WRKY14-DPB module activates UGT84B1, boosting hydrolyzable tannin production and increasing drought tolerance in Litsea cubeba by 2.5-fold.
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Moving in Journal of Experimental Botany, Plant Physiology and Biochemistry, bioRxiv, Plant, Cell & Environment, Biotechnology advances, Environmental research, Frontiers in Genetics, Fungal Biology.
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WRKY14-DPB module activates UGT84B1, boosting hydrolyzable tannin production and increasing drought tolerance in Litsea cubeba by 2.5-fold.
LNC159c suppresses anthocyanin biosynthesis by regulating miR159c and MsMYB10 in Malus spectabilis under low nitrogen, with its downregulation increasing pigment accumulation.
Loss of DET1 in high pigment 2 tomato prevents high temperature repression of anthocyanin biosynthesis by stabilizing HY5, enabling sustained pigment production under heat stress.
VfUGT87H9 boosts Fusarium resistance in Vernicia fordii by increasing myricetin-glucoside levels, with transgenic plants showing significantly higher pathogen defense.
Microbial co-culture engineering enables first successful biosynthesis of 2-phenylethyl glucosinolate from phenylalanine, achieving significant titer improvements.
Thermospermine acts as a bifunctional translational regulator essential for vascular development and stress adaptation in plants, influencing xylem differentiation and secondary growth.
Calcium signaling, mainly via kinase pathways, is a crucial regulator of drought tolerance in crops, with maize and rice being the most studied species.
Loss of function of SlSGR1 enhances tomato cold tolerance by activating jasmonic acid signaling and metabolic reprogramming, with a 50% increase in cold resilience.
Nine KCS genes are actively involved in erucic acid biosynthesis in nasturtium seeds, with three confirmed through functional validation, revealing key enzymes in the process.
Gb3 encodes a unique kinase-pseudokinase fusion protein that confers greenbug resistance in wheat, with transgenic expression enhancing defense against multiple biotypes.
SsMYB1 is a dual regulator that activates both sclareol and flavonoid biosynthesis pathways in Salvia sclarea, with direct binding demonstrated in functional assays.
Dose-dependent application of gibberellic acid and benzylaminopurine enhances photosynthesis and metabolic stability, conferring drought tolerance in pigeonpea with a 33.2% increase in PSII efficiency.
Phosphate starvation triggers a JA-mediated anthocyanin biosynthesis pathway in tomato, involving a PHR/PHL module and MYC2-dependent transcriptional activation.
Rice WRKY transcription factors exhibit over 100 members with diverse structures and functions, creating significant challenges for precise functional characterization.
MADS-box transcription factors exhibit distinct spatial and temporal expression patterns in floral organs, with B-class genes in petals showing distal enrichment during development.
BpMAPK6 phosphorylation of BpDRE1B boosts drought tolerance in Betula platyphylla by activating glutathione S-transferase genes, increasing antioxidant defenses.
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