Cotton under heat stress: a comprehensive review of molecular breeding, genomics, and multi-omics strategies
Frontiers in Genetics,
Год журнала:
2025,
Номер
16
Опубликована: Март 18, 2025
Cotton
is
a
vital
fiber
crop
for
the
global
textile
industry,
but
rising
temperatures
due
to
climate
change
threaten
its
growth,
quality
and
yields.
Heat
stress
disrupts
key
physiological
biochemical
processes,
affecting
carbohydrate
metabolism,
hormone
signaling,
calcium
gene
regulation
expression.
This
review
article
explores
cotton's
defense
mechanism
against
heat
stress,
including
epigenetic
regulations
transgenic
approaches,
with
focus
on
genome
editing
tools.
Given
limitations
of
traditional
breeding,
advanced
omics
technologies
such
as
GWAS,
transcriptomics,
proteomics,
ionomics,
metabolomics,
phenomics
CRISPR-Cas9
offer
promising
solutions
developing
heat-resistant
cotton
varieties.
highlights
need
innovative
strategies
ensure
sustainable
production
under
change.
Язык: Английский
Interaction and regulation of the mitochondrial proteome – in health and disease
Expert Review of Proteomics,
Год журнала:
2025,
Номер
22(1), С. 19 - 33
Опубликована: Янв. 2, 2025
Introduction
Mitochondria
contain
multiple
pathways
including
energy
metabolism
and
several
signaling
synthetic
pathways.
Mitochondrial
proteomics
is
highly
valuable
for
studying
diseases
inherited
metabolic
disorders,
complex
common
disorders
like
neurodegeneration,
diabetes
cancer,
since
they
all
to
some
degree
have
mitochondrial
underpinnings.
Язык: Английский
The heat shock matters with specific attention to the expression of Hsp60 under thermal stress in fish: A critical review
Ecological Genetics and Genomics,
Год журнала:
2025,
Номер
unknown, С. 100337 - 100337
Опубликована: Фев. 1, 2025
Язык: Английский
Heat shock proteins in hypothermia: a review
Frontiers in Molecular Biosciences,
Год журнала:
2025,
Номер
12
Опубликована: Май 9, 2025
Hypothermia
is
a
serious
condition
marked
by
significant
decrease
in
core
body
temperature,
posing
considerable
risks
to
biological
systems.
In
response
thermal
stress,
cells
activate
protective
mechanisms,
often
synthesizing
heat
shock
proteins
(HSPs).
These
highly
conserved
are
crucial
cellular
stress
responses,
primarily
functioning
as
chaperones.
HSPs
facilitate
correct
protein
folding
and
prevent
misfolding
aggregation,
thereby
protecting
integrity
during
adverse
conditions.
This
paper
explains
how
alleviate
responses
related
low
focusing
on
energy
metabolism,
apoptosis,
membrane
fluidity
stability,
signaling
pathways.
By
enhancing
repair
help
maintain
balance
further
harm
the
organism.
Ultimately,
review
emphasizes
complex
relationship
between
hypothermia,
highlighting
their
potential
therapeutic
targets
for
resistance
harmful
effects
of
extreme
cold
exposure.
A
deeper
understanding
these
mechanisms
could
lead
strategies
that
improve
survival
rates
hypothermic
patients.
It
may
also
reveal
ways
modulate
HSPs’
activity
enhanced
protection.
Язык: Английский