0000000000245590

AUTHOR

Brigitte Mauch-mani

0000-0002-6743-8520

Chemical inducers of resistance in plants

International audience; Resistance of plants towards potential pathogens is regulated by a variety of different local or systemic defence mechanisms which are either constitutively active or inducible upon challenge with a pathogen. Based on the knowledge acquired in studies on the molecular and biochemical mechanisms underlying especially different natural induced resistance phenomena, chemical inducers of resistance, derived both from plants or microorganisms or generated synthetically have been characterised and used to improve plant health. This article gives an overview on the present knowledge on resistance inducers and points to possible applications in the future.

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Priming: getting ready for battle

International audience; Infection of plants by necrotizing pathogens or colonization of plant roots with certain beneficial microbes causes the induction of a unique physiological state called “priming.” The primed state can also be induced by treatment of plants with various natural and synthetic compounds. Primed plants display either faster, stronger, or both activation of the various cellular defense responses that are induced following attack by either pathogens or insects or in response to abiotic stress. Although the phenomenon has been known for decades, most progress in our understanding of priming has been made over the past few years. Here, we summarize the current knowledge of p…

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β-Aminobutyric Acid (BABA)-Induced Resistance in Arabidopsis thaliana: Link with Iron Homeostasis

International audience; Bêta-Aminobutyric acid (BABA) is a nonprotein amino acid inducing resistance in many different plant species against a wide range of abiotic and biotic stresses. Nevertheless, how BABA primes plant natural defense reactions remains poorly understood. Based on its structure, we hypothesized and confirmed that BABA is able to chelate iron (Fe) in vitro. In vivo, we showed that it led to a transient Fe deficiency response in Arabidopsis thaliana plants exemplified by a reduction of ferritin accumulation and disturbances in the expression of genes related to Fe homeostasis. This response was not correlated to changes in Fe concentrations, suggesting that BABA affects the…

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