Inactivation of the Plant Pathogen Pythium ultimum by Plasma-Processed Air (PPA)
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[1] Asad Ali,et al. Use of metalaxyl against some soil plant pathogens of the class Peronosporomycetes – A review and two case studies , 2022, Plant Protection Science.
[2] M. Mozetič,et al. Cold Plasma Affects Germination and Fungal Community Structure of Buckwheat Seeds , 2021, Plants.
[3] Henrike Brust,et al. Efficiency of plasma‐processed air for biological decontamination of crop seeds on the premise of unimpaired seed germination , 2020 .
[4] Gyungsoon Park,et al. Plant Disease Control by Non-Thermal Atmospheric-Pressure Plasma , 2020, Frontiers in Plant Science.
[5] D. Graves,et al. Plasma Activated Organic Fertilizer , 2018, Plasma Chemistry and Plasma Processing.
[6] Eun Ha Choi,et al. Biological and medical applications of plasma-activated media, water and solutions , 2018, Biological chemistry.
[7] S. Kryštofová,et al. Cold plasma treatment triggers antioxidative defense system and induces changes in hyphal surface and subcellular structures of Aspergillus flavus , 2018, Applied Microbiology and Biotechnology.
[8] S. Echeverrigaray,et al. Necrotic and apoptotic cell death induced by Captan on Saccharomyces cerevisiae , 2017, World journal of microbiology & biotechnology.
[9] J. Foster,et al. Plasma–liquid interactions: a review and roadmap , 2016 .
[10] Hana Souskova,et al. Nonthermal plasma--A tool for decontamination and disinfection. , 2015, Biotechnology advances.
[11] E. Choi,et al. Non-Thermal Plasma Treatment Diminishes Fungal Viability and Up-Regulates Resistance Genes in a Plant Host , 2014, PloS one.
[12] K. Weltmann,et al. Inactivation of Vegetative Microorganisms and Bacillus atrophaeus Endospores by Reactive Nitrogen Species (RNS) , 2014 .
[13] Oliver Schlüter,et al. Indirect plasma treatment of fresh pork: Decontamination efficiency and effects on quality attributes , 2012 .
[14] P. Okubara,et al. Suppression of Rhizoctonia and Pythium root rot of wheat by new strains of Pseudomonas , 2012 .
[15] Yunlong Yu,et al. Accumulation of chlorothalonil successively applied to soil and its effect on microbial activity in soil. , 2012, Ecotoxicology and environmental safety.
[16] David B. Graves,et al. The emerging role of reactive oxygen and nitrogen species in redox biology and some implications for plasma applications to medicine and biology , 2012 .
[17] K. Weltmann,et al. Decontamination of Microbiologically Contaminated Specimen by Direct and Indirect Plasma Treatment , 2012 .
[18] I. Eleftherohorinos,et al. Pesticide Exposure, Safety Issues, and Risk Assessment Indicators , 2011, International journal of environmental research and public health.
[19] Martin Polak,et al. Low temperature atmospheric pressure plasma sources for microbial decontamination , 2011 .
[20] G. Avramidis,et al. Fungicidal effects of an atmospheric pressure gas discharge and degradation mechanisms , 2010 .
[21] T. von Woedtke,et al. PLASMOSE - antimicrobial effects of modular atmospheric plasma sources , 2008, GMS Krankenhaushygiene interdisziplinar.
[22] M Moreau,et al. Non-thermal plasma technologies: new tools for bio-decontamination. , 2008, Biotechnology advances.
[23] A. Mizuno,et al. States of Biological Components in Bacteria and Bacteriophages during Inactivation by Atmospheric Dielectric Barrier Discharges , 2008 .
[24] A. Fridman,et al. Rapid Inactivation of Airborne Bacteria Using Atmospheric Pressure Dielectric Barrier Grating Discharge , 2007, IEEE Transactions on Plasma Science.
[25] P. Paul,et al. Characterization of Pythium spp. Associated with Corn and Soybean Seed and Seedling Disease in Ohio. , 2007, Plant disease.
[26] Michael G. Kong,et al. Protein destruction by atmospheric pressure glow discharges , 2007 .
[27] Mounir Laroussi,et al. Low Temperature Plasma-Based Sterilization: Overview and State-of-the-Art , 2005 .
[28] In-Seop Lee,et al. Sterilization using a microwave-induced argon plasma system at atmospheric pressure , 2003 .
[29] T. Paulitz,et al. Composition and distribution of pythium communities in wheat fields in eastern washington state. , 2003, Phytopathology.
[30] Mounir Laroussi,et al. Plasma interaction with microbes , 2003 .
[31] P. West,et al. Advances in research on oomycete root pathogens , 2003 .
[32] R. Smiley,et al. Insights into the prevalence and management of soilborne cereal pathogens under direct seeding in the Pacific Northwest, U.S.A. , 2002 .
[33] W. Schillinger,et al. Rhizoctonia root rot and take-all of wheat in diverse direct-seed spring cropping systems , 2002 .
[34] Farooq Azam,et al. A note on the possible electrostatic disruption of bacteria , 2000 .
[35] J. Roth,et al. An overview of research using the one atmosphere uniform glow discharge plasma (OAUGDP) for sterilization of surfaces and materials , 2000 .
[36] F. Martin,et al. SOILBORNE PLANT DISEASES CAUSED BY PYTHIUM SPP: ECOLOGY, EPIDEMIOLOGY, AND PROSPECTS FOR BIOLOGICAL CONTROL , 1999 .
[37] O. Stefaniak,et al. Influence of seed dressing on rhizosphere microflora of legumes. II: Response of some physiological groups , 1993 .
[38] O. Stefaniak,et al. Influence of seed dressing on rhizosphere microflora of legumes. I: Biotic relations , 1993 .
[39] D. Kelly,et al. Azole fungicides - understanding resistance mechanisms in agricultural fungal pathogens. , 2015, Pest management science.
[40] K. Weltmann,et al. Inactivation of Microorganisms in Tyvek ® Packaging by Microwave Plasma Processed Air , 2015 .
[41] R. Larkin,et al. Effects of infection by Pythium spp. on root system morphology of alfalfa seedlings , 1995 .
[42] M. Coffey,et al. Systemic Fungicides and the Control of Oomycetes , 1986 .
[43] R. Cook. Fusarium foot rot of wheat and its control in the Pacific Northwest. , 1980 .
[44] G. Papavizas. Fungistatic Activity of Propyl-N-(γ-dimethylaminopropyl) carbamate on Pythium spp. and its Reversal by Sterols , 1978 .