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Priming and memory of stress responses in organisms lacking a nervous system.

TLDR
A conceptual framework for priming of stress responses in bacteria, fungi and plants is proposed which allows comparison of priming with other terms, e.g. adaptation, acclimation, induction, acquired resistance and cross protection.
Abstract
Experience and memory of environmental stimuli that indicate future stress can prepare (prime) organismic stress responses even in species lacking a nervous system The process through which such organisms prepare their phenotype for an improved response to future stress has been termed 'priming' However, other terms are also used for this phenomenon, especially when considering priming in different types of organisms and when referring to different stressors Here we propose a conceptual framework for priming of stress responses in bacteria, fungi and plants which allows comparison of priming with other terms, eg adaptation, acclimation, induction, acquired resistance and cross protection We address spatial and temporal aspects of priming and highlight current knowledge about the mechanisms necessary for information storage which range from epigenetic marks to the accumulation of (dormant) signalling molecules Furthermore, we outline possible patterns of primed stress responses Finally, we link the ability of organisms to become primed for stress responses (their 'primability') with evolutionary ecology aspects and discuss which properties of an organism and its environment may favour the evolution of priming of stress responses

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Citations
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Journal ArticleDOI

The Theory of Island Biogeography

TL;DR: Preface to the Princeton Landmarks in Biology Edition vii Preface xi Symbols used xiii 1.
Journal ArticleDOI

Abiotic stress responses and microbe-mediated mitigation in plants: The omics strategies

TL;DR: The role of multi-omics approaches in generating multi-pronged information to provide a better understanding of plant–microbe interactions that modulate cellular mechanisms in plants under extreme external conditions and help to optimize abiotic stresses is described.
Journal ArticleDOI

Epigenetic and chromatin-based mechanisms in environmental stress adaptation and stress memory in plants.

TL;DR: In this review, both the involvement of chromatin in stress responses and the current evidence on somatic, intergenerational, and transgenerational stress memory are discussed.
References
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Journal ArticleDOI

The Theory of Island Biogeography

TL;DR: Preface to the Princeton Landmarks in Biology Edition vii Preface xi Symbols used xiii 1.
Journal ArticleDOI

Memory--a century of consolidation.

TL;DR: This review examines the progress made over the century in understanding the time-dependent processes that create the authors' lasting memories.
Journal ArticleDOI

The dilemma of plants: To grow or defend.

TL;DR: A conceptual model of the evolution of plant defense is concluded, in which plant physioligical trade-offs interact with the abiotic environment, competition and herbivory.
Journal ArticleDOI

Resource Availability and Plant Antiherbivore Defense

TL;DR: Resource availability in the environment is proposed as the major determinant of both the amount and type of plant defense, and theories on the evolution of plant defenses are compared with other theories.
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