All Arabidopsis thaliana articles
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News
Bacterial cellulose promotes plant tissue regeneration
Researchers have successfully uncovered the molecular mechanisms by which bacterial cellulose patches stimulate the regeneration of plant wounds, offering potential applications in grafting, pruning, and ornamental flower cutting for enhanced plant healing.
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Plant cells gain immune capabilities when it’s time to fight disease
New research reveals how plant cells switch roles to protect themselves against pathogens. When a threat is encountered, the cells enter a specialized immune state and temporarily become PRimary IMmunE Responder (PRIMER) cells.
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New study discovers the mechanism for fungal colonization of plant roots
Scientists have discovered how the beneficial root fungus Serendipita indica successfully colonizes plant roots of the model plant Arabidopsis thaliana.
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Boosting plant health: the role of gene exchange with bacteria
Scientists have discovered 75 genes that were transferred between small, fast-growing plants (Arabidopsis thaliana) and its bacterial companions, influencing key processes like carbohydrate metabolism and hormone synthesis.
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Plant bacteria deploy phage elements to wipe out the competition
A new study has found that plant bacterial pathogens are able to repurpose elements of their own phages to wipe out competing microbes, suggesting such elements could someday be harnessed as an alternative to antibiotics.
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Scientists create 3D image of the symbiotic communities around plant roots
Researchers report that microbial community composition varies along the root and that this is influenced by the root spatial metabolism.
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Root microbes may be the secret to a better tasting cup of tea
Researchers have found that microbes in tea roots affect their uptake of ammonia, which influences the production of theanine, which is key for determining a tea’s taste.
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Unzipping mRNA rallies plant cells to fight infection
Scientists studying a plant called Arabidopsis thaliana have discovered short snippets of folded RNA that are unzipped in the presence of a pathogen to allow plant cells to make defense proteins to fight infection.