International Journal of Molecular Sciences,
Journal Year:
2022,
Volume and Issue:
23(1), P. 530 - 530
Published: Jan. 4, 2022
MicroRNA408
(miR408)
is
an
ancient
and
highly
conserved
miRNA,
which
involved
in
the
regulation
of
plant
growth,
development
stress
response.
However,
previous
research
results
on
evolution
functional
roles
miR408
its
targets
are
relatively
scattered,
there
a
lack
systematic
comparison
comprehensive
summary
detailed
evolutionary
pathways
regulatory
mechanisms
plants.
Here,
we
analyzed
pathway
plants,
summarized
functions
regulating
growth
responses
to
various
abiotic
biotic
stresses.
The
analysis
shows
that
microRNA,
widely
distributed
different
regulates
plants
by
down-regulating
targets,
encoding
blue
copper
(Cu)
proteins,
transporting
Cu
plastocyanin
(PC),
affects
photosynthesis
ultimately
promotes
grain
yield.
In
addition,
improves
tolerance
target
genes
enhancing
cellular
antioxidants,
thereby
increasing
antioxidant
capacity
This
review
expands
in-depth
understanding
International Journal of Molecular Sciences,
Journal Year:
2022,
Volume and Issue:
23(1), P. 530 - 530
Published: Jan. 4, 2022
MicroRNA408
(miR408)
is
an
ancient
and
highly
conserved
miRNA,
which
involved
in
the
regulation
of
plant
growth,
development
stress
response.
However,
previous
research
results
on
evolution
functional
roles
miR408
its
targets
are
relatively
scattered,
there
a
lack
systematic
comparison
comprehensive
summary
detailed
evolutionary
pathways
regulatory
mechanisms
plants.
Here,
we
analyzed
pathway
plants,
summarized
functions
regulating
growth
responses
to
various
abiotic
biotic
stresses.
The
analysis
shows
that
microRNA,
widely
distributed
different
regulates
plants
by
down-regulating
targets,
encoding
blue
copper
(Cu)
proteins,
transporting
Cu
plastocyanin
(PC),
affects
photosynthesis
ultimately
promotes
grain
yield.
In
addition,
improves
tolerance
target
genes
enhancing
cellular
antioxidants,
thereby
increasing
antioxidant
capacity
This
review
expands
in-depth
understanding