Tansley Review No. 86 Accumulation of phytoalexins: defence mechanism and stimulus response system
Open Access
- 1 January 1996
- journal article
- Published by Wiley in New Phytologist
- Vol. 132 (1) , 1-45
- https://doi.org/10.1111/j.1469-8137.1996.tb04506.x
Abstract
Phytoalexin synthesis is a defence-response- that is characterized by a requirement for a number of distinct elements, all of which must be present for the response to be expressed fully. These same elements: a signal, a cellular receptor, a signal transduction system and a responsive metabolic system, are also used to describe a stimulus-response system. A number of molecular species can function as signal molecules or elicitors of phytoalexin synthesis, including poly- and oligosaccharides, proteins and polypeptides, and fatty acids. Few receptors for elicitors have been identified but those that have been are proteins located on the plasma membrane of the plant. Induction of phytoalexin synthesis involves selective and co-ordinated activation of specific defence response genes, including those encoding the enzymes of phytoalexin synthesis, and these genes constitute the responsive metabolic system. The separate, and distant, locations of the receptor and the responsive genes means that the event in which the signal is perceived by the receptor must be relayed to the genes by means of a second messenger system. Several second messengers are candidates for such a coupling- or signal transduction-system, including udenosine-3′,5′-cyclic monophosphate, Ca2+, diacylglycerol and inositol 1,4,5-trisphosphate, active oxygen species and jasmonic acid. Each has been examined as a possible component of the signal transduction system mediating between the elicitor receptor interaction and the phytoalexin synthesis it induces. Analysis of the signalling events is made complex by the simultaneous solicitation by the invading micro-organism of several defence responses, each of which might involve elements of a different signal system. The same complexity is evident which the role of phytoalexin accumulation in resistance is analysed. Evaluation of the contribution made by phytoalexin accumulation towards resistance has been attempted by the use of various inhibitors and enhancers of the process. Transgenic and mutant plants with specific alterations in one or more ot those elements necessary for the plant to respond to the signals for phytoalexin synthesis and other defence responses, are beginning to aid resolution of the complex pattern ot signalling events and the respective roles of the inducible defence mechanisms in resistance. CONTENTS Summary 1 I. Introduction 2 II. Chemistry of phytoalexins 3 III. Phytoalexin accumulation as a determinant of resistance 6 IV. Elicitation of phytoalexin accumulation 11 References 34Keywords
This publication has 103 references indexed in Scilit:
- Pectin-degrading enzymes and plant-parasite interactionsEuropean Journal of Plant Pathology, 1995
- A gene from the fungal plant pathogen Nectria haematococca that encodes the phytoalexin-detoxifying enzyme pisatin demethylase defines a new cytochrome P450 familyMolecular Genetics and Genomics, 1994
- Identification of a novel high‐affinity binding site for N‐acetylchitooligosaccharide elicitor in the membrane fraction from suspension‐cultured rice cellsFEBS Letters, 1993
- Surface glycoproteins : evidence that they may function as the race specific phytoalexin elicitors of Phytophthora megasperma f.sp. glycineaPhysiological Plant Pathology, 1980
- A new determinant of pathogenicity in plant diseaseThe Science of Nature, 1980
- Death of Botrytis cinerea and B. fabae following exposure to wyerone derivatives in vitro and during infection development in broad bean leavesPhysiological Plant Pathology, 1980
- Phytoalexin production and the resistance of lucerne (Medicago sativa L.) to Verticillium albo-atrumPhysiological Plant Pathology, 1978
- Characterization of components from culture filtrates of Botrytis cinerea which stimulate phaseollin biosynthesis in Phaseolus vulgaris cell suspension culturesPhysiological Plant Pathology, 1977
- The relationship between symptom expression and phytoalexin concentration in hypocotyls of Phaseolus vulgaris infected with Colletotrichum lindemuthianumPhysiological Plant Pathology, 1974
- The isolation and partial characterization of monilicolin A, a polypeptide with phaseollin-inducing activity from Monilinia FructicolaLife Sciences, 1968