite,
a
promising
strategy
for
sustainable
cleaner
cereal
crop
heavy
conditions.
Horticulturae,
Journal Year:
2024,
Volume and Issue:
10(9), P. 907 - 907
Published: Aug. 27, 2024
Environmental
protection,
global
food
security,
and
nutritional
quality
are
critical
issues
for
worldwide
sustainable
development.
Plums
(Prunus
domestica
L.),
well-known
their
rich
content
distinct
phytochemical
profile,
have
received
increased
attention
due
to
potential
health
benefits.
The
present
study
evaluates
the
ecological
conventional
management
systems
of
parameters
in
three
plum
varieties—Tuleu
Gras,
Record,
Centenar—and
establishes
suitable
practices
improve
fruit
yields.
morphometric
features
(color,
firmness,
soluble
solid
content,
titratable
acidity,
total
sugar)
were
analyzed
during
raw
state,
while
different
fruit-sample
extracts
assessed
compounds
heavy
metal
concentrations,
specifically,
zinc,
copper,
nickel,
cadmium.
results
show
a
wide
variability
examined
characteristics
among
that
differentially
accumulated
throughout
ripening
phase
significantly
influenced
value
fruit.
application
an
practice
yielded
small
fruits
(38
g)
maintained
more
consistent
vigorous
color
compared
with
system
(83
g).
Moreover,
plums
higher
antioxidant
activities,
polyphenols,
flavonoids
(21.70–25.54
µM
Trolox/g
dw,
3.89–7.76
mg
GAE/
g
1.45–3.65
CE/g
respectively).
Among
metals
fruit,
copper
exhibited
highest
concentrations
(0.83–1.21
mg/kg),
cadmium
was
detected
at
lowest
levels
(0.006–0.009
mg/kg).
implications
metals,
by
calculating
estimated
daily
intake
(EDI),
target
hazard
quotient
(THQ),
index
(HI),
both
adults
children
also
analyzed.
EDI
values
elements
followed
order
Cu
>
Zn
Ni
Cd
no
concern
human
(THQ
HI
<
1).
According
this
study’s
findings,
plums,
providing
compelling
argument
adopting
agricultural
practices.
These
highlight
importance
selecting
practices,
not
only
safeguard
environment
but
ensure
high-quality
products
consumption.
TURKISH JOURNAL OF AGRICULTURE AND FORESTRY,
Journal Year:
2023,
Volume and Issue:
47(5), P. 713 - 726
Published: Oct. 16, 2023
Excessive
lead
(Pb)
in
industrial
dust
increases
serious
concerns
about
its
potential
impact
on
human
health
and
environment.Urban
trees,
as
a
green
cost-effective
alternative,
are
now
considered
an
eco-sustainable
tool
used
to
monitor
mitigate
this
environmental
pollution.The
present
study
investigated
the
effect
of
particles
deposition
plant
functioning
micromorphology
two
common
roadside
plants,
Eucalyptus
camaldulensis
Conocarpus
lancifolius,
city,
Faisalabad,
Pakistan.Tree
leaf
samples
were
collected
from
20
sites
varying
exposure
intensity.These
analyzed
for
antioxidant
enzymes
such
superoxidase
dismutase
(SOD),
peroxidases
(POD),
catalases
(CAT),
well
proline
protein
contents.An
increased
leave
reactive
oxygen
species
contents
response
increasing
load
tissue
concentrations
across
tested
locations
suggested
sensitivity
plants
urban
dust.This
that
C.
lancifolius
leaves
accumulated
relatively
higher
than
E.
camaldulensis.However,
excessive
uptake
inhibited
carbon
synthesis
evidenced
by
lower
photosynthesis
contents.We
also
found
concentration
CAT
(4.90
nmol
min
-1
g
protein),
SOD
(38.42
U
mg
POD
(2.64
µmol
protein)
camaldulensis.The
results
provide
experimental
support
hypothesis
genetically
rich
populations
better
adapted
changing
conditions
suggest
is
less
sensitive
terms
growth
reduction.Regarding
removal,
performed
compared
above
findings
helpful
quantification
services,
assessing
diversity,
identification
eco-friendly
trees
areas.Furthermore,
will
be
formulation
future
tree-planting
policies
areas.