It involves the selective destabilization of the major light‐harvesting Chl a/b binding protein complexes associated with photosystem I and photosystem II. A central player in many of these defence responses is jasmonic acid. Enter your email address below and we will send you your username, If the address matches an existing account you will receive an email with instructions to retrieve your username, © 2020 Federation of European Biochemical Societies, By continuing to browse this site, you agree to its use of cookies as described in our, I have read and accept the Wiley Online Library Terms and Conditions of Use, Jasmonates: an update on biosynthesis, signal transduction and action in plant stress response, growth and development, Octadecanoid precursors of jasmonic acid activate the synthesis of wound‐inducible proteinase inhibitors, Jasmonic acid/methyl jasmonate accumulate in wounded soybean hypocotyls and modulate wound gene expression, Quantification of rapid, transient increases in jasmonic acid in wounded plants using a monoclonal antibody, Effect of volatile methyl jasmonate on the oxylipin pathway in tobacco, cucumber, and, Jasmonic acid is a signal transducer in elicitor‐induced plant cell cultures, Signalling in the elicitation process is mediated through the octadecanoid pathway leading to jasmonic acid, Involvement of jasmonic acid in elicitor‐induced phytoalexin production in suspension‐cultured rice cells, The jasmonate pathway is involved in the regulation of different defence responses in tobacco cells, The octadecanoid signalling pathway in plants mediates a response to ultraviolet radiation, Localized wounding by heat initiates the accumulation of proteinase inhibitor II in abscisic acid‐deficient plants by triggering jasmonic acid biosynthesis, Chloroplast signalling and LESION SIMULATING DISEASE1 regulate crosstalk between light acclimation and immunity in, Tocopherol is the scavenger of singlet oxygen produced by the triplet states of chlorophyll in the PSII reaction centre, Phytodynamic herbicides: recent development and molecular basis of selectivity, Singlet oxygen is the major reactive oxygen species involved in photooxidative damage to plants, Oxygen processing in photosynthesis: regulation and signalling, Protoporphyrinogen oxidase as molecular target for diphenyl ether herbicides, Defense responses to tetrapyrrole‐induced oxidative stress in transgenic plants with reduced uroporphyrinogen decarboxylase or coproporphyrinogen oxidase activity, The regulation of enzymes involved in chlorophyll biosynthesis, Purification and partial characterisation of barley glutamyl‐tRNA(Glu) reductase, the enzyme that directs glutamate to chlorophyll biosynthesis, Barley glutamyl tRNAGlu reductase: mutations affecting haem inhibition and enzyme activity, FLU: a negative regulator of chlorophyll biosynthesis in, Interaction of FLU, a negative regulator of tetrapyrrole biosynthesis, with the glutamyl‐tRNA reductase requires the tetratricopeptide repeat domain of FLU, Concurrent interactions of heme and FLU with Glu‐tRNA reductase (HEMA1), the target of metabolic feedback inhibition of tetrapyrrole biosynthesis, in dark‐ and light‐grown, Rapid induction of distinct stress responses after the release of singlet oxygen in, Concurrent activation of cell death‐regulating signalling pathways by singlet oxygen in, The genetic basis of singlet oxygen‐induced stress responses of, No single way to understand singlet oxygen signalling in plants, Ethylene signalling: new levels of complexity and regulation, Current status of the gene‐for‐gene concept, Resistance gene‐dependent plant defense responses, Plant pathogens and integrated defence responses to infection, Understanding the functions of plant disease resistance proteins, The disease resistance signaling components, Different requirements for EDS1 and NDR1 by disease resistance genes define at least two, A haplotype‐specific resistance gene regulated by, The C2 domain protein BAP1 negatively regulates defense responses in, The copines, a novel class of C2 domain‐containing, calcium‐dependent, phospholipid binding proteins conserved from, Characterization of human copine III as a phosphoprotein with associated kinase activity, Localization and subcellular distribution of N‐copine in mouse brain, Plant growth homeostasis is controlled by the, Methyl jasmonate‐induced changes in the polypeptide pattern of senescing barley leaf segments, Jasmonate‐induced alteration of gene expression in barley leaf segments analyzed by, Methyl jasmonate represses translation initiation of a specific set of mRNAs in barley, Methyl jasmonate‐regulated translation of nuclear‐encoded chloroplast proteins in barley, A methyl jasmonate‐induced shift in the length of the 5′ untranslated region impairs translation of the plastid rbcL transcript in barley, JIPs and RIPs: the regulation of plant gene expression by jasmonates in response to environmental cues and pathogens, The S6 kinase signalling pathway in the control of development and growth, Target of rapamycin (TOR): balancing the opposing forces of protein synthesis and degradation, Synthesis, modification and structural binding of heat‐shock proteins in tomato cell cultures, Hypoxic stress‐induced changes in ribosomes of maize seedlings roots, Isolation and characterization of a cDNA encoding a novel jasmonate‐induced protein of barley (, JIP60, a methyl jasmonate‐induced ribosome‐inactivating protein involved in plant stress reactions, The barley 60 kDa jasmonate‐induced protein (JIP60) is a novel ribosome‐inactivating protein, Ribosome‐inactivating proteins up to date, Ribosome‐inactivating proteins: a family of plant proteins that do more than inactivate ribosomes, Inhibitors of animal cell‐free protein synthesis from grains, Modification of ribosomal RNA by ribosome‐inactivating proteins from plants, RNA N‐glycosidase activity of ricin A chain: mechanism of action of the toxic lectin ricin on eukaryotic ribosomes, The mechanism of action of ricin and related toxic lectins on eukaryotic ribosomes: the site and characteristics of the modification in 28, The site of action of six different ribosome‐inactivating proteins from plants on eukaryotic ribosomes: the RNA N‐glycosidase activity of the proteins, Purification and properties of a translation inhibitor from wheat germ, Effect of α‐sarcin and ribosome‐inactivating proteins on the interaction of elongation factors with ribosomes, Singlet oxygen‐dependent translational control in the, The role of EDS1 (enhanced disease susceptibility) during singlet oxygen‐mediated stress responses of, Aspirin prevents wound‐induced gene expression in tomato leaves by blocking jasmonic acid biosynthesis, Salicylic acid inhibits synthesis of proteinase inhibitors in tomato leaves induced by systemin and jasmonic acid, Jasmonic acid signalling modulates ozone‐induced hypersensitive cell death, Ozone‐induced ethylene production is dependent on salicylic acid, and both salicylic acid and ethylene act in concert to regulate ozone‐induced cell death, Nitric oxide modulates ozone‐induced cell death, hormone biosynthesis and gene expression in, Signal transduction during oxidative stress, Reactive oxygen species and hormonal control of cell death, Methyl jasmonate inhibition of root growth and induction of a leaf protein are decreased in an, Plant oxylipins: COI1/JAZs/MYC2 as the core jasmonic acid‐signalling module, The critical requirement for linolenic acid is pollen development, not photosynthesis, in an, Plant oxylipins: Plant responses to 12‐oxo‐phytodienoic acid are governed by its specific structural and functional properties, The tomato ethylene receptor LE‐ETR3 (NR) is not involved in mediating ozone sensitivity: causal relationships among ethylene emission, oxidative burst and tissue damage, Cell death and salicylate‐ and jasmonate‐dependent stress responses in, Glutathione metabolic genes coordinately respond to heavy metals and jasmonic acid in, Plant programmed cell death: a common way to die, Multiple mediators of plant programmed cell death: interplay of conserved cell death mechanisms and plant‐specific regulators, Salicylic acid in plant defence – the players and protagonists, Mitochondrial redox biology and homeostasis in plants, Many ways to exit?

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