Publications for:
pest = Parastagonospora nodorum
crop = Wheat (Triticum)
for the years 2013-2023 (descending)
found 62 publications:
2023
Genotype and environment interaction study shows fungal diseases and heat stress are detrimental to spring wheat production in Sweden
PLoS ONE (2023) 17 (5 - e0285565)
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pestinfo wiki2022
Comparison of models for leaf blotch disease management in wheat based on historical yield and weather data in the Nordic-Baltic region
Agronomy for Sustainable Development (2022) 42 (3 - 42)
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pestinfo wikiAnalysis of few-shot techniques for fungal plant disease classification and evaluation of clustering capabilities over real datasets
Frontiers in Plant Science (2022) 2022 (13 - 813237)
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pestinfo wiki2021
Characterization of effector–target interactions in necrotrophic pathosystems reveals trends and variation in host manipulation
Annual Review of Phytopathology (2021) 59, 77-98
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pestinfo wiki Chromosome-level genome assembly and manually-curated proteome of model necrotroph
Parastagonospora nodorum Sn15 reveals a genome-wide trove of candidate effector homologs, and redundancy of virulence-related functions within an accessory chromosome
BMC Genomics (2021) 22 (382)
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pestinfo wiki Prediction of leaf bloch disease risk in Norwegian spring wheat based on weather factors and host phenology
European Journal of Plant Pathology (2021) 160 (1), 199-213
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pestinfo wikiHidden in plain sight: a molecular field survey of three wheat leaf blotch fungal diseases in North-Western Europe shows co-infection is widespread
European Journal of Plant Pathology (2021) 160 (4), 949-962
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pestinfo wikiInteraction between the bird cherry-oat aphid (
Rhopalosiphum padi) and Stagonospora Nodorum blotch (
Parastagonospora nodorum) on wheat
Insects (2021) 12 (1 - 35)
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pestinfo wikiGenome-scale phylogenies reveal relationships among
Parastagonospora species infecting domesticated and wild grasses
Persoonia (2021) 46, 116-128
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pestinfo wiki Occurrence of quinone outside inhibitor resistance in Virginia populations of
Parastagonospora nodorum infecting wheat
Plant Disease (2021) 105 (6 - 2288)
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pestinfo wiki Effect of varietal resistance on the yield loss function of wheat to nodorum blotch
Plant Pathology (2021) 70 (3), 745-759
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pestinfo wiki A protein kinase–major sperm protein gene hijacked by a necrotrophic fungal pathogen triggers disease susceptibility in wheat
The Plant Journal (2021) 106 (3), 720-732
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pestinfo wikiIdentification and cross-validation of genetic loci conferring resistance to Septoria nodorum blotch using a German multi-founder winter wheat population
Theoretical and Applied Genetics (2021) 134 (1), 125-142
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pestinfo wiki2020
Co-infection of wheat by
Pyrenophora tritici-repentis and
Parastagonospora nodorum in the wheatbelt of Western Australia
Crop and Pasture Science (2020) 71 (2), 119-127
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pestinfo wiki Validation of risk models for control of leaf blotch diseases in wheat in the Nordic and Baltic countries
European Journal of Plant Pathology (2020) 157 (3), 599-613
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pestinfo wikiErkenntnisse und Perspektiven eines 23-jährigen Dauerfeldversuches zum integrierten Pflanzenschutz gegen pilzliche Schaderreger im Winterweizen
(Findings and perspectives of a 23-year long-term field trial on integrated plant protection against fungal pathogens in winter wheat)
Journal für Kulturpflanzen - Journal of Cultivated Plants (2020) 72 (7), 265-278
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pestinfo wikiParastagonospora nodorum and related species in Western Canada: Genetic variability and effector genes
Phytopathology (2020) 110 (12), 1946-1958
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pestinfo wikiSnToxA,
SnTox1, and
SnTox3 originated in
Parastagonospora nodorum in the Fertile Crescent
Plant Pathology (2020) 69 (8), 1482-1491
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pestinfo wiki Genetic mapping using a wheat multi-founder population reveals a locus on chromosome 2A controlling resistance to both leaf and glume blotch caused by the necrotrophic fungal pathogen
Parastagonospora nodorumTheoretical and Applied Genetics (2020) 133 (3), 785-808
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pestinfo wiki2019
Mining and genomic characterization of resistance to tan spot, Stagonospora nodorum blotch (SNB), and Fusarium head blight in Watkins core collection of wheat landraces
BMC Plant Biology (2019) 19 (480)
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pestinfo wiki Quantitative trait loci analysis of adult plant resistance to
Parastagonospora nodorum blotch in winter wheat cv. Liwilla (
Triticum aestivum L.)
European Journal of Plant Pathology (2019) 155 (3), 1001-1016
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pestinfo wiki Local adaptation drives the diversification of effectors in the fungal wheat pathogen
Parastagonospora nodorum in the United States
PLoS Genetics (2019) 15 (10 - e1008223)
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pestinfo wikiChromosome engineering-mediated introgression and molecular mapping of novel
Aegilops speltoides-derived resistance genes for tan spot and Septoria nodorum blotch diseases in wheat
Theoretical and Applied Genetics (2019) 132 (9), 2605-2614
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pestinfo wiki2018
Study of the protective activity of chitosan hydrolyzate against Septoria leaf blotch of wheat and brown spot of tobacco
Applied Biochemistry and Microbiology (2018) 54 (1), 71-75
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pestinfo wiki Effects of three
Parastagonospora nodorum necrotrophic effectors on spring wheat under Norwegian field conditions
Crop Science (2018) 58 (1), 159-168
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pestinfo wikiThe global regulator of pathogenesis PnCon7 positively regulates
Tox3 effector gene expression through direct interaction in the wheat pathogen
Parastagonospora nodorumMolecular Microbiology (2018) 109 (1), 78-90
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pestinfo wiki Understanding yield loss and pathogen biology to improve disease management: Septoria nodorum blotch - a case study in wheat
Plant Disease (2018) 102 (4), 696-707
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pestinfo wikiNovel sources of resistance to Septoria nodorum blotch in the Vavilov wheat collection identified by genome-wide association studies
Theoretical and Applied Genetics (2018) 131 (6), 1223-1238
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pestinfo wiki2017
Activities of hydrolases and their protein inhibitors in wheat leaves treated with salicylic and jasmonic acids and infected with
Septoria nodorum strains differing in aggressiveness
Applied Biochemistry and Microbiology (2017) 53 (5), 562-567
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pestinfo wikiFunctional genomics-guided discovery of a light-activated phytotoxin in the wheat pathogen
Parastagonospora nodorum via pathway activation
Environmental Microbiology (2017) 19 (5), 1975-1986
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pestinfo wikiA functionally conserved Zn<sub>2</sub>Cys<sub>6</sub> binuclear cluster transcription factor class regulates necrotrophic effector gene expression and host-specific virulence of two major Pleosporales fungal pathogens of wheat
Molecular Plant Pathology (2017) 18 (3), 420-434
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pestinfo wikiA model for predicting onset of Stagonospora nodorum blotch in winter wheat based on preplanting and weather factors
Phytopathology (2017) 107 (6), 635-644
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pestinfo wikiMapping of SnTox3–
Snn3 as a major determinant of field susceptibility to Septoria nodorum leaf blotch in the SHA3/CBRD × Naxos population
Theoretical and Applied Genetics (2017) 130 (7), 1361-1374
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pestinfo wiki2016
Assessing effects of climatic change, region and agronomic practices on leaf spotting of bread and durum wheat in the western Canadian prairies, from 2001 to 2012
Agronomy Journal (2016) 108 (3), 1180-1195
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pestinfo wikiSignal molecules involved in the regulation of the wheat defense response to
Septoria nodorum infection
Applied Biochemistry and Microbiology (2016) 52 (5), 541-546
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pestinfo wikiIdentification of new sources of resistance to fungal leaf and head blight diseases of wheat
European Journal of Plant Pathology (2016) 145 (2), 305-320
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pestinfo wikiFungal communities in organically grown winter wheat affected by plant organ and development stage
European Journal of Plant Pathology (2016) 146 (2), 401-417
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pestinfo wikiGenomic regions conferring resistance to multiple fungal pathogens in synthetic hexaploid wheat
Molecular Breeding (2016) 36 (127)
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pestinfo wikiDifferential effector gene expression underpins epistasis in a plant fungal disease
The Plant Journal (2016) 87 (4), 343-354
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pestinfo wiki2015
An
in planta-expressed polyketide synthase produces (
R)-mellein in the wheat pathogen
Parastagonospora nodorumApplied and Environmental Microbiology (2015) 81 (1), 177-186
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pestinfo wikiThe effect of salicylic and jasmonic acids on the activity and range of protective proteins during the infection of wheat by the septoriosis pathogen
Biology Bulletin (2015) 42 (1), 27-33
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pestinfo wikiHyperspectral and molecular analysis of
Stagonospora nodorum blotch disease in durum wheat
European Journal of Plant Pathology (2015) 141 (4), 689-702
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pestinfo wikiDurum wheat infected by
Stagonospora nodorum: Survey on electrophoretic protein pattern modifications
Journal of Plant Pathology (2015) 97 (2), 315-319
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pestinfo wikiIdentification and characterization of the SnTox6-Snn6 interaction in the
Parastagonospora nodorum–wheat pathosystem
Molecular Plant-Microbe Interactions (2015) 28 (5), 615-625
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pestinfo wikiQuantifying the effects of wheat residue on severity of Stagonospora nodorum blotch and yield in winter wheat
Phytopathology (2015) 105 (11), 1417-1426
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pestinfo wikiEvaluation and association mapping of resistance to tan spot and Stagonospora Nodorum blotch in adapted winter wheat germplasm
Plant Disease (2015) 99 (10), 1333-1341
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pestinfo wiki2014
Weather, disease, and wheat breeding effects on Kansas wheat varietal yields, 1985 to 2011
Agronomy Journal (2014) 106 (1), 227-235
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pestinfo wikiComparison of the transcriptional activity of protective protein genes in different wheat cultivars infected with
Parastagonospora nodorum Berk
Applied Biochemistry and Microbiology (2014) 50 (6), 664-667
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pestinfo wikiLeaf spotting reaction of spring common, durum and spelt wheat, and Kamut under organic management in western Canada
Canadian Journal of Plant Science (2014) 94 (5), 929-935
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pestinfo wikiSensitivity to three
Parastagonospora nodorum necrotrophic effectors in current Australian wheat cultivars and the presence of further fungal effectors
Crop and Pasture Science (2014) 65 (2), 150-158
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pestinfo wikiThe population dynamics of disease on short and long time-scales
European Journal of Plant Pathology (2014) 138 (3), 487-497
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pestinfo wikiA dimeric PR-1-type pathogenesis-related protein interacts with ToxA and potentially mediates ToxA-induced necrosis in sensitive wheat
Molecular Plant Pathology (2014) 15 (7), 650-663
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pestinfo wikiA genome-wide survey of the secondary metabolite biosynthesis genes in the wheat pathogen
Parastagonospora nodorumMycology (2014) 5 (3), 192-206
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pestinfo wikiGenes conferring sensitivity to
Stagonospora nodorum necrotrophic effectors in Stagonospora nodorum blotch-susceptible U.S. wheat cultivars
Plant Disease (2014) 98 (6), 746-753
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pestinfo wikiAbsence of detectable yield penalty associated with insensitivity to Pleosporales necrotrophic effectors in wheat grown in the West Australian wheat belt
Plant Pathology (2014) 63 (5), 1027-1032
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pestinfo wikiGenome-wide association study reveals novel quantitative trait loci associated with resistance to multiple leaf spot diseases of spring wheat
PLoS ONE (2014) 9 (9 - e108179)
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pestinfo wikiMolecular mapping of adult plant resistance to
Parastagonospora nodorum leaf blotch in bread wheat lines ‘Shanghai-3/Catbird’ and ‘Naxos’
Theoretical and Applied Genetics (2014) 127 (12), 2635-2644
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pestinfo wikiHigh-resolution analysis of a QTL for resistance to Stagonospora nodorum glume blotch in wheat reveals presence of two distinct resistance loci in the target interval
Theoretical and Applied Genetics (2014) 127 (3), 573-586
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pestinfo wiki2013
Relationship between the aggressiveness and catalase activity of
Septoria nodorum Berk. in wheat
Biology Bulletin (2013) 40 (5), 441-446
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pestinfo wikiSeedling resistance to Stagonospora nodorum blotch in wheat genotypes
Czech Journal of Genetics and Plant-Breeding (2013) 49 (2), 77-85
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pestinfo wikiGlobal diversity and distribution of three necrotrophic effectors in
Phaeosphaeria nodorum and related species
New Phytologist (2013) 199 (1), 241-251
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pestinfo wikiSulphate and sulphurous acid alter the relative susceptibility of wheat to
Phaeosphaeria nodorum and
Mycosphaerella graminicolaPlant Pathology (2013) 62 (6), 1342-1349
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