Publications by authors named "P Boevink"

Endocytosis is an essential cellular process that uptakes substances into cells at the plasma membrane from the extracellular space and plays a major role in plant development and responses to environmental stimuli. Research has shown that plant membrane-resident proteins are endocytosed and transported into plant endosomes in response to pathogen-secreted elicitors. However, there is no conclusive experimental evidence demonstrating how secreted cytoplasmic effectors from oomycetes and fungi enter host cells during infection.

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Article Synopsis
  • Plants adapt to environmental stress by altering growth and development, with calcium (Ca) playing a crucial role as a secondary messenger in response to these stressors.
  • The bi-directional dual-flow RootChip (bi-dfRC) platform was used to study root growth and defense signaling by simulating salinity stress with sodium chloride (NaCl) treatment, revealing a concentration-dependent calcium burst that spreads from the stele to the root tip.
  • Research also demonstrated that salinity impacts root growth differently depending on root architecture, with varying responses observed and novel insights gained into root force sensing through engineered microfluidic channels.
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Arg-any amino acid-Leu-Arg (RXLR) effectors are central oomycete virulence factors that suppress plant immunity. Relatively little is known about how they are processed post-translationally before delivery into host cells. A range of molecular, cell and biochemical processes were used to investigate proteolytic processing of RXLR and Glu-Glu-Arg (EER) motifs in Phytophthora infestans effectors.

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Chloroplasts regulate plant development and immunity. Here we report that potato chloroplast elongation factors StTuA and StTuB, targeted by Phytophthora infestans RXLR effector Pi22926, positively regulate immunity and growth. Plants expressing Pi22926, or silenced for TuA/B, show increased P.

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Cytoplasmic effectors with an Arg-any amino acid-Arg-Leu (RxLR) motif are encoded by hundreds of genes within the genomes of oomycete spp. and downy mildew pathogens. There has been a dramatic increase in our understanding of the evolution, function, and recognition of these effectors.

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