Silencing OsEPSPS in rice enhances disease resistance by activating immune responses but reduces plant growth, demonstrating its role in balancing these traits.
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Moving in bioRxiv, Plant Physiology and Biochemistry, Plant, Cell & Environment, Biotechnology advances, Environmental research, Fungal Biology, Journal of Experimental Botany.
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Silencing OsEPSPS in rice enhances disease resistance by activating immune responses but reduces plant growth, demonstrating its role in balancing these traits.
Elevated trigonelline levels and BrNANMT gene activity increase clubroot susceptibility in Brassica rapa, with overexpression worsening disease and gene loss enhancing resistance.
Reduced expression of AP-1β in Botrytis cinerea causes severe defects in cell wall integrity, enzyme secretion, and pathogenicity, highlighting its critical role in fungal virulence.
A combined Streptomyces dioscori SF1 and Bacillus cereus G2 strain achieves over 70% inhibition of major phytopathogenic fungi, boosting plant health and growth.
MtTCTP3 acts as a positive regulator of nodulation, with overexpression increasing nodule formation by 50% and silencing reducing nodules and nitrogenase activity in Medicago truncatula.
Fungal and bacterial CAZymes effectively target pathogen cell walls, offering a promising, eco-friendly alternative to hazardous pesticides with potential for enhanced crop protection.
Esca disease causes significant transcriptomic reprogramming and DNA methylation changes in symptomatic grapevine leaves, with 1,000+ genes affected and early epigenetic markers identified.
Pervasive RNA splicing in tomato yellow leaf curl virus enhances infectivity by expanding its proteome, with eight splicing events identified and six validated.
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