Jul 2026· Research journal of biotechnology· Vol 21, pp. 240· 0 citations
TL;DR
Findings suggest that annexins may play important regulatory roles in mediating osmotic stress responses in rice, indicating gene-specific responses to different osmotic stress conditions during early seedling development.
Abstract
Environmental stresses severely affect crop survival,
growth and grain yield, creating an urgent need to
develop stress-tolerant varieties to sustain agricultural
productivity. Abiotic stress signals often induce rapid
fluctuations in cytosolic calcium levels, which are
decoded by calcium-binding proteins to activate
downstream signaling pathways. Annexins constitute a
diverse multigene family of calcium-responsive
proteins that play important roles across the eukaryotic
kingdom. In plants, several annexin homologues have
been identified. High concentrations of sodium
chloride (NaCl), D-mannitol and polyethylene glycol
(PEG) are commonly used to impose osmotic stress and
simulate drought- or salinity-like conditions.
To elucidate the role of rice annexins under osmotic
stress, their expression profiles were analyzed in Oryza
sativa group Indica cv. IR64 using endpoint RT-PCR.
Ten-day-old seedlings were exposed to varying
concentrations of NaCl, D-mannitol and PEG. RNA
was isolated at two time points during a time-course
experiment. Semi-quantitative RT-PCR was employed
to examine the expression of seven annexin genes. The
results revealed distinct and differential expression
patterns among the annexin genes across treatments,
indicating gene-specific responses to different osmotic
stress conditions during early seedling development.
Collectively, these findings suggest that annexins may
play important regulatory roles in mediating osmotic
stress responses in rice.
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