Deletion of amyR in Aspergillus niger enhances cellulose utilization and impairs conidiation, stress tolerance, and fruit decay capacity, revealing its multifunctional regulatory roles.
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Moving in Plant Physiology and Biochemistry, Journal of Experimental Botany, Plant, Cell & Environment, bioRxiv, Applied and environmental microbiology, Communications Biology, Fungal Biology, Gastroenterology.
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Deletion of amyR in Aspergillus niger enhances cellulose utilization and impairs conidiation, stress tolerance, and fruit decay capacity, revealing its multifunctional regulatory roles.
Higher intake of β-glucan and inulin is linked to a 30% reduction in Crohn's disease risk in a high-risk cohort over 8.5 years.
Plectosphaerella cucumerina's carbohydrate-active enzymes enable it to infect multiple plant hosts, with a key GH64 gene driving multihost pathogenicity.
Deletion of Nsd3 in Trichoderma reesei enhances cellulase and hemicellulase activities by removing repression of key genes, revealing a novel regulatory role in fungi.
Plant-derived pectin forms distinct nanoscale morphologies and tightly associates with animal tissue, demonstrating potential as a bioadhesive in lung surgery.
Polysaccharides like pectin and xyloglucan are crucial for the structural integrity of root extracellular traps in Pisum sativum and Glycine max, showing high resistance to enzymatic breakdown.
Exogenous GA(3) delays walnut fruit maturation by approximately 7 days and alters kernel fatty acid composition, notably reducing oleic acid and increasing linoleic acid levels.
Glucose-Target of Rapamycin signaling directs root growth adaptation in Arabidopsis under water deficit, with 50% more precise root orientation.
Biofilm-forming plant growth-promoting bacteria significantly enhance drought resilience in Cyamopsis tetragonoloba by improving seed colonization and oxidative stress regulation.
Acylsugars exhibit extensive structural diversity in Solanaceae, influencing plant defense and ecological interactions, with advances in analytical methods enabling detailed characterization.
Vein-specific overexpression of galactinol synthase enhances salinity tolerance in poplar by 50% through improved ion regulation and stress response mechanisms.
Loss of UPL3 disrupts cellulose and xylan organization, enlarging seed mucilage halos and impairing structural interactions in Arabidopsis seed coat.
Disruption of AaSwi6 and AaMbp1 reduces toxin production by over 80% and impairs virulence in A. alternata, highlighting their key role in pathogenicity.
Penicillium melinii enhances root growth and architecture across plant species by subtly reprogramming host development pathways.
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