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Daniel Rigling - One of the best experts on this subject based on the ideXlab platform.
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Genetic and Phenotypic Characterization of Cryphonectria hypovirus 1 from Eurasian Georgia
MDPI AG, 2018Co-Authors: Daniel Rigling, Nora Borst, Carolina Cornejo, Archil Supatashvili, Simone ProsperoAbstract:Cryphonectria hypovirus 1 (CHV-1) infects the chestnut blight fungus Cryphonectria parasitica and acts as a biological control agent against this harmful tree disease. In this study, we screened the recently characterized C. parasitica population in Eurasian Georgia for the presence of CHV-1. We found 62 CHV-1 infected C. parasitica isolates (9.3%) among a total of 664 isolates sampled in 14 locations across Georgia. The prevalence of CHV-1 at the different locations ranged from 0% in the eastern part of the country to 29% in the western part. Sequencing of two specific regions of the viral genome one each in ORFA and ORFB revealed a unique CHV-1 subtype in Georgia. This subtype has a recombinant pattern combining the ORFA region from the subtype F2 and the ORFB region from subtype D. All 62 viral strains belonged to this Georgian CHV-1 subtype (subtype G). The CHV-1 subtype G strongly reduced the parasitic growth of C. parasitica isolates from Georgia, with a more severe effect on the European genepool compared to the Georgian genepool. The CHV-1 subtype detected in Georgia provides a valuable candidate for biological control applications in the Caucasus region.
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Cryphonectria parasitica the causal agent of chestnut blight invasion history population biology and disease control
Molecular Plant Pathology, 2018Co-Authors: Daniel Rigling, Simone ProsperoAbstract:Chestnut blight, caused by Cryphonectria parasitica, is a devastating disease infecting American and European chestnut trees. The pathogen is native to East Asia and was spread to other continents via infected chestnut plants. This review summarizes the current state of research on this pathogen with a special emphasis on its interaction with a hyperparasitic mycovirus that acts as a biological control agent of chestnut blight. Taxonomy: Cryphonectria parasitica (Murr.) Barr. is a Sordariomycete (ascomycete) fungus in the family Cryphonetriaceae (Order Diaporthales). Closely related species that can also be found on chestnut include Cryphonectria radicalis, Cryphonectria naterciae, and Cryphonectria japonica. Host range: Major hosts are species in the genus Castanea (Fam. Fagaceae), particularly the American chestnut (C. dentata), the European chestnut (C. sativa), the Chinese chestnut (C. mollissima), and the Japanese chestnut (C. crenata). Minor, incidental hosts include oaks (Quercus spp.), maples (Acer spp.), European hornbeam (Carpinus betulus L.), and American chinkapin (Castanea pumila). Disease symptoms: C. parasitica causes perennial necrotic lesions (so-called cankers) on the bark of stems and branches of susceptible host trees, eventually leading to wilting of the plant part distal to the infection. Chestnut blight cankers are characterized by the presence of mycelial fans and fruiting bodies of the pathogen. Below the canker the tree may react by producing epicormic shoots. Non-lethal, superficial or callusing cankers on susceptible host trees are usually associated with mycovirus-induced hypovirulence. Disease control: After the introduction of C. parasitica into a new area, eradication efforts by cutting and burning the infected plants/trees have mostly failed. In Europe, the mycovirus Cryphonectria hypovirus 1 (CHV-1) acts as a successful biological control agent of chestnut blight by causing so-called hypovirulence. CHV-1 infects C. parasitica and reduces its parasitic growth and sporulation capacity. Individual cankers can be therapeutically treated with hypovirus-infected C. parasitica strains. The hypovirus may subsequently spread to untreated cankers and become established in the C. parasitica population. Hypovirulence is present in many chestnut growing regions of Europe, either resulting naturally or after biological control treatments. In North America, disease management of chestnut blight mainly focuses on breeding with the goal to backcross the Chinese chestnut's blight resistance into the American chestnut genome. This article is protected by copyright. All rights reserved.
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Cryphonectria parasitica the causal agent of chestnut blight invasion history population biology and disease control
Molecular Plant Pathology, 2018Co-Authors: Daniel Rigling, Simone ProsperoAbstract:Chestnut blight, caused by Cryphonectria parasitica, is a devastating disease infecting American and European chestnut trees. The pathogen is native to East Asia and was spread to other continents via infected chestnut plants. This review summarizes the current state of research on this pathogen with a special emphasis on its interaction with a hyperparasitic mycovirus that acts as a biological control agent of chestnut blight. Taxonomy: Cryphonectria parasitica (Murr.) Barr. is a Sordariomycete (ascomycete) fungus in the family Cryphonetriaceae (Order Diaporthales). Closely related species that can also be found on chestnut include Cryphonectria radicalis, Cryphonectria naterciae, and Cryphonectria japonica. Host range: Major hosts are species in the genus Castanea (Fam. Fagaceae), particularly the American chestnut (C. dentata), the European chestnut (C. sativa), the Chinese chestnut (C. mollissima), and the Japanese chestnut (C. crenata). Minor, incidental hosts include oaks (Quercus spp.), maples (Acer spp.), European hornbeam (Carpinus betulus L.), and American chinkapin (Castanea pumila). Disease symptoms: C. parasitica causes perennial necrotic lesions (so-called cankers) on the bark of stems and branches of susceptible host trees, eventually leading to wilting of the plant part distal to the infection. Chestnut blight cankers are characterized by the presence of mycelial fans and fruiting bodies of the pathogen. Below the canker the tree may react by producing epicormic shoots. Non-lethal, superficial or callusing cankers on susceptible host trees are usually associated with mycovirus-induced hypovirulence. Disease control: After the introduction of C. parasitica into a new area, eradication efforts by cutting and burning the infected plants/trees have mostly failed. In Europe, the mycovirus Cryphonectria hypovirus 1 (CHV-1) acts as a successful biological control agent of chestnut blight by causing so-called hypovirulence. CHV-1 infects C. parasitica and reduces its parasitic growth and sporulation capacity. Individual cankers can be therapeutically treated with hypovirus-infected C. parasitica strains. The hypovirus may subsequently spread to untreated cankers and become established in the C. parasitica population. Hypovirulence is present in many chestnut growing regions of Europe, either resulting naturally or after biological control treatments. In North America, disease management of chestnut blight mainly focuses on breeding with the goal to backcross the Chinese chestnut's blight resistance into the American chestnut genome. This article is protected by copyright. All rights reserved.
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controlo biologico do cancro do castanheiro detecao identificacao e caracterizacao do hypovirus chv1
Revista de Ciências Agrárias, 2015Co-Authors: Eric Pereira, Daniel Rigling, Simone Prospero, Eugenia GouveiaAbstract:O cancro do castanheiro e provocado pelo fungo Cryphonectria parasitica e considerado a principal causa do declinio dos castanheiros na Europa. C. parasitica e um ascomiceta (Diaporthales) nativo do continente asiatico. A infecao do castanheiro manifesta-se pelo aparecimento de necroses extensas na casca dos ramos e troncos, que resulta na morte dos castanheiros. A hipovirulencia e um metodo seletivo de controlo biologico do Cancro do Castanheiro, trata-se de uma infecao do fungo C. parasitica com Cryphonectria hypovirus 1 (CHV1), um virus de dsRNA nao encapsulado do genero Hypovirus. O controlo biologico com estirpes hipovirulentas e considerado um metodo eficaz no controlo da doenca e promove a recuperacao dos castanheiros. A aplicacao necessita da producao em laboratorio de estirpes hipovirulentas compativeis com a estirpe virulenta presente no campo e a sua introducao na margem de cancros ativos. Neste estudo pretendeu-se detetar, identificar e caracterizar o hipovirus CHV1 com potencial para integrar programas de controlo biologico do Cancro do castanheiro em Portugal. Com a utilizacao de metodos moleculares foram identificados e caracterizados 11 hipovirus em isolados brancos de C. parasitica obtidos em cancros no nordeste de Portugal.
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controlo biologico do cancro do castanheiro detecao identificacao e caracterizacao do hypovirus chv1 biological control of chestnut blight detection identification and characterization of the hypovirus chv1
2015Co-Authors: Eric Pereira, Daniel Rigling, Simone Prospero, Eugenia GouveiaAbstract:The chestnut blight caused by the fungus Cryphonectria parasitica is considered a major cause of the decline and disappearance of chestnut trees across Europe. C. parasitica is an ascomycete fungus (Diaporthales) that is native to eastern Asia. Infection of chestnut plants with this fungus is typically associated with extensive necrosis (cankers) of the bark on stems and branches, resulting in the subsequent death of the tree. Hypovirulence is a specific method for biologi cal control of Chestnut Blight, it is an infection of C. parasitica with Cryphonectria hypovirus 1 (CHV1), a unencapsidate dsRNA virus of the genus Hypovirus. Biological control with hypovirulent strains is considered an efficient method to control the disease and improve the host plant recovery. The field application needs laboratorial production of compati ble hypovirulent strain and introduction by inoculation at the margin of active cankers. In this work it was intended to identify and characterize the hypovirus with potential ability to integrate biological control programmes against Chestnut Blight. Using molecular techniques 11 hypovirus with hypovirulence potential were identified on white isolates of C. parasitica isolated on cankers from northeast of Portugal.
Michael G. Milgroom - One of the best experts on this subject based on the ideXlab platform.
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mixed mating in natural populations of the chestnut blight fungus Cryphonectria parasitica
Heredity, 2004Co-Authors: Robert E Marra, P Cortesi, M Bissegger, Michael G. MilgroomAbstract:Mixed mating in natural populations of the chestnut blight fungus, Cryphonectria parasitica
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mating type heterokaryosis and selfing in Cryphonectria parasitica
Fungal Genetics and Biology, 2004Co-Authors: Cristina I Mcguire, Robert E Marra, Michael G. MilgroomAbstract:Abstract Selfing in the chestnut blight fungus, Cryphonectria parasitica , occurs by two different genetic mechanisms. Most self-fertile isolates of C. parasitica are heterokaryotic for mating type, and the progeny from selfing segregate for mating type. Further, we resolved mating-type ( MAT ) heterokaryons into homokaryons of both mating types by isolating uninucleate asexual spores (conidia). However, because ascospore progeny, with rare exceptions, are not MAT heterokaryons, C. parasitica must lack a regular mechanism to maintain heterokaryosis by selfing. We hypothesize that heterokaryon formation may occur either because of recurrent biparental inbreeding, or by mating-type switching, possibly one involving some kind of parasexual process. The second mechanism found for selfing in C. parasitica occurred less frequently. Three single-conidial isolates ( MAT-1 and MAT-2 ) selfed and produced progeny that did not segregate for mating type. It is currently not known if meiosis occurs during ascospore formation by this mechanism. Index descriptors: Cryphonectria parasitica , Heterokaryosis, MAT , Mating type, Self-fertility, Self-incompatibility, Self-sterility
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incidence and diversity of double stranded rnas occurring in the chestnut blight fungus Cryphonectria parasitica in china and japan
Phytopathology, 1998Co-Authors: Tobin L Peever, Bradley I. Hillman, Yirchung Liu, Kerong Wang, Robert Foglia, Michael G. MilgroomAbstract:ABSTRACT Isolates of the chestnut blight fungus, Cryphonectria parasitica, were randomly sampled from 10 subpopulations in China and 8 subpopulations in Japan and screened for the presence of double-stranded (ds) RNA using an immunoblot procedure with a monoclonal antibody specific for dsRNA. The overall incidence of dsRNA in C. parasitica was 2 and 6% in China and Japan, respectively, much lower than the 28% found previously in North American populations. Genetic relatedness of dsRNAs within and among populations in China and Japan was examined using RNA-RNA hybridizations with labeled-dsRNA probes. The majority of Chinese and Japanese dsRNAs were members of a single hybridization group, related to Cryphonectria hypovirus 1 (CHV1) from Europe, and are referred to as CHV1-type dsRNAs. No evidence was obtained for genetic differentiation between CHV1-type dsRNAs sampled in China and Japan. Five Japanese isolates contained two genetically distinct dsRNAs. The larger segments (approximately 12 kilobases [kb]) were members of the CHV1 hybridization group, while the smaller segments (approximately 3 kb) did not hybridize with any known dsRNA from C. parasitica including the 2.7-kb dsRNA from isolate NB631 from New Jersey or dsRNA from isolate RC1 from Michigan. Two small dsRNA segments (approximately 1.8 and 2 kb) from one isolate sampled from Liaoning Province in northeastern China did not hybridize with any of the dsRNA probes tested including several described dsRNAs of similar size from C. parasitica in North America. Three dsRNAs from Anhui Province, China, hybridized to Cryphonectria hypovirus 2 (CHV2)-specific probes and are thus referred to as CHV2-type dsRNAs. Sequence analysis of 1,627 base pairs of these three CHV2-type dsRNAs from Anhui revealed that they were identical to each other in the region sequenced and very closely related to CHV2-NB58, isolated from New Jersey. We speculate that CHV2-NB58 may have been introduced into North America from this part of China. This is the first record of a North American C. parasitica dsRNA that is genetically related to a dsRNA from Asia.
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spatial pattern analysis of vegetative compatibility groups in the chestnut blight fungus Cryphonectria parasitica
Botany, 1991Co-Authors: Michael G. Milgroom, W L Macdonald, M. L. DoubleAbstract:Vegetative compatibility groups were determined for 914 isolates of the chestnut blight fungus, Cryphonectria (Endothia) parasitica, collected over a 5-year period from American chestnut trees in e...
Simone Prospero - One of the best experts on this subject based on the ideXlab platform.
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Genetic and Phenotypic Characterization of Cryphonectria hypovirus 1 from Eurasian Georgia
MDPI AG, 2018Co-Authors: Daniel Rigling, Nora Borst, Carolina Cornejo, Archil Supatashvili, Simone ProsperoAbstract:Cryphonectria hypovirus 1 (CHV-1) infects the chestnut blight fungus Cryphonectria parasitica and acts as a biological control agent against this harmful tree disease. In this study, we screened the recently characterized C. parasitica population in Eurasian Georgia for the presence of CHV-1. We found 62 CHV-1 infected C. parasitica isolates (9.3%) among a total of 664 isolates sampled in 14 locations across Georgia. The prevalence of CHV-1 at the different locations ranged from 0% in the eastern part of the country to 29% in the western part. Sequencing of two specific regions of the viral genome one each in ORFA and ORFB revealed a unique CHV-1 subtype in Georgia. This subtype has a recombinant pattern combining the ORFA region from the subtype F2 and the ORFB region from subtype D. All 62 viral strains belonged to this Georgian CHV-1 subtype (subtype G). The CHV-1 subtype G strongly reduced the parasitic growth of C. parasitica isolates from Georgia, with a more severe effect on the European genepool compared to the Georgian genepool. The CHV-1 subtype detected in Georgia provides a valuable candidate for biological control applications in the Caucasus region.
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Cryphonectria parasitica the causal agent of chestnut blight invasion history population biology and disease control
Molecular Plant Pathology, 2018Co-Authors: Daniel Rigling, Simone ProsperoAbstract:Chestnut blight, caused by Cryphonectria parasitica, is a devastating disease infecting American and European chestnut trees. The pathogen is native to East Asia and was spread to other continents via infected chestnut plants. This review summarizes the current state of research on this pathogen with a special emphasis on its interaction with a hyperparasitic mycovirus that acts as a biological control agent of chestnut blight. Taxonomy: Cryphonectria parasitica (Murr.) Barr. is a Sordariomycete (ascomycete) fungus in the family Cryphonetriaceae (Order Diaporthales). Closely related species that can also be found on chestnut include Cryphonectria radicalis, Cryphonectria naterciae, and Cryphonectria japonica. Host range: Major hosts are species in the genus Castanea (Fam. Fagaceae), particularly the American chestnut (C. dentata), the European chestnut (C. sativa), the Chinese chestnut (C. mollissima), and the Japanese chestnut (C. crenata). Minor, incidental hosts include oaks (Quercus spp.), maples (Acer spp.), European hornbeam (Carpinus betulus L.), and American chinkapin (Castanea pumila). Disease symptoms: C. parasitica causes perennial necrotic lesions (so-called cankers) on the bark of stems and branches of susceptible host trees, eventually leading to wilting of the plant part distal to the infection. Chestnut blight cankers are characterized by the presence of mycelial fans and fruiting bodies of the pathogen. Below the canker the tree may react by producing epicormic shoots. Non-lethal, superficial or callusing cankers on susceptible host trees are usually associated with mycovirus-induced hypovirulence. Disease control: After the introduction of C. parasitica into a new area, eradication efforts by cutting and burning the infected plants/trees have mostly failed. In Europe, the mycovirus Cryphonectria hypovirus 1 (CHV-1) acts as a successful biological control agent of chestnut blight by causing so-called hypovirulence. CHV-1 infects C. parasitica and reduces its parasitic growth and sporulation capacity. Individual cankers can be therapeutically treated with hypovirus-infected C. parasitica strains. The hypovirus may subsequently spread to untreated cankers and become established in the C. parasitica population. Hypovirulence is present in many chestnut growing regions of Europe, either resulting naturally or after biological control treatments. In North America, disease management of chestnut blight mainly focuses on breeding with the goal to backcross the Chinese chestnut's blight resistance into the American chestnut genome. This article is protected by copyright. All rights reserved.
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Cryphonectria parasitica the causal agent of chestnut blight invasion history population biology and disease control
Molecular Plant Pathology, 2018Co-Authors: Daniel Rigling, Simone ProsperoAbstract:Chestnut blight, caused by Cryphonectria parasitica, is a devastating disease infecting American and European chestnut trees. The pathogen is native to East Asia and was spread to other continents via infected chestnut plants. This review summarizes the current state of research on this pathogen with a special emphasis on its interaction with a hyperparasitic mycovirus that acts as a biological control agent of chestnut blight. Taxonomy: Cryphonectria parasitica (Murr.) Barr. is a Sordariomycete (ascomycete) fungus in the family Cryphonetriaceae (Order Diaporthales). Closely related species that can also be found on chestnut include Cryphonectria radicalis, Cryphonectria naterciae, and Cryphonectria japonica. Host range: Major hosts are species in the genus Castanea (Fam. Fagaceae), particularly the American chestnut (C. dentata), the European chestnut (C. sativa), the Chinese chestnut (C. mollissima), and the Japanese chestnut (C. crenata). Minor, incidental hosts include oaks (Quercus spp.), maples (Acer spp.), European hornbeam (Carpinus betulus L.), and American chinkapin (Castanea pumila). Disease symptoms: C. parasitica causes perennial necrotic lesions (so-called cankers) on the bark of stems and branches of susceptible host trees, eventually leading to wilting of the plant part distal to the infection. Chestnut blight cankers are characterized by the presence of mycelial fans and fruiting bodies of the pathogen. Below the canker the tree may react by producing epicormic shoots. Non-lethal, superficial or callusing cankers on susceptible host trees are usually associated with mycovirus-induced hypovirulence. Disease control: After the introduction of C. parasitica into a new area, eradication efforts by cutting and burning the infected plants/trees have mostly failed. In Europe, the mycovirus Cryphonectria hypovirus 1 (CHV-1) acts as a successful biological control agent of chestnut blight by causing so-called hypovirulence. CHV-1 infects C. parasitica and reduces its parasitic growth and sporulation capacity. Individual cankers can be therapeutically treated with hypovirus-infected C. parasitica strains. The hypovirus may subsequently spread to untreated cankers and become established in the C. parasitica population. Hypovirulence is present in many chestnut growing regions of Europe, either resulting naturally or after biological control treatments. In North America, disease management of chestnut blight mainly focuses on breeding with the goal to backcross the Chinese chestnut's blight resistance into the American chestnut genome. This article is protected by copyright. All rights reserved.
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controlo biologico do cancro do castanheiro detecao identificacao e caracterizacao do hypovirus chv1
Revista de Ciências Agrárias, 2015Co-Authors: Eric Pereira, Daniel Rigling, Simone Prospero, Eugenia GouveiaAbstract:O cancro do castanheiro e provocado pelo fungo Cryphonectria parasitica e considerado a principal causa do declinio dos castanheiros na Europa. C. parasitica e um ascomiceta (Diaporthales) nativo do continente asiatico. A infecao do castanheiro manifesta-se pelo aparecimento de necroses extensas na casca dos ramos e troncos, que resulta na morte dos castanheiros. A hipovirulencia e um metodo seletivo de controlo biologico do Cancro do Castanheiro, trata-se de uma infecao do fungo C. parasitica com Cryphonectria hypovirus 1 (CHV1), um virus de dsRNA nao encapsulado do genero Hypovirus. O controlo biologico com estirpes hipovirulentas e considerado um metodo eficaz no controlo da doenca e promove a recuperacao dos castanheiros. A aplicacao necessita da producao em laboratorio de estirpes hipovirulentas compativeis com a estirpe virulenta presente no campo e a sua introducao na margem de cancros ativos. Neste estudo pretendeu-se detetar, identificar e caracterizar o hipovirus CHV1 com potencial para integrar programas de controlo biologico do Cancro do castanheiro em Portugal. Com a utilizacao de metodos moleculares foram identificados e caracterizados 11 hipovirus em isolados brancos de C. parasitica obtidos em cancros no nordeste de Portugal.
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controlo biologico do cancro do castanheiro detecao identificacao e caracterizacao do hypovirus chv1 biological control of chestnut blight detection identification and characterization of the hypovirus chv1
2015Co-Authors: Eric Pereira, Daniel Rigling, Simone Prospero, Eugenia GouveiaAbstract:The chestnut blight caused by the fungus Cryphonectria parasitica is considered a major cause of the decline and disappearance of chestnut trees across Europe. C. parasitica is an ascomycete fungus (Diaporthales) that is native to eastern Asia. Infection of chestnut plants with this fungus is typically associated with extensive necrosis (cankers) of the bark on stems and branches, resulting in the subsequent death of the tree. Hypovirulence is a specific method for biologi cal control of Chestnut Blight, it is an infection of C. parasitica with Cryphonectria hypovirus 1 (CHV1), a unencapsidate dsRNA virus of the genus Hypovirus. Biological control with hypovirulent strains is considered an efficient method to control the disease and improve the host plant recovery. The field application needs laboratorial production of compati ble hypovirulent strain and introduction by inoculation at the margin of active cankers. In this work it was intended to identify and characterize the hypovirus with potential ability to integrate biological control programmes against Chestnut Blight. Using molecular techniques 11 hypovirus with hypovirulence potential were identified on white isolates of C. parasitica isolated on cankers from northeast of Portugal.
Mirna Ćurković-perica - One of the best experts on this subject based on the ideXlab platform.
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Cryphonectria hypovirus 1-Induced Epigenetic Changes in Infected Phytopathogenic Fungus Cryphonectria parasitica
Microbial Ecology, 2017Co-Authors: Lucija Nuskern, Jelena Mlinarec, Zlatko Liber, Marin Ježić, Mirna Ćurković-pericaAbstract:Biotic stress caused by virus infections induces epigenetic changes in infected plants and animals, but this is the first report on methylation pattern changes in a fungus after mycovirus infection. As a model pathosystem for mycovirus-host interactions, we used Cryphonectria hypovirus 1 (CHV1) and its host fungus Cryphonectria parasitica, in which deregulation of methylation cycle enzymes upon virus infection was observed previously. Six CHV1 strains of different subtypes were transferred into three different C. parasitica isolates in order to assess the effect of different CHV1 strains and/or subtypes on global cytosine methylation level in infected fungus, using methylation-sensitive amplification polymorphism (MSAP). Infection with CHV1 affected the methylation pattern of the C. parasitica genome; it increased the number and diversity of methylated, hemi-methylated, and total MSAP markers found in infected fungal isolates compared to virus-free controls. The increase in methylation levels correlated well with the CHV1-induced reduction of fungal growth in vitro, indicating that C. parasitica genome methylation upon CHV1 infection, rather than being the defensive mechanism of the fungus, is more likely to be the virulence determinant of the virus. Furthermore, the severity of CHV1 effect on methylation levels of infected C. parasitica isolates depended mostly on individual CHV1 strains and on the combination of host and virus genomes, rather than on the virus subtype. These novel findings broaden our knowledge about CHV1 strains which could potentially be used in human-aided biocontrol of chestnut blight, a disease caused by C. parasitica in chestnut forest ecosystems and orchards.
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Cryphonectria hypovirus 1-Induced Changes of Stress Enzyme Activity in Transfected Phytopathogenic Fungus Cryphonectria parasitica
Microbial Ecology, 2017Co-Authors: Lucija Nuskern, Mirta Tkalec, Zorana Katanić, Ljiljana Krstin, Marin Ježić, Mirna Ćurković-pericaAbstract:Cryphonectria parasitica is a phytopathogenic fungus introduced from Eastern Asia to North America and to Europe, where it causes chestnut blight, a devastating disease of chestnut trees. The disease can be biologically controlled utilising the mycovirus Cryphonectria hypovirus 1 (CHV1), which changes the physiology of the host, reducing its virulence towards chestnut. We measured fungal growth in vitro and activities of glutathione S-transferase, catalase and superoxide dismutase, enzymes involved in oxidative stress response, to elucidate the effects of CHV1 infection on the host. Six CHV1 strains of different subtypes and three fungal isolates were used in different combinations to better represent natural conditions, where higher genetic diversity of both fungus and virus is expected. The infection with different CHV1 strains decreased in vitro growth rate of infected fungal isolates and increased activity of their stress enzymes in most of the studied fungus/virus combinations, indicating increased oxidative stress following CHV1 infection. All our field CHV1 strains belong to the Italian subtype, but while strain M56-1 had equal or even stronger effect on its fungal host than prototypic strain EP713 of French subtype F1, strain B11 had no effect. Thus, the severity of the observed effects depended on a particular virus strain, fungal isolate, and the combination of the two, rather than solely on the virus subtype. Since previous research showed discordance between accumulation of mRNA and stress-related proteins in CHV1 infected C. parasitica, our results emphasise the importance of enzymes’ activity measurements as an invaluable extension of transcriptomic and proteomic analyses.
Lucija Nuskern - One of the best experts on this subject based on the ideXlab platform.
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Cryphonectria hypovirus 1-Induced Epigenetic Changes in Infected Phytopathogenic Fungus Cryphonectria parasitica
Microbial Ecology, 2017Co-Authors: Lucija Nuskern, Jelena Mlinarec, Zlatko Liber, Marin Ježić, Mirna Ćurković-pericaAbstract:Biotic stress caused by virus infections induces epigenetic changes in infected plants and animals, but this is the first report on methylation pattern changes in a fungus after mycovirus infection. As a model pathosystem for mycovirus-host interactions, we used Cryphonectria hypovirus 1 (CHV1) and its host fungus Cryphonectria parasitica, in which deregulation of methylation cycle enzymes upon virus infection was observed previously. Six CHV1 strains of different subtypes were transferred into three different C. parasitica isolates in order to assess the effect of different CHV1 strains and/or subtypes on global cytosine methylation level in infected fungus, using methylation-sensitive amplification polymorphism (MSAP). Infection with CHV1 affected the methylation pattern of the C. parasitica genome; it increased the number and diversity of methylated, hemi-methylated, and total MSAP markers found in infected fungal isolates compared to virus-free controls. The increase in methylation levels correlated well with the CHV1-induced reduction of fungal growth in vitro, indicating that C. parasitica genome methylation upon CHV1 infection, rather than being the defensive mechanism of the fungus, is more likely to be the virulence determinant of the virus. Furthermore, the severity of CHV1 effect on methylation levels of infected C. parasitica isolates depended mostly on individual CHV1 strains and on the combination of host and virus genomes, rather than on the virus subtype. These novel findings broaden our knowledge about CHV1 strains which could potentially be used in human-aided biocontrol of chestnut blight, a disease caused by C. parasitica in chestnut forest ecosystems and orchards.
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Cryphonectria hypovirus 1-Induced Changes of Stress Enzyme Activity in Transfected Phytopathogenic Fungus Cryphonectria parasitica
Microbial Ecology, 2017Co-Authors: Lucija Nuskern, Mirta Tkalec, Zorana Katanić, Ljiljana Krstin, Marin Ježić, Mirna Ćurković-pericaAbstract:Cryphonectria parasitica is a phytopathogenic fungus introduced from Eastern Asia to North America and to Europe, where it causes chestnut blight, a devastating disease of chestnut trees. The disease can be biologically controlled utilising the mycovirus Cryphonectria hypovirus 1 (CHV1), which changes the physiology of the host, reducing its virulence towards chestnut. We measured fungal growth in vitro and activities of glutathione S-transferase, catalase and superoxide dismutase, enzymes involved in oxidative stress response, to elucidate the effects of CHV1 infection on the host. Six CHV1 strains of different subtypes and three fungal isolates were used in different combinations to better represent natural conditions, where higher genetic diversity of both fungus and virus is expected. The infection with different CHV1 strains decreased in vitro growth rate of infected fungal isolates and increased activity of their stress enzymes in most of the studied fungus/virus combinations, indicating increased oxidative stress following CHV1 infection. All our field CHV1 strains belong to the Italian subtype, but while strain M56-1 had equal or even stronger effect on its fungal host than prototypic strain EP713 of French subtype F1, strain B11 had no effect. Thus, the severity of the observed effects depended on a particular virus strain, fungal isolate, and the combination of the two, rather than solely on the virus subtype. Since previous research showed discordance between accumulation of mRNA and stress-related proteins in CHV1 infected C. parasitica, our results emphasise the importance of enzymes’ activity measurements as an invaluable extension of transcriptomic and proteomic analyses.
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biokemijske i epigeneticke promjene u gljive Cryphonectria parasitica murr barr zaražene virusom Cryphonectria hypovirus 1
2017Co-Authors: Lucija NuskernAbstract:S ciljem određivanja ucinka infekcije virusom Cryphonectria hypovirus 1 (CHV1) na intenzitet promjena u metabolizmu gljive Cryphonectria p