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Chilling stress constitutes a major abiotic constraint on plant growth and productivity. Although plants mobilize well-characterized physiological and transcriptional acclimation mechanisms, the integrative roles of root-associated microbiomes and root exudate chemistry in chilling tolerance, partic...
2026-04-21 | MTBLS14339 | MetaboLights
To dissect the temporal architecture of chilling resilience, we conducted an integrative, time-resolved analysis of two Miscanthus sinensis genotypes contrasting in chilling tolerance, Ms12 and Ms16. Through stepwise chilling and recovery treatments, we profiled genotype-specific changes in shoot ph...
ORGANISM(S): Miscanthus sinensis 
To further elucidate how COLD6 regulates rice chilling tolerance, we investigated COLD6 interacting proteins using COLD6ind-GFP transgenic line by immunoprecipitation in combination with mass spectrometry (IP-MS). COLD6ind-GFP was applied to bind proteins in chilling-treated rice seedling samples, a...
ORGANISM(S): Oryza sativa (Rice) 
2024-11-02 | PXD049238 | Pride
To further elucidate how COLD6 regulates rice chilling tolerance, we investigated COLD6 interacting proteins using COLD6ind-GFP transgenic line by immunoprecipitation in combination with mass spectrometry (IP-MS). COLD6ind-GFP was applied to bind proteins in chilling-treated rice seedling samples, a...
ORGANISM(S): Oryza sativa (Rice) 
2024-11-02 | PXD049115 | Pride
Differential gene expression in Miscanthus sinensis under chilling stress
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