Physiologia Plantarum,
Год журнала:
2025,
Номер
177(1)
Опубликована: Янв. 1, 2025
Abstract
In
the
context
of
climate
changing
environments,
microalgae
can
be
excellent
organisms
to
understand
molecular
mechanisms
that
activate
survival
strategies
under
stress.
Chlamydomonas
reinhardtii
signalling
mutants
are
extremely
useful
decipher
which
photosynthetic
use
cope
with
changeable
environments.
The
mutant
vip1‐1
has
an
altered
profile
pyroinositol
polyphosphates
(PP‐InsPs),
molecules
present
in
all
eukaryotes
and
have
been
connected
P
other
including
plants,
but
their
implications
nutrient
still
evaluation.
this
study,
we
conducted
prolonged
starvation
WT
cells.
After
N
had
consumed,
they
showed
important
differences
levels
chlorophyll,
photosystem
II
(PSII)
activity
ultrastructural
morphology,
cell
size
division.
Metabolomic
analysis
these
conditions
revealed
overall
decrease
different
organic
compounds
such
as
amino
acids,
arginine
its
precursors
tryptophan,
is
considered
a
molecule
itself
plants.
addition,
observed
significant
RNA
genes
related
assimilation
control
NIT2
transcription
factor.
These
data
relevance
understanding
role
PP‐InsPs
sensing,
especially
regarding
N,
not
directly
green
before.
Additionally,
regulation
over
photosynthesis
supports
novel
for
generation
resilient
strains,
expanding
biotechnological
applications
microalgae.
ChemBioEng Reviews,
Год журнала:
2025,
Номер
unknown
Опубликована: Янв. 14, 2025
Abstract
Global
energy
consumption
has
drastically
increased
over
the
years
due
to
population
growth
and
industrialization.
This
prompted
an
exploration
for
clean
renewable
alternatives.
Microalgae
are
widely
recognized
as
a
promising
third‐generation
source
because
they
have
capability
generate
biofuels,
including
biochar.
The
utilization
of
microalgal
biomass
been
gaining
traction
their
advantages,
such
fast
growth,
high
rate
production,
carbon‐fixing
efficiency.
Thermochemical
methods
like
hydrothermal
carbonization,
torrefaction,
pyrolysis
can
be
employed
harness
from
microalgae.
different
thermochemical
converting
into
biochar
discussed,
well
factors
affecting
these
methods.
In
addition,
dedicated
section
covered
components
properties
generated
biochar,
its
thermal
surface
properties.
Furthermore,
economic
analysis
production
microalgae
applications
microalgae‐derived
were
presented
along
with
suggestions
further
research.