Open Access Gold möglich sobald Verlagsversion bei der ZB eingereicht worden ist.
Plant environmental memory: Implications, mechanisms and opportunities for plant scientists and beyond.
AoB Plants 15:plad032 (2023)
Plants are extremely plastic organisms. They continuously receive and integrate environmental information and adjust their growth and development to favour fitness and survival. When this integration of information affects subsequent life stages or the development of subsequent generations, it can be considered an environmental memory. Thus, plant memory is a relevant mechanism by which plants respond adaptively to different environments. If the cost of maintaining the response is offset by its benefits, it may influence evolutionary trajectories. As such, plant memory has a sophisticated underlying molecular mechanism with multiple components and layers. Nonetheless, when mathematical modelling is combined with knowledge of ecological, physiological, and developmental effects as well as molecular mechanisms as a tool for understanding plant memory, the combined potential becomes unfathomable for the management of plant communities in natural and agricultural ecosystems. In this review, we summarize recent advances in the understanding of plant memory, discuss the ecological requirements for its evolution, outline the multilayered molecular network and mechanisms required for accurate and fail-proof plant responses to variable environments, point out the direct involvement of the plant metabolism and discuss the tremendous potential of various types of models to further our understanding of the plant's environmental memory. Throughout, we emphasize the use of plant memory as a tool to unlock the secrets of the natural world.
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Publikationstyp
Artikel: Journalartikel
Dokumenttyp
Review
Schlagwörter
Ecology ; Epigenetics ; Intergenerational Effects ; Memory ; Metabolism ; Modelling ; Plasticity; Flowering Locus-c; Epigenetic Memory; Dna Demethylation; Target Genes; Arabidopsis; Flc; Transcription; Methylation; Generation; Evolution
ISSN (print) / ISBN
2041-2851
e-ISSN
2041-2851
Zeitschrift
AoB Plants
Quellenangaben
Band: 15,
Heft: 4,
Artikelnummer: plad032
Verlag
Oxford University Press
Verlagsort
Great Clarendon St, Oxford Ox2 6dp, England
Nichtpatentliteratur
Publikationen
Begutachtungsstatus
Peer reviewed
Institut(e)
Institute of Biochemical Plant Pathology (BIOP)
Institute of Functional Epigenetics (IFE)
Institute of Functional Epigenetics (IFE)
Förderungen
Research Council of Norway
Early Career Participation Award
German Federal Ministry of Food and Agriculture
Japan Society for Promotion of Science (JSPS) through an International Invitational Fellowship (Japan)
Agencia I+D+i, Argentina
Early Career Participation Award
German Federal Ministry of Food and Agriculture
Japan Society for Promotion of Science (JSPS) through an International Invitational Fellowship (Japan)
Agencia I+D+i, Argentina