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Recent advances in ethylene research

Journal of Experimental Botany · 2009 · Vol. 60(12) · pp. 3311–3336
Zhenguo LinSilin ZhongDonald Grierson

Abstract

Ethylene regulates many aspects of the plant life cycle, including seed germination, root initiation, flower development, fruit ripening, senescence, and responses to biotic and abiotic stresses. It thus plays a key role in responses to the environment that have a direct bearing on a plant's fitness for adaptation and reproduction. In recent years, there have been major advances in our understanding of the molecular mechanisms regulating ethylene synthesis and action. Screening for mutants of the triple response phenotype of etiolated Arabidopsis seedlings, together with map-based cloning and candidate gene characterization of natural mutants from other plant species, has led to the identification of many new genes for ethylene biosynthesis, signal transduction, and response pathways. The simple chemical nature of ethylene contrasts with its regulatory complexity. This is illustrated by the multiplicity of genes encoding the key ethylene biosynthesis enzymes 1-aminocyclopropane-1-carboxylic acid (ACC) synthase and ACC oxidase, multiple ethylene receptors and signal transduction components, and the complexity of regulatory steps involving signalling relays and control of mRNA and protein synthesis and turnover. In addition, there are extensive interactions with other hormones. This review integrates knowledge from the model plant Arabidopsis and other plant species and focuses on key aspects of recent research on regulatory networks controlling ethylene synthesis and its role in flower development and fruit ripening.

Postharvest Quality and Shelf Life ManagementPlant Physiology and Cultivation StudiesPlant responses to water stressArabidopsisBiologyEthylenePlant hormoneAuxinRipeningMutantSignal transductionAbscisic acidArabidopsis thaliana

MeSH terms

EthylenesArabidopsisGene Expression Regulation, PlantArabidopsis Proteins

Funding

  • University of Nottingham
  • Directorate for Biological Sciences
  • Biotechnology and Biological Sciences Research Council
Citations
721
FWCI
55.21
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References
187
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100%
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References
Virus‐induced gene silencing in tomato
The Plant Journal · 2002 · 1,676 citations
Genetic Regulation of Fruit Development and Ripening
The Plant Cell · 2004 · 1,394 citations
Ethylene and fruit ripening
Physiologia Plantarum · 1997 · 722 citations
Ethylene biosynthesis and action in tomato: a model for climacteric fruit ripening
Journal of Experimental Botany · 2002 · 1,053 citations
Ethylene Biosynthesis and Signaling Networks
The Plant Cell · 2002 · 1,820 citations
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