Selecting 11 potato cultivars with high microbiome interactive traits enhances plant growth and resilience, supporting sustainable agriculture with reduced chemical inputs.
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- 4 cites
Moving in Plant Physiology and Biochemistry, Plant, Cell & Environment, bioRxiv, Environmental research.
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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.
Endogenous melatonin regulated by OsCOMT boosts rice yield, nitrogen efficiency, and grain quality across diverse nitrogen levels, with up to a significant yield increase in high-melatonin plants.
StMKK9 enhances potato tuber formation and cold tolerance, promoting early tuberization and reducing cold-induced oxidative damage in potato plants.
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.
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