Granulation
of
juice
sac
is
a
widespread
physiological
disorder
in
pomelo,
which
has
an
impact
on
fruit
quality.
Here,
the
transcriptome
and
ubiquitinome
normal
granulated
sacs
were
analyzed
Guanxi
pomelo.
We
found
there
two
ways
molecular
regulations
pomelo
showing
lignin
accumulation.
In
data,
we
that
genes
biosynthesis
antioxidant
enzymes
significantly
up-regulated.
abundance
increased,
was
consistent
with
gene
expression
levels.
Interestingly,
enzyme
activities
decreased
after
ubiquitinated
modification,
gave
rise
to
increase
reactive
oxygen
species
(ROS),
especially
H2O2,
sacs.
The
increased
endogenous
H2O2
considered
be
signalling
molecule
activate
expressions
pathway,
led
lignification
Furthermore,
data
result
accumulation
This
study
provides
new
insights
for
granulation
at
Molecules,
Journal Year:
2023,
Volume and Issue:
28(17), P. 6377 - 6377
Published: Aug. 31, 2023
With
the
swift
advancement
of
wearable
electronic
devices
industry,
energy
storage
components
these
must
possess
capability
to
maintain
stable
mechanical
and
chemical
properties
after
undergoing
multiple
bending
or
tensile
deformations.
This
circumstance
has
expedited
research
efforts
toward
novel
electrode
materials
for
flexible
devices.
Nonetheless,
among
numerous
investigated
date,
incorporation
metal
current
collectors
insulative
adhesives
remains
requisite,
which
entails
additional
costs,
unnecessary
weight,
high
contact
resistance.
At
present,
biomass-derived
architectures
stand
out
as
a
promising
choice
in
electrochemical
device
applications.
Flexible
self-supporting
impart
heightened
performance,
obviating
need
binders
lowering
Renewable,
earth-abundant
biomass
endows
with
cost-effectiveness,
diversity,
modulable
properties.
To
fully
exploit
application
potential
carbon
architectures,
understanding
latest
advancements
comprehensive
foundation
behind
their
synthesis
assumes
significance.
review
delves
into
analysis
feedstocks
methods
employed
electrodes.
Subsequently,
are
elucidated.
Finally,
an
outlook
on
challenges
they
face
is
provided.
Processes,
Journal Year:
2023,
Volume and Issue:
11(11), P. 3250 - 3250
Published: Nov. 19, 2023
The
increasing
production
of
electronic
waste
and
the
rising
demand
for
renewable
energy
are
currently
subjects
debate.
Sustainable
processes
based
on
a
circular
economy
required.
Then,
devices
could
be
main
source
synthesis
new
materials.
Thus,
this
work
aimed
to
synthesize
graphene
oxide
(GO)
from
graphite
rod
spent
Zn-C
batteries.
This
was
used
as
support
Ni/Co
bimetallic
nanocatalysts
in
evolution
hydrogen
NaBH4
first
time.
exhibited
diffraction
peak
at
2θ
=
9.1°,
observed
using
X-ray
(XRD),
along
with
presence
oxygenated
groups
identified
FTIR.
Characteristic
bands
1345
1574
cm−1
were
Raman
spectroscopy.
A
leaf-shaped
morphology
SEM.
GO
sheets
TEM,
an
interplanar
distance
0.680
nm.
nanoparticles,
approximate
size
2
nm,
after
deposition
GO.
material
NaBH4,
obtaining
efficiency
close
90%,
kinetic
constant
0.0230
s−1
296.15
K
activation
46.7
kJ
mol−1.
showed
seven
reuse
cycles.
Therefore,
route
added
value
obtained
eco-friendly
process,
which
can
hydrolysis.