P. agathidicida employs a largely conserved infection gene set across gymnosperm and angiosperm hosts, with 1129 core genes upregulated in both A. australis and N. benthamiana.
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Moving in Plant Physiology and Biochemistry, bioRxiv, Plant, Cell & Environment, Current Biology, Fungal Biology, Nature Communications, Nature Reviews Microbiology.
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P. agathidicida employs a largely conserved infection gene set across gymnosperm and angiosperm hosts, with 1129 core genes upregulated in both A. australis and N. benthamiana.
Selecting 11 potato cultivars with high microbiome interactive traits enhances plant growth and resilience, supporting sustainable agriculture with reduced chemical inputs.
A CENH3-based immunostaining method accurately distinguishes potato ploidy levels with clear signals and robust quantification across multiple genotypes.
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.
Silencing Spo12903 confirms it as the functional gene underlying RPF1, providing key insights into spinach resistance to downy mildew caused by Peronospora effusa.
A European ash pangenome uncovers 362,965 structural variants and identifies genetic markers linked to low ash dieback susceptibility in over 1,200 trees.
Humidity-activated cis-regulatory elements enable potato plants to resist late blight without growth penalties, demonstrating a novel environmental-responsive gene regulation strategy.
Proteomic and phospho-proteomic analysis reveals that potato defense responses to Phthorimaea operculella involve significant protein regulation, with 60 DEPs and 56 DPPs identified within 5 hours of attack.
Climate extremes like heatwaves and droughts significantly increase pathogen virulence and disrupt plant microbiomes, heightening disease risks under climate change.
Microbe-based and molecular strategies boost plant resilience, with microbial consortia and gene editing improving disease resistance under climate stress.
StMKK9 enhances potato tuber formation and cold tolerance, promoting early tuberization and reducing cold-induced oxidative damage in potato plants.
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Moving areas, week to 3 Oct 2026