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Journal ArticleDOI

Signaling cross-talk in plant disease resistance.

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TLDR
This review deals with interaction trends between salicylic, jasmonic, and abscisic acids in the signaling pathways, as well as exceptions to such trends, and provides a set of examples materializing either antagonism or cooperation for each interaction between two pathways.
About
This article is published in Plant Science.The article was published on 2013-06-01. It has received 247 citations till now. The article focuses on the topics: Abiotic stress & Jasmonic acid.

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Journal ArticleDOI

Secondary metabolites in fungus-plant interactions

TL;DR: The review introduces plant secondary metabolites usually with antifungal effect as well as the importance of signaling molecules in induced systemic resistance and systemic acquired resistance processes and the mimicking of plant effector molecules by fungal secondary metabolites.
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The Chemistry of Plant-Microbe Interactions in the Rhizosphere and the Potential for Metabolomics to Reveal Signaling Related to Defense Priming and Induced Systemic Resistance.

TL;DR: The interactions within the rhizosphere and subsequent above-ground ‘signalomics’ are reviewed, and the contributions that mass spectrometric-based metabolomic approaches can bring to the study of plant-beneficial – and priming events are emphasized.
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How plants handle multiple stresses: hormonal interactions underlying responses to abiotic stress and insect herbivory

TL;DR: It is hypothesize that drought stress enhances insect resistance due to synergistic interactions between JA and ABA signaling, and likely reduces plant resistance to chewing herbivores due to its negative cross-talk with JA.
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Pipecolic Acid Orchestrates Plant Systemic Acquired Resistance and Defense Priming via Salicylic Acid-Dependent and -Independent Pathways

TL;DR: It is concluded that a Pip/FMO1 signaling module acts as an indispensable switch for the activation of SAR and associated defense priming events and that SA amplifies Pip-triggered responses to different degrees in the distal tissue of SAR-activated plants.
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Salicylic acid signal transduction: the initiation of biosynthesis, perception and transcriptional reprogramming

TL;DR: Emerging evidence show that pathogen virulence effectors target SA signaling, further strengthening the importance of SA-mediated immunity.
References
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Journal ArticleDOI

The plant immune system

TL;DR: A detailed understanding of plant immune function will underpin crop improvement for food, fibre and biofuels production and provide extraordinary insights into molecular recognition, cell biology and evolution across biological kingdoms.
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Contrasting Mechanisms of Defense Against Biotrophic and Necrotrophic Pathogens

TL;DR: This review summarizes results from Arabidopsis-pathogen systems regarding the contributions of various defense responses to resistance to several biotrophic and necrotrophic pathogens.
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Host-microbe interactions: Shaping the evolution of the plant immune response

TL;DR: In this review, taking an evolutionary perspective, important discoveries over the last decade about the plant immune response are highlighted.
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Decoding the patterns of self and nonself by the innate immune system.

TL;DR: The innate immune system evolved several strategies of self/nonself discrimination that are based on the recognition of molecular patterns demarcating infectious nonself, as well as normal and abnormal self.
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Role of plant hormones in plant defence responses.

TL;DR: Recent advances made in understanding the role of salicylic acid, jasmonates and ethylene in modulating plant defence responses against various diseases and pests are reviewed.
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