Life,
Год журнала:
2022,
Номер
12(11), С. 1922 - 1922
Опубликована: Ноя. 18, 2022
Environmental
variations
caused
by
global
climate
change
significantly
affect
plant
yield
and
productivity.
Because
water
scarcity
is
one
of
the
most
significant
risks
to
agriculture's
future,
improving
performance
plants
cope
with
stress
critical.
Our
research
scrutinized
impact
melatonin
application
on
photosynthetic
machinery,
physiology,
root
system,
osmoprotectant
accumulation,
oxidative
in
tomato
during
drought.
The
results
showed
that
melatonin-treated
had
remarkably
higher
levels,
gas
exchange
activities,
system
morphological
parameters
(average
diameter,
activity,
forks,
projected
area,
crossings,
volume,
surface
length,
tips,
numbers),
(proline,
trehalose,
fructose,
sucrose,
GB)
transcript
levels
genes
SlPsb28,
SlPetF,
SlPsbP,
SlPsbQ,
SlPetE,
SlPsbW.
In
addition,
effectively
maintained
plants'
physiology.
Moreover,
treatment
soluble
protein
content
antioxidant
capacity
Melatonin
also
resulted
membrane
stability,
evidenced
less
electrolyte
leakage
lower
H2O2,
MDA,
O2-
drought-stress
environment.
Additionally,
enhanced
defense
enzymes
antioxidant-stress-resistance-related
gene
(SlCAT1,
SlAPX,
SlGR,
SlDHAR,
SlPOD,
SOD)
plants.
These
outcomes
imply
impacts
drought
resistance
could
be
ascribed
mitigation
function
inhibition,
enhancement
status,
alleviation
study
findings
reveal
new
incredible
aspects
response
provide
a
list
candidate
targets
for
increasing
tolerance
Plants,
Год журнала:
2022,
Номер
11(13), С. 1620 - 1620
Опубликована: Июнь 21, 2022
Water,
a
necessary
component
of
cell
protoplasm,
plays
an
essential
role
in
supporting
life
on
Earth;
nevertheless,
extreme
changes
climatic
conditions
limit
water
availability,
causing
numerous
issues,
such
as
the
current
water-scarce
regimes
many
regions
biome.
This
review
aims
to
collect
data
from
various
published
studies
literature
understand
and
critically
analyze
plants’
morphological,
growth,
yield,
physio-biochemical
responses
drought
stress
their
potential
modulate
nullify
damaging
effects
via
activating
natural
physiological
biochemical
mechanisms.
In
addition,
described
breakthroughs
understanding
how
plant
hormones
influence
phytohormonal
interaction
through
signaling
under
regimes.
The
information
for
this
was
systematically
gathered
different
global
search
engines
scientific
databases
Science
Direct,
including
Google
Scholar,
Web
Science,
related
studies,
books,
articles.
Drought
is
significant
obstacle
meeting
food
demand
world’s
constantly
growing
population.
Plants
cope
with
cellular
osmotic
potential,
activation
defense
systems
form
antioxidant
enzymes
accumulation
osmolytes
proteins,
proline,
glycine
betaine,
phenolic
compounds,
soluble
sugars.
Phytohormones
developmental
processes
networks,
which
aid
acclimating
plants
biotic
abiotic
challenges
and,
consequently,
survival.
Significant
progress
has
been
made
jasmonates,
salicylic
acid,
ethylene
identifying
important
components
roles
stress.
Other
hormones,
abscisic
auxin,
gibberellic
brassinosteroids,
peptide
have
linked
pathways
ways.
Life,
Год журнала:
2021,
Номер
11(6), С. 545 - 545
Опубликована: Июнь 10, 2021
Among
abiotic
stresses,
salinity
is
a
major
global
threat
to
agriculture,
causing
severe
damage
crop
production
and
productivity.
Potato
(Solanum
tuberosum)
regarded
as
future
food
by
FAO
ensure
security,
which
severely
affected
salinity.
The
growth
of
the
potato
plant
inhibited
under
salt
stress
due
osmotic
stress-induced
ion
toxicity.
Salinity-mediated
leads
physiological
changes
in
plant,
including
nutrient
imbalance,
impairment
detoxifying
reactive
oxygen
species
(ROS),
membrane
damage,
reduced
photosynthetic
activities.
Several
biochemical
phenomena,
such
maintenance
water
status,
transpiration,
respiration,
use
efficiency,
hormonal
balance,
leaf
area,
germination,
antioxidants
are
adversely
affected.
ROS
increased
plasma
permeability
extravasations
substances,
causes
imbalance
plasmolysis.
However,
plants
cope
with
mediated
oxidative
conditions
enhancing
both
enzymatic
non-enzymatic
antioxidant
osmoprotectants,
proline,
polyols
(sorbitol,
mannitol,
xylitol,
lactitol,
maltitol),
quaternary
ammonium
compound
(glycine
betaine)
synthesized
overcome
adverse
effect
response
tolerance
include
complex
multifaceted
mechanisms
that
controlled
multiple
proteins
their
interactions.
This
review
aims
redraw
attention
researchers
explore
current
physiological,
molecular
responses
subsequently
develop
potential
mitigation
strategies
against
potatoes.
Journal of Experimental Botany,
Год журнала:
2022,
Номер
73(17), С. 5779 - 5800
Опубликована: Янв. 12, 2022
Phytomelatonin,
a
multifunctional
molecule
that
has
been
found
to
be
present
in
all
plants
examined
date,
an
important
role
as
modulatory
agent
(a
biostimulator)
improves
plant
tolerance
both
biotic
and
abiotic
stress.
We
review
of
phytomelatonin
considers
its
roles
metabolism
particular
interactions
with
hormone
network.
In
the
primary
plants,
melatonin
rate
efficiency
photosynthesis,
well
related
factors
such
stomatal
conductance,
intercellular
CO2,
Rubisco
activity.
It
also
shown
down-regulate
some
senescence
transcription
factors.
Melatonin
up-regulates
many
enzyme
transcripts
carbohydrates
(including
sucrose
starch),
amino
acids,
lipid
metabolism,
optimizing
N,
P,
S
uptake.
With
respect
secondary
clear
increases
polyphenol,
glucosinolate,
terpenoid,
alkaloid
contents
have
described
numerous
melatonin-treated
plants.
Generally,
most
genes
these
biosynthesis
pathways
up-regulated
by
melatonin.
The
great
regulatory
capacity
is
result
control
redox
networks.
acts
master
regulator,
up-/down-regulating
different
levels
signalling,
key
player
homeostasis.
counteract
diverse
critical
situations
pathogen
infections
stresses,
provide
varying
degrees
tolerance.
propose
possible
future
applications
for
crop
improvement
post-harvest
product
preservation.
International Journal of Molecular Sciences,
Год журнала:
2022,
Номер
23(5), С. 2838 - 2838
Опубликована: Март 4, 2022
Heat
stress
(HS)
is
one
of
the
major
abiotic
stresses
affecting
production
and
quality
wheat.
Rising
temperatures
are
particularly
threatening
to
wheat
production.
A
detailed
overview
morpho-physio-biochemical
responses
HS
critical
identify
various
tolerance
mechanisms
their
use
in
identifying
strategies
safeguard
under
changing
climates.
The
development
thermotolerant
cultivars
using
conventional
or
molecular
breeding
transgenic
approaches
promising.
Over
last
decade,
different
omics
have
revolutionized
way
plant
breeders
biotechnologists
investigate
underlying
cellular
homeostasis.
Therefore,
developing
genomics,
transcriptomics,
proteomics,
metabolomics
data
sets
a
deeper
understanding
needed.
most
reliable
method
improve
resilience
must
include
agronomic
management
strategies,
such
as
adoption
climate-smart
cultivation
practices
osmoprotectants
cultured
soil
microbes.
However,
looking
at
complex
nature
HS,
holistic
approach
integrating
outcomes
breeding,
physiological,
agronomical,
biotechnological
options
required.
Our
review
aims
provide
insights
concerning
morpho-physiological
impacts,
mechanisms,
adaptation
This
will
help
scientific
communities
identification,
development,
promotion
minimize
negative
impacts
HS.
Frontiers in Plant Science,
Год журнала:
2022,
Номер
13
Опубликована: Май 9, 2022
Melatonin
is
a
multi-functional
molecule
that
ubiquitous
in
all
living
organisms.
performs
essential
roles
plant
stress
tolerance;
its
application
can
reduce
the
harmful
effects
of
abiotic
stresses.
Plant
melatonin
biosynthesis,
which
usually
occurs
within
chloroplasts,
and
related
metabolic
pathways
have
been
extensively
characterized.
regulates
responses
by
directly
inhibiting
accumulation
reactive
oxygen
nitrogen
species,
indirectly
affecting
response
pathways.
In
this
review,
we
summarize
recent
research
concerning
metabolism,
antioxidation;
focus
on
melatonin-mediated
tolerance
to
stresses
including
drought,
waterlogging,
salt,
heat,
cold,
heavy
metal
toxicity,
light
others.
We
also
examine
exogenous
treatment
plants
under
stress.
Finally,
discuss
future
perspectives
applications
plants.