108 resultados para botrytis
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Pós-graduação em Agronomia (Produção Vegetal) - FCAV
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Cauliflower is one of the most planted vegetable throughout Brazil, being a very profitable crop. The use of denser plantings can increase crop yield and improve financial returns to producers. This study aimed to verify the combination effect of different spacing between plants in row and between rows on the cauliflower 'Piracicaba Precoce’ inflorescences productivity and quality. In the experiment, a randomized block design was used and treatments consisted in three distances between rows (70, 80 and 90 cm) with three distances between plants in row (50, 60 and 70 cm) and four replications. Total productivity and productivity by inflorescences size classes were assessed as well as the quality by checking the inflorescences’ mass. The row density did not change the produced heads quality, although the density between plants reduced the inflorescences size. The spacing 70 x 50 cm, totalizing 28,571 plants per ha, due the higher productivity, greater than 14.0 t ha-1 , and still not compromise the inflorescence size can be recommended to the cauliflower "Piracicaba Precoce” production in the region.
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Gray mold caused by Botrytis cinerea is considered the major disease of greenhouse grown flowers. The goal of this study was to evaluate the effects of gibberellic acid (GA3), ozone, and 1-MCP, applied on postharvest, on the gray mold control in 'Avant Garde' rose. Rose flowers were artificially inoculated with B. cinerea (104 conidia ml-1) and non-inoculated. After treatments, roses were stored under room conditions (20±2°C/80±5% RH) and checked for gray mold incidence and severity. Spraying of GA3 at 25, 50, and 75 mg L-1 on non-inoculated roses reduced the area under the disease progress curve (AUDPC) of gray mold incidence in 41, 40 and 54%, respectively. Continuous application of ozone at 2.7 ppm reduced 14-folds B. cinerea sporulation. On the other hand, 1-MCP did not control gray mould in rose. These results showed that GA3 sprays and ozone contribute to postharvest control of gray mold in cut rose and can be utilized on integrated disease management.
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The objective was to analyse population structure and to determine genetic diversity of Erysiphe necator (syn. Uncinula necator) populations obtained from some vineyards located in the South-East Po valley (Italy). Powdery mildew is one of the most important fungal diseases of grapes (Vitis vinifera L.) throughout the world. The causal agent is the haploid, heterothallic ascomycete E. necator. It is an obligate biotrophic fungus and it can be found only on green organs of plants belonging to the family Vitaceae. For this pathogen, two sympatric populations (groups A and B) have been described in Europe and Australia. The two genetic groups differ at multiple genetic loci and previous studies reported a lack of interfertility among isolates of the two groups. There are now several well documented examples of plant pathogen species, such as Leptosphaeria maculans, Gaeumannomyces graminis var. tritici, Botrytis cinerea and Erysiphe syringae, which are indeed composed of genetically differentiated clades, that have led to the description of new groups or even new species. Several studies have suggested that genetic E. necator group A and B correlated with ecological features of the pathogen; some researchers proposed that group A isolates over-winter as resting mycelium within dormant buds, and in spring originate infected shoots, known as Flag shoots, while group B isolates would survive as ascospores in overwintering cleistothecia. However, the association between genetic groups and mode of over-wintering has been challenged by recent studies reporting that flag-shoot may be originated indifferently by group A or group B isolate. Previous studies observed a strong association between the levels of disease severity at the end of the growing season and the initial compositions of E. necator populations in commercial vineyards. The frequencies of E. necator genetic groups vary considerably among vineyards, and the two groups may coexist in the same vineyard. This finding suggests that we need more information on the genetics and epidemiology of E. necator for optimize the crop management In this study we monitored E. necator populations in different vineyards in Emilia – Romagna region (Italy), where the pathogen overwinters both as flagshoots and as cleistothecia. During the grape growing season, symptomatic leaves were sampled early in the growing season and both leaves and berries later during the epidemic growth of the disease. From each sample, single-conidial isolate was obtained. Each isolates was grown on V. vinifera leaf cv. Primitivo and after harvesting the mycelium, the DNA was purified and used as template for PCR amplification with SCAR primers (Sequences Characterised Amplified Region ), -tubulin, IGS sequences and Microsatellite markers (SSR). Amplified DNA from b-tubulin and IGS loci was digested with AciI and XhoI restriction enzymes, respectively, to show single-nucleotide polymorphisms specific for the two genetic groups. The results obtained indicated that SCAR primers are not useful to study the epidemiology. of E. necator conversely the b-tubulin IGS sequences and SSR. Summarize the results obtained with b-tubulin, IGS sequences, in treated vineyards we have found individuals of group B along all grape growing season, whereas in the untreated vineyard individuals of the two genetic groups A and B coexisted throughout the season, with no significant change of their frequency. DNA amplified from ascospores of single cleistothecia showed the presence of markers diagnostic for either groups A and B and were seldom observed also the coexistence of both groups within a claistothecium. These results indicate that individuals of the two groups mated in nature and were able to produced ascospores. With SSR we showed the possibility of recombination between A and B groups in field isolates. During winter, cleistothecia were collected repeatedly in the same vineyards sampling leaves fallen on ground, exfoliating bark from trunks, and from soil. From each substrate, was assess the percentage of cleistothecia containing viable ascospores. Our results confirmed that cleisthotecia contained viable ascospores, therefore they have the potential to be an additional and important source of primary inoculum in Emilia-Romagna vineyards.
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Botrytis cinerea ist einer der wichtigsten Phytopathogene, der im Bereich der Weinbereitung als Erreger des Edel- bzw. des Grauschimmels von Trauben eine zentrale Stellung einnimmt. Taxonomisch gehört dieser Organismus zur Familie der Sclerotiniaceae, die ausnahmslos Phytopathogene sind und weltweit große Schäden bei verschiedenen Pflanzen verursachen. Die molekularbiologische Identifikation von Vertretern dieser wichtigen Gruppe von Pflanzenpathogenen ist jedoch bis heute ein Problem. Aus diesem Grund wurde in der vorliegenden Arbeit als Themenschwerpunkt die zweifelsfreie Identifikation einiger Vertreter der Sclerotiniaceae bearbeitet. Hier konnte von neun verschiedenen Organismen die ‚Internal Transcribed Spacer Region’ identifiziert und zusätzlich zur 18S rDNA für eine sichere Identifikation ausgeschlossen werden. Die Unterscheidung der einzelnen Gattungen und verschiedener B. cinerea-Stämme wurde mit Hilfe der neuartigen nSAPD-PCR Technologie erfolgreich überprüft. Hier konnten die drei Gattungen Botrytis, Monilinia sowie Sclerotinia zweifelsfrei differenziert werden. Ferner konnten von Monilinia fructigena, Sclerotinia minor und Sclerotinia sclerotiorum neue Laccase-Gene identifiziert und komplett sequenziert werden, die homolog zur Laccase2 (lcc2) von B. cinerea sind. Auf Basis dieser Sequenzen bzw. Sequenzunterschiede konnte eine Multiplex-PCR zur zweifelsfreien Identifi-kation dieser Spezies etabliert werden. Im Folgenden konnte dieses System auch an Umweltproben aus der Umgebung von Mainz und Wiesbaden, aus Flomborn (Rheinhessen) sowie aus Stollberg (Sachsen) überprüft werden. Anhand dieser Proben konnte gleichzeitig ein konstantes Vorkommen dieses Gens in allen über-prüften Organismen gezeigt werden. Somit ist es zum ersten Mal möglich, ver-schiedene Spezies der Sclerotiniaceae in einer Probe simultan nachzuweisen und zu differenzieren. Anschließend wurde die Laccase-Expression der jeweiligen Sclerotiniaceae überprüft. Für M. fructigena konnte mindestens eine konstitutiv exprimierte Laccase im Kulturüberstand detektiert werden. Im Gegensatz dazu zeigten weder S. minor noch S. sclerotiorum eine derartige Aktivität. Da B. cinerea lcc2 expri-miert, wurde dies auch für M. fructigena angenommen. Die reverse Transkription der codierenden mRNA konnte jedoch nicht erfolgreich durchgeführt werden. Die Analyse des Genoms von B. cinerea und S. sclerotiorum zeigte zudem 13 bzw. 8 mögliche Laccase-Gene. Somit ist es wahrscheinlich, dass M. fructigena mehr als einen codierenden Bereich für ein derartiges Enzym besitzt und somit eine oder mehrere andere Laccasen exprimiert. Auf Basis der codierenden DNA-Sequenzen konnten EDV-gestützte Prote-incharakterisierungen mit allen neu entdeckten Laccase-Sequenzen durchgeführt werden. Die hier ermittelten Eigenschaften legen den Schluss nahe, dass es sich ausnahmslos um Proteine handelt, die extrazellulär lokalisiert sind. So besitzen alle drei eine identisch lange Signalsequenz, die für die Translokation in die extra-zelluläre Matrix nötig ist. Des Weiteren zeigen alle Laccasen eine schwache Hydrophobizität, so dass davon ausgegangen werden kann, dass diese Enzyme keine membranständigen Proteine sind. Auch konnten zahlreiche Glykosylie-rungspositionen ermittelt werden und bei M. fructigena die Glykosylierung der akti-ven Laccase nachgewiesen werden. Des Weiteren konnten alle konservierten Kupferbindepositionen ermittelt werden. Der Vergleich zur mRNA der Lcc2 von B. cinerea offenbarte die lcc2 von M. fructigena drei nicht-codierende Intronse-quenzen, für S. minor und S. sclerotiorum jedoch lediglich die ersten beiden. Somit bleibt für alle neu identifizierten Sequenzen die Frage nach der Expression offen. Es wurden weder Deletionen von Nukleotiden noch frame-shift Mutationen in den einzelnen Genen gefunden. Auch geben die Signalsequenzen bzw. die ent-haltenen Kupferbindepositionen keine Aufschluss über das Ausbleiben der Ex-pression dieser Gene. Da das von B. cinerea synthetisierte ß-1,3-1,6-Glucan in der Kellerwirtschaft große Filtrationsprobleme verursacht, wurde als ein zusätzlicher Themenschwerpunkt die Lyse dieses Polymers mit symbiontischen Mikroorganismen aus Termitendär-men untersucht. Da Termiten auf den Abbau von Polymeren, wie Cellulose und Hemicellulosen spezialisiert sind, lag die Vermutung nahe, dass auch das ß-Glucan von symbiontischen Mikroorganismen hydrolysiert werden kann. In der hier vorliegenden Arbeit konnte zwar das ß-Glucan erfolgreich herge-stellt und in pulverisierter Form 5 verschiedenen Termitenspezies als Futter ange-boten werden, die anschließende Isolierung der Darmflora und die Untersuchung der isolierten Mikroorganismen auf ein mögliche glucanolytische Aktivität erbrach-te jedoch nicht den erhofften Erfolg. Hier wurden acht verschiedene filamentöse Ascomyceten bzw. Zygomyceten isoliert, eine lytische Aktivität konnte jedoch bei keiner dieser Spezies gezeigt werden.
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The DOMON domain is a domain widespread in nature, predicted to fold in a β-sandwich structure. In plants, AIR12 is constituted by a single DOMON domain located in the apoplastic space and is GPI-modified for anchoring to the plasma membrane. Arabidopsis thaliana AIR12 has been heterologously expressed as a recombinant protein (recAtAIR12) in Pichia pastoris. Spectrophotometrical analysis of the purified protein showed that recAtAir12 is a cytochrome b. RecAtAIR12 is highly glycosylated, it is reduced by ascorbate, superoxide and naftoquinones, oxidised by monodehydroascorbate and oxygen and insensitive to hydrogen peroxide. The addition of recAtAIR12 to permeabilized plasma membranes containing NADH, FeEDTA and menadione, caused a statistically significant increase in hydroxyl radicals as detected by electron paramagnetic resonance. In these conditions, recAtAIR12 has thus a pro-oxidant role. Interestingly, AIR12 is related to the cytochrome domain of cellobiose dehydrogenase which is involved in lignin degradation, possibly via reactive oxygen species (ROS) production. In Arabidopsis the Air12 promoter is specifically activated at sites where cell separations occur and ROS, including •OH, are involved in cell wall modifications. air12 knock-out plants infected with Botrytis cinerea are more resistant than wild-type and air12 complemented plants. Also during B. cinerea infection, cell wall modifications and ROS are involved. Our results thus suggest that AIR12 could be involved in cell wall modifying reactions by interacting with ROS and ascorbate. CyDOMs are plasma membrane redox proteins of plants that are predicted to contain an apoplastic DOMON fused with a transmembrane cytochrome b561 domain. CyDOMs have never been purified nor characterised. The trans-membrane portion of a soybean CyDOM was expressed in E. coli but purification could not be achieved. The DOMON domain was expressed in P. pastoris and shown to be itself a cytochrome b that could be reduced by ascorbate.
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Der Gemeine Ohrwurm (Forficula auricularia LINNAEUS 1758) wurde bisher im Weinbau als natürlicher Gegenspieler verschiedener Rebschädlinge zu den Nützlingen gezählt. Etwa seit 2005 verursacht er aufgrund stark ansteigender Populationsdichten Schäden in pfälzischen Rebanlagen. Ohrwürmer halten sich massenhaft in den Trauben auf. Zusammen mit ihren Exkrementen geraten sie bei der Lese in großer Zahl ins Erntegut. Die Tiere werden von der weinbaulichen Praxis als sehr störend und qualitätsmindernd empfunden und ihre Einstufung als Nützling kritisch gesehen. Aufgrund dieser Problematik wurde im Mai 2007 ein durch den Forschungsring des Deutschen Weinbaus (FDW) finanziertes Forschungsprojekt am Dienstleistungszentrum Ländlicher Raum Rheinpfalz in Neustadt an der Weinstraße begonnen. Bis 2010 wurden offene Fragen zur Erfassung und Populationsbiologie des Gemeinen Ohrwurms in Rebanlagen bearbeitet, die von ihm verursachten Schäden beschrieben und Strategien zu seiner Befallsregulation entwickelt. Am Boden aktive Ohrwürmer wurden mit Bodenfallen nach BARBER (1931) aufgenommen. In der Laubwand des Rebstockes wurden die Ohrwürmer mit eigens konzipierten Bambusfallen erfasst. F. auricularia ist in pfälzischen Rebanlagen die dominierende Ohrwurm-Art. Im Projektverlauf wurde der univoltine Entwicklungszyklus des Gemeinen Ohrwurms in pfälzischen Rebanlagen vollständig aufgeklärt. In der Vegetationsperiode beeinflussten die Intensität der Bodenbewirtschaftung mit der resultierenden Flächenbegrünung, die Bodenart, die Lufttemperatur, die Luftfeuchtigkeit und die Niederschlagsmenge die Befallsdichten am Rebstock signifikant. Der Ohrwurm-Befall in den Trauben war signifikant von der Kompaktheit und vom Gewicht der Trauben sowie dem Fäulnisanteil pro Traube und von eingewachsenen Rebblättern in den Trauben abhängig. Das Überwinterungs- und Brutverhalten wurde durch die Art und Weise der Bodenbewirtschaftung beeinflusst beziehungsweise gestört.rnLabor- und Freilandversuche haben gezeigt, dass F. auricularia Pilzpathogene wie die Graufäule (Botrytis cinerea PERSOON 1794) und den Pinselschimmel (Penicillium crustosum THOM 1930) auf gesunde Trauben überträgt. Ferner haben Fraßversuche ergeben, dass der Ohrwurm nur faule und vorgeschädigte Beeren anfressen kann und keine intakten Beeren verletzt. Durch analytische und sensorische Untersuchungen wurde festgestellt, dass Ohrwurm-Kot sensorische Fehltöne im Wein verursachen kann. Diese werden durch das im Kot enthaltene 2-Methyl-1,4-benzochinon hervorgerufen, das eine Komponente des arteigenen Abwehrsekrets ist. Da sich der Ohrwurm jahreszeitlich bedingt entweder im Boden oder am Rebstock aufhält, wurden befallsregulierende Maßnahmen im Boden- und Laubwandbereich der Rebanlage durchgeführt. Durch Tiefengrubbern mit Umbruch der Begrünung im Herbst und Frühjahr wurden die überwinternden Imagines und die Gelege geschädigt, so dass in der darauf folgenden Vegetationsperiode die Befallsdichten in der Laubwand geringfügig aber nicht signifikant abnahmen. Die während der Aufwanderungsphase der Ohrwürmer Ende Juni durchgeführte mechanische Störung der Begrünung reduzierte den Ohrwurm-Befall am Rebstock bis zu drei Wochen nach der Maßnahme signifikant. In der Laubwand der Rebstöcke wurden die Befallsdichten durch die Insektizide SpinTor (Wirkstoff Spinosad: 0,01%) und Steward® (Wirkstoff Indoxacarb: 0,0125 %) sowie sekundär durch partielles Entblättern der Laubwand dauerhaft bis zur Traubenlese reduziert. rn
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Kiwifruit (genus Actinidia) is an important horticultural crop grown in the temperate regions. The four world’s largest producers are China, Italy, New Zealand and Chile. More than 50 species are recognized in the genus but the principal species in cultivation are A. deliciosa and A. chinensis. In Italy, as well as in many other countries, the kiwifruit crop has been considered to be relatively disease free and then no certification system for this species has been developed to regulate importation of propagation plant material in the European Union. During the last years a number of fungal and bacterial diseases have been recorded such as Botrytis cinerea and Pseudomonas syringae pv. actinidiae. Since 2003, several viruses and virus-like diseases have been identified and more recent studies demonstrated that Actinidia spp can be infected by a wide range of viral agents. In collaboration with the University of Auckland we have been detected thirteen different viral species on kiwifruit plants. During the three years of my PhD I worked on the characterization of Cucumber mosaic virus (CMV) and Pelargonium zonate spot virus (PZSV). The determination of causal agents has been based on host range, symptom expression in the test plant species and morphological properties of the virus particles using transmission electron microscopy (TEM) and using specific oligonucleotide primers in reverse transcription-polymerase chain reaction (RT-PCR). Both viruses induced several symptoms on kiwifruit plants. Moreover with new technologies such as high-throughput sequencing we detected additional viruses, a new member of the family Closteroviridae and a new member of the family Totiviridae. Taking together all results of my studies it is clear that, in order to minimize the risk of serious viral disease in kiwifruit, it is vital to use virus-free propagation material in order to prevent the spread of these viruses.
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The postharvest phase has been considered an environment very suitable for successful application of biological control agents (BCAs). However, the tri-interaction between fungal pathogen, host (fruit) and antagonist is influenced by several parameters such as temperature, oxidative stresses, oxygen composition, water activity, etc. that could be determining for the success of biocontrol. Knowledge of the modes of action of BCAs is essential in order to enhance their viability and increase their potentialities in disease control. The thesis focused on the possibility to explain the modes of action of a biological control agent (BCA): Aureobasidium pullulans, in particular the strains L1 and L8, control effective against fruit postharvest fungal pathogen. In particular in this work were studied the different modes of action of BCA, such as: i) the ability to produce volatile organic compounds (VOCs), identified by SPME- gas chromatography-mass spectrometry (GC-MS) and tested by in vitro and in vivo assays against Penicillium spp., Botrytis cinerea, Colletotrichum acutatum; ii) the ability to produce lytic enzymes (exo and endo chitinase and β-1,3-glucanase) tested against Monilinia laxa, causal agent of brown rot of stone fruits. L1 and L8 lytic enzymes were also evaluated through their relative genes by molecular tools; iii) the competition for space and nutrients, such as sugars (sucrose, glucose and fructose) and iron; the latter induced the production of siderophores, molecules with high affinity for iron chelation. A molecular investigation was carried out to better understand the gene regulation strictly correlated to the production of these chelating molucules. The competition for space against M. laxa was verified by electron microscopy techniques; iv) a depth bibliographical analysis on BCAs mechanisms of action and their possible combination with physical and chemical treatments was conducted.
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The endogenous plant hormones salicylic acid (SA) and jasmonic acid (JA), whose levels increase on pathogen infection, activate separate sets of genes encoding antimicrobial proteins in Arabidopsis thaliana. The pathogen-inducible genes PR-1, PR-2, and PR-5 require SA signaling for activation, whereas the plant defensin gene PDF1.2, along with a PR-3 and PR-4 gene, are induced by pathogens via an SA-independent and JA-dependent pathway. An Arabidopsis mutant, coi1, that is affected in the JA-response pathway shows enhanced susceptibility to infection by the fungal pathogens Alternaria brassicicola and Botrytis cinerea but not to Peronospora parasitica, and vice versa for two Arabidopsis genotypes (npr1 and NahG) with a defect in their SA response. Resistance to P. parasitica was boosted by external application of the SA-mimicking compound 2,6-dichloroisonicotinic acid [Delaney, T., et al. (1994) Science 266, 1247–1250] but not by methyl jasmonate (MeJA), whereas treatment with MeJA but not 2,6-dichloroisonicotinic acid elevated resistance to Alternaria brassicicola. The protective effect of MeJA against A. brassicicola was the result of an endogenous defense response activated in planta and not a direct effect of MeJA on the pathogen, as no protection to A. brassicicola was observed in the coi1 mutant treated with MeJA. These data point to the existence of at least two separate hormone-dependent defense pathways in Arabidopsis that contribute to resistance against distinct microbial pathogens.
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The fungus Trichoderma harzianum is a potent mycoparasite of various plant pathogenic fungi. We have studied the molecular regulation of mycoparasitism in the host/mycoparasite system Botrytis cinerea/T. harzianum. Protein extracts, prepared from various stages of mycoparasitism, were used in electrophoretic mobility-shift assays (EMSAs) with two promoter fragments of the ech-42 (42-kDa endochitinase-encoding) gene of T. harzianum. This gene was chosen as a model because its expression is triggered during mycoparasitic interaction [Carsolio, C., Gutierrez, A., Jimenez, B., van Montagu, M. & Herrera-Estrella, A. (1994) Proc. Natl. Acad. Sci. USA 91, 10903–10907]. All cell-free extracts formed high-molecular weight protein–DNA complexes, but those obtained from mycelia activated for mycoparasitic attack formed a complex with greater mobility. Competition experiments, using oligonucleotides containing functional and nonfunctional consensus sites for binding of the carbon catabolite repressor Cre1, provided evidence that the complex from nonmycoparasitic mycelia involves the binding of Cre1 to both fragments of the ech-42 promoter. The presence of two and three consensus sites for binding of Cre1 in the two ech-42 promoter fragments used is consistent with these findings. In contrast, the formation of the protein–DNA complex from mycoparasitic mycelia is unaffected by the addition of the competing oligonucleotides and hence does not involve Cre1. Addition of equal amounts of protein of cell-free extracts from nonmycoparasitic mycelia converted the mycoparasitic DNA–protein complex into the nonmycoparasitic complex. The addition of the purified Cre1::glutathione S-transferase protein to mycoparasitic cell-free extracts produced the same effect. These findings suggest that ech-42 expression in T. harzianum is regulated by (i) binding of Cre1 to two single sites in the ech-42 promoter, (ii) binding of a “mycoparasitic” protein–protein complex to the ech-42 promoter in vicinity of the Cre1 binding sites, and (iii) functional inactivation of Cre1 upon mycoparasitic interaction to enable the formation of the mycoparasitic protein–DNA complex.
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Methyl jasmonate is a plant volatile that acts as an important cellular regulator mediating diverse developmental processes and defense responses. We have cloned the novel gene JMT encoding an S-adenosyl-l-methionine:jasmonic acid carboxyl methyltransferase (JMT) from Arabidopsis thaliana. Recombinant JMT protein expressed in Escherichia coli catalyzed the formation of methyl jasmonate from jasmonic acid with Km value of 38.5 μM. JMT RNA was not detected in young seedlings but was detected in rosettes, cauline leaves, and developing flowers. In addition, expression of the gene was induced both locally and systemically by wounding or methyl jasmonate treatment. This result suggests that JMT can perceive and respond to local and systemic signals generated by external stimuli, and that the signals may include methyl jasmonate itself. Transgenic Arabidopsis overexpressing JMT had a 3-fold elevated level of endogenous methyl jasmonate without altering jasmonic acid content. The transgenic plants exhibited constitutive expression of jasmonate-responsive genes, including VSP and PDF1.2. Furthermore, the transgenic plants showed enhanced level of resistance against the virulent fungus Botrytis cinerea. Thus, our data suggest that the jasmonic acid carboxyl methyltransferase is a key enzyme for jasmonate-regulated plant responses. Activation of JMT expression leads to production of methyl jasmonate that could act as an intracellular regulator, a diffusible intercellular signal transducer, and an airborne signal mediating intra- and interplant communications.
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During ripening of grape (Vitis labruscana L. cv Concord) berries, abundance of several proteins increased, coordinately with hexoses, to the extent that these became the predominant proteins in the ovary. These proteins have been identified by N-terminal amino acid-sequence analysis and/or function to be a thaumatin-like protein (grape osmotin), a lipid-transfer protein, and a basic and an acidic chitinase. The basic chitinase and grape osmotin exhibited activities against the principal grape fungal pathogens Guignardia bidwellii and Botrytis cinerea based on in vitro growth assays. The growth-inhibiting activity of the antifungal proteins was substantial at levels comparable to those that accumulate in the ripening fruit, and these activities were enhanced by as much as 70% in the presence of 1 m glucose, a physiological hexose concentration in berries. The simultaneous accumulation of the antifungal proteins and sugars during berry ripening was correlated with the characteristic development of pathogen resistance that occurs in fruits during ripening. Taken together, accumulation of these proteins, in combination with sugars, appears to constitute a novel, developmentally regulated defense mechanism against phytopathogens in the maturing fruit.
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The ATP-binding cassette (ABC) transporters are encoded by large gene families in plants. Although these proteins are potentially involved in a number of diverse plant processes, currently, very little is known about their actual functions. In this paper, through a cDNA microarray screening of anonymous cDNA clones from a subtractive library, we identified an Arabidopsis gene (AtPDR12) putatively encoding a member of the pleiotropic drug resistance (PDR) subfamily of ABC transporters. AtPDR12 displayed distinct induction profiles after inoculation of plants with compatible and incompatible fungal pathogens and treatments with salicylic acid, ethylene, or methyl jasmonate. Analysis of AtPDR12 expression in a number of Arabidopsis defense signaling mutants further revealed that salicylic acid accumulation, NPR1. function, and sensitivity to jasmonates and ethylene were all required for pathogen-responsive expression of AtPDR12. Germination assays using seeds from an AtPDR12 insertion line in the presence of sclareol resulted in lower germination rates and much stronger inhibition of root elongation in the AtPDR12 insertion line than in wild-type plants. These results suggest that AtPDR12 may be functionally related to the previously identified ABC transporters SpTUR2 and NpABC1, which transport sclareol. Our data also point to a potential role for terpenoids in the Arabidopsis defensive armory.