Kingdom | Species | Biological Function | Origin/Habitat | Reference |
---|
Prokaryota | Escherichia Coli | NA | NA | Fitzgerald et al. 2021 |
Prokaryota | Pseudomonas Aeruginosa | NA | NA | Fitzgerald et al. 2021 |
Prokaryota | Pseudomonas Aeruginosa | NA | NA | Bean et al. 2012 |
Eukaryota | Aspergillus Fumigatus | NA | NA | Neerincx et al. 2016 |
Prokaryota | Klebsiella Pneumoniae | NA | NA | Zechman et al. 1986 |
Prokaryota | Pseudomonas Aeruginosa | NA | NA | Zechman et al. 1986 |
Prokaryota | Pseudomonas Aeruginosa | NA | NA | NA |
Prokaryota | Pseudomonas Putida | NA | NA | NA |
Prokaryota | Stenotrophomonas Maltophilia | NA | NA | NA |
Prokaryota | Escherichia Coli | NA | NA | Jünger et al. 2012 |
Prokaryota | Proteus Mirabilis | NA | NA | Jünger et al. 2012 |
Prokaryota | Serratia Marcescens | NA | NA | Jünger et al. 2012 |
Prokaryota | Streptococcus Agalactiae | NA | NA | Jünger et al. 2012 |
Eukaryota | Pythium Oligandrum | Strong inhibition of growth of plant pathogen Pythium myriotylum; | Pythium oligandrum GAQ1 strain was isolated from soil from a field where infected ginger was growing in Laiwu district, Jinan City, Shandong Province, China. China General Microbiological Culture Collection Center (CGMCC) deposit number No. 17470. | Sheikh et al. 2023 |
Prokaryota | Corynebacterium Accolens | | clinical isolate | Lemfack et al. 2016 |
Prokaryota | Corynebacterium Jeikeium | | clinical isolate | Lemfack et al. 2016 |
Prokaryota | Corynebacterium Minutissimum | | clinical isolate,trunk of adult female | Lemfack et al. 2016 |
Prokaryota | Corynebacterium Striatum | | clinical isolate | Lemfack et al. 2016 |
Prokaryota | Staphylococcus Epidermidis | | NA | Lemfack et al. 2016 |
Prokaryota | Staphylococcus Epidermidis | | clinical isolate,nose | Lemfack et al. 2016 |
Prokaryota | Staphylococcus Epidermidis | | clinical isolate,catheter | Lemfack et al. 2016 |
Prokaryota | Staphylococcus Haemolyticus | | clinical isolate,human skin | Lemfack et al. 2016 |
Prokaryota | Staphylococcus Saccharolyticus | | clinical isolate | Lemfack et al. 2016 |
Prokaryota | Staphylococcus Schleiferi | | clinical isolate | Lemfack et al. 2016 |
Prokaryota | Staphylococcus Warneri | | clinical isolate,human skin | Lemfack et al. 2016 |
Prokaryota | Escherichia Coli | | China Center of Industrial culture Collection, China General Microbiological Culture Collection Center | Chen et al. 2017 |
Prokaryota | Salmonella Enterica | | China Center of Industrial culture Collection, China General Microbiological Culture Collection Center | Chen et al. 2017 |
Prokaryota | Shigella Flexneri | | China Center of Industrial culture Collection, China General Microbiological Culture Collection Center | Chen et al. 2017 |
Prokaryota | Bacillus Sp. | | KX395632.1 | Fincheira et al. 2017 |
Prokaryota | Pseudomonas Aeruginosa | | NA | Timm et al. 2018 |
Prokaryota | Shigella Sonnei | | China Center of Industrial Culture collection | Wang et al. 2018 |
Prokaryota | Staphylococcus Aureus | | China Center of Industrial Culture collection | Wang et al. 2018 |
Prokaryota | Vibrio Parahaemolyticus | | China Center of Industrial Culture collection | Wang et al. 2018 |
Prokaryota | Bacillus Velezensis | toxic effects on fungal mycelial growth | maize seed | Massawe et al. 2018 |
Prokaryota | Bacillus Sp. | antifungal activity against Fusarium solani | Rhizosphere soil of avocado | Guevara-Avendaño et al. 2019 |
Prokaryota | Bacillus Amyloliquefaciens | Inhibition of fusarium oxysporum f.sp. Niveum | rhizosphere soils of watermelon plants | Wu et al. 2019 |
Prokaryota | Pseudomonas Sp. | antifungal activity against Thielaviopsis ethacetica mycelial growth | Brazilian Biorenewables National Laboratory – LNBR/CNPEM Microorganism Collection, Campinas, SP; isolatedfrom soil and roots of highly productive sugarcane-producing regions; Brazil | Freitas et al. 2022 |
Prokaryota | Serratia Fonticola | stimulate growth of Solanum tuberosum | isolate from Irish potato soils | Heenan-Daly et al. 2021 |
Prokaryota | Streptomyces Salmonis | control of postharvest anthracnose disease of chili caused by Colletotrichum gloeosporioides PSU-03 | Phitsanulok Seed Research and Development Center, Department of Agriculture, Ministry of Agriculture and Cooperatives, Thailan | Boukaew et al. 2021 |
Eukaryota | Candida Albicans | | ATCC MYA-2876, American Type Culture Collection | Costa et al. 2020 |
Eukaryota | Candida Glabrata | | ATCC 90030, American Type Culture Collection | Costa et al. 2020 |
Eukaryota | Candida Tropicalis | | ATCC 750, American Type Culture Collection | Costa et al. 2020 |
Prokaryota | Pseudomonas Aeruginosa | | Leibnitz Institute DSMZ-German Collection of Microorganisms and Cell Cultures GmbH | Fitzgerald et al. 2020 |
Prokaryota | Escherichia Coli | | Leibnitz Institute DSMZ-German Collection of Microorganisms and Cell Cultures GmbH | Fitzgerald et al. 2020 |
Prokaryota | Stenotrophomonas Maltophilia | antifungal effect on the growth of Alternaria alternata, Corynespora cassiicola and Stemphylium lycopersici (pathogens of tomato plants) | shoots of tomato plants (Elpida F1, Enza Zaden) | López et al. 2021 |
Prokaryota | Microbacterium Paraoxydans | antifungal effect on the growth of Alternaria alternata, Corynespora cassiicola and Stemphylium lycopersici (pathogens of tomato plants) | leaves of tomato plants (Elpida F1, Enza Zaden) with symptoms of Gray leaf spot | López et al. 2021 |
Prokaryota | Pseudomonas Mediterranea | antifungal effect on the growth of Alternaria alternata, Corynespora cassiicola and Stemphylium lycopersici (pathogens of tomato plants) | roots of tomato plants (Elpida F1, Enza Zaden) with symptoms of Gray leaf spot | López et al. 2021 |
Prokaryota | Bacillus Sp. | antifungal effect on the growth of Alternaria alternata, Corynespora cassiicola and Stemphylium lycopersici (pathogens of tomato plants) | NA | López et al. 2021 |
Prokaryota | Bacillus Velezensis | inhibite the growth of Botrytis cinerea VG1, Monilinia fructicola VG 104, Monilinia laxa VG 105, Penicillium digitatum VG 20, Penicillium expansum CECT 20140, Penicillium italicum VG 114 | NA | Calvo et al. 2020 |
Prokaryota | Rahnella Aquatilis | | isolate from the rhizosphere soil of a 28-year-old Pinus massoniana in Nanning, Guangxi; stored in the typical Culture Preservation Center of China | Kong et al. 2020 |
Eukaryota | Trichoderma Asperellum | reduce downy mildew severity on Vitis vinifera (grapevine plants) | Cotxarrera et al., 2002 | Lazazzara et al. 2021 |
Eukaryota | Trichoderma Atroviride | reduce downy mildew severity on Vitis vinifera (grapevine plants) | Pertot et al., 2008 | Lazazzara et al. 2021 |
Eukaryota | Trichoderma Harzianum | reduce downy mildew severity on Vitis vinifera (grapevine plants) | Eladet al., 1997 | Lazazzara et al. 2021 |
Prokaryota | Staphylococcus Aureus | | American Type Culture Collection | Jenkins and Bean 2020 |
Prokaryota | Bacillus Velezensis | | NA | Riu et al. 2022 |
Prokaryota | Escherichia Coli | | Swedish Institute for Communicable Disease Control (SMI), Stockholm, Sweden | Sousa et al. 2023 |
Prokaryota | Burkholderia Pyrrocinia | promote aerial and root growth in Arabidopsis thaliana seedlings | Rhizosphere soil samples from roots of maize (Zea mays L.) grown in Gongju, South Korea | Luo et al. 2022 |
Prokaryota | Serratia Plymuthica | n/a | NA | Weise et al. 2014 |
Prokaryota | Serratia Proteamaculans | n/a | NA | Weise et al. 2014 |
Prokaryota | Pseudomonas Fluorescens | n/a | NA | Fernando et al. 2005 |
Prokaryota | Pseudomonas Corrugata | n/a | NA | Fernando et al. 2005 |
Prokaryota | Pseudomonas Chlororaphis | n/a | NA | Fernando et al. 2005 |
Prokaryota | Pseudomonas Aurantiaca | n/a | NA | Fernando et al. 2005 |
Prokaryota | Bacillus Simplex | Reduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus. | NA | Gu et al. 2007 |
Prokaryota | Bacillus Subtilis | Reduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus. | NA | Gu et al. 2007 |
Prokaryota | Bacillus Weihenstephanensis | Reduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus. | NA | Gu et al. 2007 |
Prokaryota | Microbacterium Oxydans | Reduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus. | NA | Gu et al. 2007 |
Prokaryota | Stenotrophomonas Maltophilia | Reduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus. | NA | Gu et al. 2007 |
Prokaryota | Streptomyces Lateritius | Reduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus. | NA | Gu et al. 2007 |
Prokaryota | Serratia Marcescens | Reduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus. | NA | Gu et al. 2007 |
Prokaryota | Serratia Sp. | n/a | NA | Bruce et al. 2004 |
Prokaryota | Serratia Odorifera | n/a | NA | Weise et al. 2014 |
Prokaryota | Serratia Marcescens | n/a | NA | Weise et al. 2014 |
Eukaryota | Tuber Aestivum | n/a | Agricultural Centre of Castilla and León Community (Monasterio de la Santa Espina, Valladolid, Spain) and Navaleno (Soria, Spain). | Diaz et al. 2003 |
Eukaryota | Tuber Melanosporum | n/a | Agricultural Centre of Castilla and León Community (Monasterio de la Santa Espina, Valladolid, Spain) and Navaleno (Soria, Spain). | Diaz et al. 2003 |
Prokaryota | Burkholderia Ambifaria | n/a | Burkholderia ambifaria LMG 17828 from root, LMG 19182 from rhizosphere | Groenhagen et al. 2013 |
Prokaryota | Burkholderia Andropogonis | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Caribensis | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Caryophylli | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Cepacia | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Fungorum | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Gladioli | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Glathei | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Glumae | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Graminis | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Hospita | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Lata | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Phenazinium | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Phenoliruptrix | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Phytofirmans | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Pyrrocinia | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Terricola | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Tropica | n/a | NA | Blom et al. 2011 |
Prokaryota | Burkholderia Xenovorans | n/a | NA | Blom et al. 2011 |
Prokaryota | Chromobacterium Violaceum | n/a | NA | Blom et al. 2011 |
Prokaryota | Escherichia Coli | n/a | NA | Blom et al. 2011 |
Prokaryota | Pandoraea Norimbergensis | n/a | NA | Blom et al. 2011 |
Prokaryota | Pseudomonas Fluorescens | n/a | NA | Blom et al. 2011 |
Prokaryota | Pseudomonas Putida | n/a | NA | Blom et al. 2011 |
Prokaryota | Serratia Entomophila | n/a | NA | Blom et al. 2011 |
Prokaryota | Serratia Marcescens | n/a | NA | Blom et al. 2011 |
Prokaryota | Serratia Plymuthica | n/a | NA | Blom et al. 2011 |
Prokaryota | Serratia Proteamaculans | n/a | NA | Blom et al. 2011 |
Prokaryota | Stenotrophomonas Rhizophila | n/a | NA | Blom et al. 2011 |
Prokaryota | Escherichia Coli | n/a | NA | Elgaali et al. 2002 |
Prokaryota | Klebsiella Pneumoniae | n/a | NA | Elgaali et al. 2002 |
Eukaryota | Trichoderma Atroviride | n/a | NA | Stoppacher et al. 2010 |
Prokaryota | Shigella Sonnei | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Citrobacter Freundii | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Enterobacter Aerogenes | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Enterobacter Cloacae | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Escherichia Coli | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Salmonella Paratyphi | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Pseudomonas Fluorescens | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Shewanella Putrefaciens | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Bacillus Cereus | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Bacillus Polymyxa | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Enterococcus Durans | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Enterococcus Faecium | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Lactobacillus Lactis | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Leuconostoc Mesenteroides | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Listeria Monocytogenes | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Streptococcus Agalactiae | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Prokaryota | Streptococcus Thermophilus | | American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology Laboratory | Elgaali et al. 2002 |
Eukaryota | Trichoderma Virens | | NA | Crutcher et al. 2013 |
Eukaryota | Trichoderma Reesei | | NA | Crutcher et al. 2013 |
Eukaryota | Fusarium Solani | | NA | Takeuchi et al. 2012 |
Eukaryota | Aspergillus Sp. | | NA | Takeuchi et al. 2012 |
Eukaryota | Penicillium Sp. | | NA | Takeuchi et al. 2012 |
Prokaryota | Pseudomonas Tolaasii | na | na | Lo Cantore et al. 2015 |
Prokaryota | Pseudomonas Brassicacearum | reduces mycelium growth and sclerotia germination of Sclerotinia sclerotiorum USB-F593; lyses red blood cells | rhizosphere of bean plants, southern Italy | Giorgio et al. 2015 |
Prokaryota | Pseudomonas Putida | reduces mycelium growth and sclerotia germination of Sclerotinia sclerotiorum USB-F593; lyses red blood cells | rhizosphere of bean plants, southern Italy | Giorgio et al. 2015 |
Prokaryota | Bacillus Subtilis | triggers induced systemic resistance (ISR) in Arabidopsis | na | Ryu et al. 2004 |
Prokaryota | Bacillus Amyloliquefaciens | triggers induced systemic resistance (ISR) in Arabidopsis | na | Ryu et al. 2004 |
Prokaryota | Pseudomonas Jessenii | na | phyllosphere of field-grown potato plants | Hunziker et al. 2015 |
Prokaryota | Pseudomonas Aeruginosa | na | na | Briard et al. 2016 |
Prokaryota | Pseudomonas Chlororaphis | inhibits growth of Synechococcus sp. PCC 7942 and Rhizoctonia solani, kills Caenorhabditis elegans | Rhizosphere of maize, Kiev region, Ukraine | Popova et al. 2014 |
Prokaryota | Lactobacillus Rhamnosus | na | na | Pogačić et al. 2016 |
Eukaryota | Ganoderma Lucidum | na | saprophytic on deciduous trees | Campos Ziegenbein et al. 2006 |
Eukaryota | Spongiporus Leucomallellus | na | saprophytic mostly on wet, old pines | Campos Ziegenbein et al. 2006 |
Eukaryota | Pleurotus Eryngii | na | na | Usami et al. 2014 |
Eukaryota | Pleurotus Cystidiosus | na | na | Usami et al. 2014 |
Eukaryota | Trichoderma Atroviride | na | water damaged buildings, Belgium | Polizzi et al. 2012 |
Prokaryota | Burkholderia Cepacia | | Rhizosphere | Blom et al. 2011 |
Prokaryota | Xanthomonas Campestris | n/a | NA | Weise et al. 2012 |
Prokaryota | Serratia Sp. | Might be involved in inhibition of fungal growth. | NA | Schulz and Dickschat 2007 |
Prokaryota | Stigmatella Aurantiaca | n/a | NA | Dickschat et al. 2005_5 |
Prokaryota | Wautersiella Falsenii | Nematicidal activity | cow dung | XU et al. 2015 |
Eukaryota | Tuber Borchii | None | T. melanosporum, T. borchii were collected from northern Italy (Piedmont) and T. indicum from Yunnan and Sichuan Provinces (China). | Splivallo et al. 2007b |
Eukaryota | Cryptococcus Nemorosus | NA | NA | Ljunggren et al. 2019 |
Prokaryota | Achromobacter Sp. | NA | NA | Almeida et al. 2022 |
Prokaryota | Serratia Sp. | NA | NA | Almeida et al. 2022 |
Eukaryota | Aureobasidium Pullulans | NA | NA | Mozūraitis et al. 2022 |
Eukaryota | Cryptococcus Wieringae | NA | NA | Mozūraitis et al. 2022 |
Eukaryota | Pichia Kluyveri | NA | NA | Mozūraitis et al. 2022 |
Eukaryota | Pichia Membranifaciens | NA | NA | Mozūraitis et al. 2022 |
Eukaryota | Saccharomyces Paradoxus | NA | NA | Mozūraitis et al. 2022 |
Eukaryota | Torulaspora Delbrueckii | NA | NA | Mozūraitis et al. 2022 |
Prokaryota | Bacillus Velezensis | NA | NA | Toral et al. 2021 |
Prokaryota | Lactobacillus Plantarum | NA | NA | Zhang et al. 2022 |
Prokaryota | Bacillus Subtilis | NA | NA | Lee et al. 2023 |
| Lactobacillus Plantarum | | | Ma et al. 2023 |