1000 resultados para Fungicide resistance.


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It makes economic sense to use as little fungicide as possible on a crop. In many settings, it is common to apply less than the manufacturer's recommended dose. If sources of disease are scarce, or conditions are unsuitable for it to increase, the reduced control from a low dose may be adequate. In other cases, a big reduction in dose may cause little reduction in control, again permitting savings - especially for growers prepared to run a little risk. But the label recommendations for most fungicides state that to avoid resistance, a full dose must always be used. Are individual cost-savings therefore endangering everyone's access to an exceptionally useful tool? The emergence of fungicide resistance is evolution in action. In all cases, it involves the genetic replacement of the original susceptible population of the pathogen by a new population with genetically distinct biochemistry, which confers resistance. The resistant biochemistry originates in rare genetic mutations, so rare that initially the population is hardly altered. Replacement of susceptible forms by resistant ones happens because, with fungicide present, the resistant form multiplies more rapidly than the susceptible form. The key point to notice is that only the relative rates of multiplication of the resistant and susceptible types are involved in the evolution of resistance. The absolute rates are irrelevant.

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P-glycoproteins (p-gps) are ubiquitous membrane proteins from the ABC (ATP-binding cassette) family. They have been found in many animals, bacteria, plants and fungi and are extremely important in regulating a wide range of xenobiotics including pesticides. P-gps have been linked to xenobiotic resistance, most famously in resistance to cancer drug treatments. Their wide substrate range has led to what is known as "multidrug resistance", where resistance developed to one type of xenobiotic gives resistance to a different classes of xenobiotic. P-gps are a major contributor to drug resistance in mammalian tumours and infections of protozoan parasites such as Plasmodium and Leishmania. There is a growing body of literature suggesting that p-gps, and other ABC proteins, are important in regulating pesticide toxicity and represent potential control failure through the development of pesticide resistance, in both agricultural and medical pests. At the same time, aspects of their biochemistry offer new hope in pest control, in particular in furthering our understanding of toxicity and offering insights into how we can improve control without recourse to new chemical discovery. (c) 2008 Elsevier Inc. All rights reserved.

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This paper reviews the evidence relating to the question: does the risk of fungicide resistance increase or decrease with dose? The development of fungicide resistance progresses through three key phases. During the ‘emergence phase’ the resistant strain has to arise through mutation and invasion. During the subsequent ‘selection phase’, the resistant strain is present in the pathogen population and the fraction of the pathogen population carrying the resistance increases due to the selection pressure caused by the fungicide. During the final phase of ‘adjustment’, the dose or choice of fungicide may need to be changed to maintain effective control over a pathogen population where resistance has developed to intermediate levels. Emergence phase: no experimental publications and only one model study report on the emergence phase, and we conclude that work in this area is needed. Selection phase: all the published experimental work, and virtually all model studies, relate to the selection phase. Seven peer reviewed and four non-peer reviewed publications report experimental evidence. All show increased selection for fungicide resistance with increased fungicide dose, except for one peer reviewed publication that does not detect any selection irrespective of dose and one conference proceedings publication which claims evidence for increased selection at a lower dose. In the mathematical models published, no evidence has been found that a lower dose could lead to a higher risk of fungicide resistance selection. We discuss areas of the dose rate debate that need further study. These include further work on pathogen-fungicide combinations where the pathogen develops partial resistance to the fungicide and work on the emergence phase.

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Azoles and Succinate Dehydrogenase Inhibitors (SDHIs) are the main fungicides available for septoria tritici blotch control, causal agent Zymoseptoria tritici. Decline in azole sensitivity, in combination with European legislation, poses a threat to wheat production in Ireland. Azole fungicides select CYP51 mutations differentially; it was hypothesised that using combinations of azoles could be an effective anti-resistance tool. Naturally inoculated field experiments were carried out in order to understand the impacts of using combinations of azoles, epoxiconazole and metconazole, on azole sensitivity. Approximately 3700 isolates were isolated and their sensitivity to both azoles analysed. Findings showed that limiting the number of applications, by alternating each fungicide, slowed selection for reduced azole sensitivity. Limiting azole use by reducing doses did not reduce selection for decreased azole sensitivity. Although not complete, cross-resistance was observed between the two azoles, which will lead to general reduction in azole sensitivity. A sub-selection of isolates from each treatment at each location were analysed for changes in the CYP51 gene. Sequence analysis identified 49 combinations of mutations in the CYP51 gene, and three different inserts in the CYP51 promoter. Intragenic recombination also featured in these populations. Baseline studies of five new SDHIs were carried out on 209 naturally infected, non-SDHI-treated isolates. With the exception of fluopyram, cross-resistance was apparent between the SDHIs. Analysis of 2300 isolates found that when compared to the solo products, mixing the SDHI isopyrazam and the azole epoxiconazole increased epoxiconazole sensitivity, but had no apparent effect on isopyrazam sensitivity. SDHI resistance-conferring mutations were absent in the baseline and experimental isolates. As long as azoles are used, Z. tritici populations will continue to evolve towards resistance. Combining different modes-of-action, SDHIs and multi-sites, with azoles will relieve some of that selective pressure. To get the best out of available fungicides, they should be used in combination with host resistance and good crop management practices.

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The allele-specific polymerase chain reaction (PCR) was used to screen for the presence of benomyl resistance, and to characterize their levels and frequencies in field populations of Venturia inaequalis during two seasons. Three hundred isolates of V. inaequalis were collected each season from infected leaves of MalusX domestica. Borkh c.v. Mcintosh. The trees used were sprayed in the year prior to collection with five applications of benomyl, its homologue Azindoyle, or water. Monoconidial isolates of V. inaequalis were grown on 2% potato dextrose agar (PDA) for four weeks. Each isolate was taken from a single lesion from a single leaf. Total genomic DNA was extracted from the four week old colonies of V. inaequalis, prepared and used as a template in PCR reactions. PCR reactions were achieved by utilizing allele-specific primers. Each primer was designed to amplify fragments from a specific allele. Primer Vin was specific for mutations conferring the ben^^"^ phenotype. It was expected to amplify a 171 bp. DNA fragment from the ben^"^ alleles only. Primers BenHR and BenMR were specific for mutations conferring the ben"" and ben'^'' phenotypes, respectively. They were expected to amplify 172 bp. and 165 bp. DNA fragments from the ben"" and ben"^" alleles, respectively. Of the 953 isolates tested, 414 (69.9%) were benomyl sensitive (ben^) and 179 (30.1%) were benomyl resistant. All the benomyl resistant alleles were ben^"", since neither the ben"" nor the ben"" alleles were detected. Frequencies of benomyl resistance were 23%, 24%, and 23% for the 1997 collections, and were 46%, 26% and 38% for the 1998 collections for benomyl, Azindoyle and water treatments, respectively. Growth assay was performed to evaluate the applicability of using PCR in monitoring benomyl resistance in fungal field populations. Tests were performed on 14 isolates representing the two phenotypes (ben^ and ben^"'' alleles) characterized by PCR. Results of those tests were in agreement with PCR results. Enzyme digestion was also used to evaluate the accuracy and reliability of PCR products. The mutation associated with the ben^"'' phenotype creates a unique site for the endonuclease enzyme Bsh^236^ allowing the use of enzyme digestion. Isolates characterized by PCR as ben^'^'^ alleles had this restriction site for the SsA7l2361 enzyme. The most time consuming aspect of this study was growing fungal isolates on culture media for DNA extraction. In addition, the risk of contamination or losing the fungus during growth processes was relatively high. A technique for extracting DNA directly from lesions on leaves has been used (Luck and Gillings 1 995). In order to apply this technique in experiments designed to monitor fungicide resistance, a lesion has to be homogeneous for fungicide sensitivity. For this purpose, PCR protocol was used to determine lesion homogeneity. One hundred monoconidial isolates of V. inaequalis from 10 lesions (10-conidia/ lesion) were tested for their phenotypes with respect to benomyl sensitivity. Conidia of six lesions were homogeneous, while conidia of the remaining lesions were mixtures of ben^ and ben^ phenotypes. Neither the ben" nor the ben' phenotype was detected.

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The evolution of fungicide resistance in the cereal pathogen Zymoseptoria tritici, is a serious threat to the sustainability and profitability of wheat production in Europe. Application of azole fungicides has been shown to affect fitness of Z. tritici variants differentially, so it has been hypothesised that combinations of azoles could slow the evolution of resistance. This work was initiated to assess the effects of dose, mixtures and alternations of two azoles on selection for isolates with reduced sensitivity and on disease control. Naturally infected field trials were carried out at six sites across Ireland and the sensitivity of Z. tritici isolates monitored pre- and post-treatment. The azoles epoxiconazole and metconazole were applied as solo products, in alternation with each other and as a pre-formulated mixture. Full and half label doses were tested. The two azoles were partially cross-resistant, with a common azole resistance principal component accounting for 75% of the variation between isolates. Selection for isolates with reduced azole sensitivity was correlated with disease control. Decreased doses were related to decreases in sensitivity but the effect was barely significant (P = 0.1) and control was reduced. Single applications of an active ingredient (a.i.) caused smaller decreases in sensitivity than double applications. Shifts in sensitivity to the a.i. applied to a plot were greater than to the a.i. not applied, and the decrease in sensitivity was greater to the a.i. applied at the second timing. These results confirm the need to mix a.i.s with different modes of action.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Asian soybean rust (ASR), caused by the fungus Phakopsora pachyrhizi, is one of the most economically important crop diseases, but is only treatable with fungicides, which are becoming less effective owing to the emergence of fungicide resistance. There are no commercial soybean cultivars with durable resistance to P. pachyrhizi, and although soybean resistance loci have been mapped, no resistance genes have been cloned. We report the cloning of a P. pachyrhizi resistance gene CcRpp1 (Cajanus cajan Resistance against Phakopsora pachyrhizi 1) from pigeonpea (Cajanus cajan) and show that CcRpp1 confers full resistance to P. pachyrhizi in soybean. Our findings show that legume species related to soybean such as pigeonpea, cowpea, common bean and others could provide a valuable and diverse pool of resistance traits for crop improvement.

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This research aimed to develop and evaluate pre- and postharvest management strategies to reduce stem end rot (SER) incidence and extend saleable life of 'Carabao' mango fruits in Southern Philippines. Preharvest management focused on the development and improvement of fungicide spray program, while postharvest management aimed to develop alternative interventions aside from hot water treatment (HWT). Field evaluation of systemic fungicides, namely azoxystrobin ( Amistar 25SC), tebuconazole ( Folicur 25WP), carbendazim ( Goldazim 500SC), difenoconazole ( Score 250SC) and azoxystrobin+difenoconazole ( Amistar Top), reduced blossom blight severity and improved fruit setting and retention, resulting in higher fruit yield but failed to sufficiently suppress SER incidence. Based on these findings, an improved fungicide spray program was developed taking into account the infection process of SER pathogens and fungicide resistance. Timely application of protectant (mancozeb) and systemic fungicides (azoxystrobin, carbendazim and difenoconazole) during the most critical stages of mango flower and fruit development ensured higher harvestable fruit yield and minimally lowered SER incidence. Control of SER was also achieved by employing postharvest treatment such as HWT (52-55°C for 10 min), which significantly prolonged the saleable life of mango fruits. However, extended hot water treatment (EHWT; 46°C pulp temperature for 15 min), rapid heat treatment (RHT; 59°C for 30-60 sec), fungicide dip and promising biological control agents failed to satisfactorily reduce SER and prolong saleable life. In contrast, the integration of the improved spray program as preharvest management practice, and postharvest treatments such as HWT and fungicide dips (azoxystrobin, 150-175 ppm; carbendazim, 312.5 ppm; and tebuconazole, 125-156 ppm), significantly reduced disease and extended marketable life for utmost 8 days.

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Pós-graduação em Agronomia (Proteção de Plantas) - FCA

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Pós-graduação em Agronomia (Proteção de Plantas) - FCA

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The brown rot fungi belong to a group of fungal pathogens that causes considerable damage to cultivated fruits trees, particularly stone fruits and apples in the temperate regions of the World and during the postharvest with an important economic impact. In particular in Italy, it is important to monitor the Monilinia population to control economic losses associated to the peach and nectarine market. This motivates the research steps presented in this dissertation on Monilinia Italian isolates. The Monilinia species collected from stone fruits have been identified using molecular analysis based on specific primers. The relevant role of M. fructicola was confirmed and, for the first time, it was found also on apple fruits. To avoid the development of resistant strains and implement valid treatment strategies, the understanding of the fruit natural resistance during different developmental stages and the assessment of the Monilinia sensitivity/resistance to fungicides are required. The relationship between the inhibition spots and the phenolic compounds in peach fruit peel was highlighted in this research. Three methods were used to assess isolate resistance/sensitivity, the amended medium, the Spiral Gradient Endpoint Method (SGD) and the Alamar Blue method. The PCR was used to find possible mutation points in the b-tubulin gene that is responsible for fungicide resistance. Interestingly, no mutation points were observed in resistant M. laxa isolates, suggesting that the resistance could be stimulated by environmental factors. This lead to the study of the effect of the temperature on the resistance and the preliminary results of in vitro tests showed that maximum inhibition was observed at 30°C.

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Monilinia spp. (M. laxa, M. fructigena y M. fructicola) causa marchitez en brotes y flores, chancros en ramas y podredumbre de la fruta de hueso provocando pérdidas económicas importantes en años con climatología favorable para el desarrollo de la enfermedad, particularmente en variedades tardías de melocotonero y nectarino. En estos huéspedes en España, hasta el momento, la especie predominante es M. laxa y, en menor proporción, M. fructigena. La reciente introducción en Europa de la especie de cuarentena M. fructicola hace necesaria una detección e identificación rápida de cada una de las especies. Además, hay diversos aspectos de la etiología y epidemiología de la enfermedad que no se conocen en las condiciones de cultivo españolas. En un primer objetivo de esta Tesis se ha abordado la detección e identificación de las especies de Monilinia spp. causantes de podredumbre parda. El estudio de las bases epidemiológicas para el control de la enfermedad constituye el fin del segundo objetivo. Para la detección del género Monilinia en material vegetal por PCR, diferenciándolo de otros hongos presentes en la superficie del melocotonero, se diseñaron una pareja de cebadores siguiendo un análisis del ADN ribosomal. La discriminación entre especies de Monilinia se consiguió utilizando marcadores SCAR (región amplificada de secuencia caracterizada), obtenidos después de un estudio de marcadores polimórficos de ADN amplificados al azar (RAPDs). También fue diseñado un control interno de amplificación (CI) basado en la utilización de un plásmido con secuencias de los cebadores diferenciadores del género, para ser utilizado en el protocolo de diagnóstico de la podredumbre parda con el fin de reconocer falsos negativos debidos a la inhibición de PCR por componentes celulares del material vegetal. Se disponía de un kit comercial que permitía distinguir Monilinia de otros géneros y M. fructicola del resto de especies mediante anticuerpos monoclonales utilizando la técnica DAS-ELISA. En esta Tesis se probaron diferentes fuentes de material como micelio ó conidias procedentes de cultivos en APD, o el micelio de la superficie de frutas o de momias frescas, como formas de antígeno. Los resultados obtenidos con ELISA se compararon con la identificación por métodos morfológico-culturales y por PCR con los cebadores desarrollados en esta Tesis. Los resultados demostraron la posibilidad de una detección temprana en frutas frescas por este método, realzando las posibilidades de una diagnosis temprana para una prevención más eficaz de M. fructicola en fruta de hueso. El estudio epidemiológico de la enfermedad comenzó con la determinación de las principales fuentes de inóculo primario y su importancia relativa en melocotoneros y nectarinos del valle del Ebro. Para ello se muestrearon 9 huertos durante los años 2003 a 2005 recogiendo todas las momias, frutos abortados, gomas, chancros, y brotes necróticos en los árboles. También se recogieron brotes aparentemente sanos y muestras de material vegetal situados en el suelo. En estas muestras se determinó la presencia de Monilinia spp. Los resultados mostraron que la fuente principal de inóculo son las momias que se quedan en los árboles en las que la supervivencia del hongo tras el invierno es muy alta. También son fuentes de inóculo las momias del suelo y los brotes necróticos. De aquí se deriva que una recomendación importante para los agricultores es que deben eliminar este material de los huertos. Un aspecto no estudiado en melocotonero o nectarino en España es la posible relación que puede darse entre la incidencia de infecciones latentes en los frutos inmaduros a lo largo del cultivo y la incidencia de podredumbre en los frutos en el momento de la recolección y en postcosecha. Esta relación se había observado previamente en otros frutales de hueso infectados con M. fructicola en diversos países del mundo. Para estudiar esta relación se realizaron ensayos en cinco huertos comerciales de melocotonero y nectarino situados en el Valle del Ebro en cuatro estados fenológicos durante los años 2000-2002. No se observaron infecciones latentes en botón rosa, dándose la máxima incidencia en precosecha, aunque en algunos huertos se daba otro pico en el endurecimiento del embrión. La especie prevaleciente fue M. laxa. Se obtuvo una correlación positiva significativa entre la incidencia de infecciones latentes y la incidencia de podredumbre en postcosecha. Se desarrolló también un modelo de predicción de las infecciones latentes en función de la temperatura (T) y el periodo de humectación (W). Este modelo indicaba que T y W explicaban el 83% de la variación en la incidencia de infecciones latentes causadas por Monilinia spp. Por debajo de 8ºC no se predecían latentes, necesitándose más de 22h de W para predecir la ocurrencia de latentes con T = 8ºC, mientras que solo se necesitaban 5h de W a 25ºC. Se hicieron también ensayos en condiciones controladas para determinar la relación entre la incidencia de las infecciones latentes, las condiciones ambientales (T y W), la concentración de inóculo del patógeno (I) y el estado de desarrollo del huésped (S) y para validar el modelo de predicción desarrollado con los experimentos de campo. Estos ensayos se llevaron cabo con flores y frutos de nectarino procedentes de un huerto comercial en seis estados fenológicos en los años 2004 y 2005, demostrándose que la incidencia de podredumbre en postcosecha y de infecciones latentes estaba afectada por T, W, I y S. En los frutos se producían infecciones latentes cuando la T no era adecuada para el desarrollo de podredumbre. Una vez desarrollado el embrión eran necesarias más de 4-5h de W al día y un inóculo superior a 104 conidias ml-1 para que se desarrollase o podredumbre o infección latente. La ecuación del modelo obtenido con los datos de campo era capaz de predecir los datos observados en estos experimentos. Para evaluar el efecto del inóculo de Monilinia spp. en la incidencia de infecciones latentes y de podredumbre de frutos en postcosecha se hicieron 11 experimentos en huertos comerciales de melocotonero y nectarino del Valle del Ebro durante 2002 a 2005. Se observó una correlación positiva entre los números de conidias de Monilinia spp. en la superficie de los frutos y la incidencia de infecciones latentes De los estudios anteriores se deducen otras dos recomendaciones importantes para los agricultores: las estrategias de control deben tener en cuenta las infecciones latentes y estimar el riesgo potencial de las mismas basándose en la T y W. Deben tener también en cuenta la concentración de esporas de Monilinia spp. en la superficie de los frutos para disminuir el riesgo de podredumbre parda. El conocimiento de la estructura poblacional de los patógenos sienta las bases para establecer métodos más eficaces de manejo de las enfermedades. Por ello en esta Tesis se ha estudiado el grado de diversidad genética entre distintas poblaciones de M. laxa en diferentes localidades españolas utilizando 144 marcadores RAPDs (59 polimórficos y 85 monomórficos) y 21 aislados. El análisis de la estructura de la población reveló que la diversidad genética dentro de las subpoblaciones (huertos) (HS) representaba el 97% de la diversidad genética (HT), mientras que la diversidad genética entre subpoblaciones (DST) sólo representaba un 3% del total de esta diversidad. La magnitud relativa de la diferenciación génica entre subpoblaciones (GST) alcanzaba 0,032 y el número estimado de migrantes por generación (Nm) fue de 15,1. Los resultados obtenidos en los dendrogramas estaban de acuerdo con el análisis de diversidad génica. Las agrupaciones obtenidas eran independientes del huerto de procedencia, año o huésped. En la Tesis se discute la importancia relativa de las diferentes fuentes evolutivas en las poblaciones de M. laxa. Finalmente se realizó un muestreo en distintos huertos de melocotonero y nectarino del Valle del Ebro para determinar la existencia o no de aislados resistentes a los fungicidas del grupo de los benzimidazoles y las dicarboximidas, fungicidas utilizados habitualmente para el control de la podredumbre parda y con alto riesgo de desarrollar resistencia en las poblaciones patógenas. El análisis de 114 aislados de M. laxa con los fungicidas Benomilo (bencimidazol) (1Bg m.a ml-1), e Iprodiona (dicarboximida) (5Bg m.a ml-1), mostró que ninguno era resistente en las dosis ensayadas. Monilinia spp. (M. laxa, M. fructigena and M. fructicola) cause bud and flower wilt, canker in branches and stone fruit rot giving rise important economic losses in years with appropriate environmental conditions, it is particularly important in late varieties of peach and nectarine. Right now, M. laxa is the major species for peach and nectarine in Spain followed by M. fructigena, in a smaller proportion. The recent introduction of the quarantine organism M. fructicola in Europe makes detection and identification of each one of the species necessary. In addition, there are different aspects of disease etiology and epidemiology that are not well known in Spain conditions. The first goal of this Thesis was the detection and identification of Monilinia spp. causing brown rot. Study of the epidemiology basis for disease control was the second objective. A pair of primers for PCR detection was designed based on the ribosomal DNA sequence in order to detect Monilinia spp. in plant material and to discriminate it from other fungi colonizing peach tree surface. Discrimination among Monilinia spp. was successful by SCAR markers (Sequence Characterized Amplified Region), obtained after a random amplified polymorphic DNA markers (RAPDs) study. An internal control for the PCR (CI) based on the use of a mimic plasmid designed on the primers specific for Monilinia was constructed to be used in diagnosis protocol for brown rot in order to avoid false negatives due to the inhibition of PCR as consequence of remained plant material. A commercial kit based on DAS-ELISA and monoclonals antibodies was successfully tested to distinguish Monilinia from other fungus genera and M. fructicola from other Monilinia species. Different materials such as micelium or conidias from APD cultures, or micelium from fresh fruit surfaces or mummies were tested in this Thesis, as antigens. Results obtained by ELISA were compared to classical identification by morphologic methods and PCR with the primers developed in this Thesis. Results demonstrated the possibility of an early detection in fresh fruits by this method for a more effective prevention of M. fructicola in stone fruit. The epidemiology study of the disease started with the determination of the main sources of primary inoculum and its relative importance in peach trees and nectarines in the Ebro valley. Nine orchards were evaluated during years 2003 to 2005 collecting all mummies, aborted fruits, rubbers, cankers, and necrotic buds from the trees. Apparently healthy buds and plant material located in the ground were also collected. In these samples presence of Monilinia spp. was determined. Results showed that the main inoculum sources are mummies that stay in the trees and where fungus survival after the winter is very high. Mummies on the ground and the necrotics buds are also sources of inoculum. As consequence of this an important recommendation for the growers is the removal of this material of the orchards. An important issue not well studied in peach or nectarine in Spain is the possible relationship between the incidence of latent infections in the immature fruits and the incidence of fruit rot at harvesting and postharvesting. This relationship had been previously shown in other stone fruit trees infected with M. fructicola in different countries over the world. In order to study this relationship experiments were run in five commercial peach and nectarine orchards located in the Ebro Valley in four phenologic states from 2000 to 2002. Latent infections were not observed in pink button, the maxima incidence arise in preharvest, although in some orchards another increase occurred in the embryo hardening. The most prevalence species was M. laxa. A significant positive correlation between the incidence of latent infections and the incidence of rot in postharvest was obtained. A prediction model of the latent infections based on the temperature (T) and the wetness duration (W) was also developed. This model showed that T and W explained 83% of the variation in latent infection incidence caused by Monilinia spp. Below 8ºC latent infection was not predicted, more than 22h of W with T = 8ºC were needed to predict latent infection occurrence of, whereas at 25ºC just 5h of W were enough. Tests under controlled conditions were also made to determine the relationship among latent infections incidence, environmental conditions (T and W), inoculum concentration of the pathogen (I) and development state of the host (S) to validate the prediction model developed on the field experiments. These tests were made with flowers and fruits of nectarine coming from a commercial orchard, in six phenologic states in 2004 and 2005, showing that incidence of rot in postharvest and latent infections were affected by T, W, I and S. In fruits latent infections took place when the T was not suitable for rot development. Once developed the embryo, more than 4-5h of W per day and higher inoculums (104 conidia ml-1) were necessary for rot or latent infection development. The equation of the model obtained with the field data was able to predict the data observed in these experiments. In order to evaluate the effect of inoculum of Monilinia spp. in the incidence of latent infections and of rot of fruits in postharvest, 11 experiments in commercial orchards of peach and nectarine of the Ebro Valley were performed from 2002 to 2005. A positive correlation between the conidial numbers of Monilinia spp. in the surface of the fruits and the incidence of latent infections was observed. Based on those studies other two important recommendations for the agriculturists are deduced: control strategies must consider the latent infections and potential risk based on the T and W. Spores concentration of Monilinia spp. in the surface of fruits must be also taken in concern to reduce the brown rot risk. The knowledge of the population structure of the pathogens determines the bases to establish more effective methods of diseases handling. For that reason in this Thesis the degree of genetic diversity among different M. laxa populations has been studied in different Spanish locations using 144 RAPDs markers (59 polymorphic and 85 monomorphics) on 21 fungal isolates. The analysis of the structure of the population revealed that the genetic diversity within the subpopulations (orchards) (HS) represented 97% of the genetic diversity (HT), whereas the genetic diversity between subpopulations (DST) only represented a 3% of the total of this diversity. The relative magnitude of the genic differentiation between subpopulations (GST) reached 0.032 and the considered number of migrantes by generation (Nm) was of 15.1. The results obtained in dendrograms were in agreement with the analysis of genic diversity. The obtained groupings were independent of the orchard of origin, year or host. In the Thesis the relative importance of the different evolutionary sources in the populations from M. laxa is discussed. Finally a sampling of resistant isolates in different orchards from peach and nectarine of Ebro Valley was made to determine the existence of fungicide resistance of the group of benzimidazoles and the dicarboximidas, fungicides used habitually for the control of rot brown and with high risk of resistance developing in the pathogenic populations. The analysis of 114 isolated ones of M. laxa with the fungicides Benomilo (bencimidazol) (1Bg m.a ml-1), and Iprodiona (dicarboximida) (5Bg m.a ml-1), showed no resistant in the doses evaluated.

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O uso contínuo de fungicidas na agricultura pode resultar na seleção de fungos fitopatogênicos resistentes, que não são controlados pelo produto. Tal problema pode gerar graves conseqüências, como aumento de custos, resíduos em alimentos e contaminações: ambientais. Os diversos segmentos da sociedade envolvidos no controle químico de doenças de plantas devem estar conscientes do problema da resistência, suas causas e soluções. Este livro aborda temas básicos como os conceitos envolvidos, os grupos de fungicidas e seus mecanismos de ação, os mecanismos e a genética da resistência, além de fatores de risco e estratégias anti-resistência. A obra foi elaborada de forma a ser utilizada por profissionais envolvidos no controle químico de doenças de plantas, como engenheiros agrônomos, técnicos, agricultores, e também por estudantes e leigos interessados no assunto.

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The effects of varying doses of fungicides, alone or in mixtures, on selection for triazole resistance were examined under field conditions. Two experiments were conducted using the triazole fungicide fluquinconazole with the strobilurin fungicide azoxystrobin as a mixture partner. Inoculated wheat plots with a known ratio of more sensitive to less sensitive isolates of the leaf blotch fungus Mycosphaerella graminicola were sprayed with fungicide and sampled once symptoms had appeared. Selection for fluquinconazole resistance increased in proportion to the dose, up to one-half of the full dose (the maximum tested) in both experiments. At the higher doses of fluquinconazole, the addition of azoxystrobin was associated with a decrease in selection (nonsignificant in the first experiment) for triazole resistance. Control by low doses of fluquinconazole was increased by mixture with azoxystrobin, but at higher doses mixture with azoxystrobin sometimes decreased control, so that reduced selection was obtained at the cost of some reduction in control. The effects on resistance are not necessarily general consequences of mixing fungicides, and suggest that the properties of any specific mixture may need to be demonstrated experimentally. Selection was inversely related to control in the unmixed treatments in both experiments, but the relationship was weaker in the mixtures with azoxystrobin.