Kingdom | Species | Biological Function | Origin/Habitat | Reference |
---|
Prokaryota | Escherichia Coli | NA | NA | Hewett et al. 2020 |
Prokaryota | Pseudomonas Aeruginosa | NA | NA | Bean et al. 2012 |
Eukaryota | Aspergillus Fumigatus | NA | NA | Ahmed et al. 2018 |
Prokaryota | Escherichia Coli | NA | NA | Jünger et al. 2012 |
Prokaryota | Pseudomonas Putida | inhibitory activity against oomycete and fungal pathogens, antibacterial activity against R. pseudosolanacearum, dimethyl trisulphide nematicidal activity against R. similis, effect against Phytophthora rot on black pepper shoot cuttings | Black pepper root | Agisha et al. 2019 |
Prokaryota | Klebsiella Pneumoniae | | clinical isolate,bacteremic patients | Rees et al. 2017 |
Prokaryota | Bacillus Subtilis | antibacterial activity against growth of Ralstonia solanacearum | Plant Bacteriology Lab, Division of Plant Pathology, Indian Council of Agricultural Research - Indian Agricultural Research Institute, New Delhi | Kashyap et al. 2022 |
Prokaryota | Pseudomonas Fluorescens | antibacterial activity against growth of Ralstonia solanacearum | Plant Bacteriology Lab, Division of Plant Pathology, Indian Council of Agricultural Research - Indian Agricultural Research Institute, New Delhi | Kashyap et al. 2022 |
Prokaryota | Bacillus Subtilis | | | Zhang et al. 2021 |
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 | Staphylococcus Aureus | | Leibnitz Institute DSMZ-German Collection of Microorganisms and Cell Cultures GmbH | Fitzgerald 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 | Staphylococcus Epidermidis | | strains were provided by Prof. O'Gara at NUI Galway | Fitzgerald et al. 2020 |
Prokaryota | Staphylococcus Aureus | | American Type Culture Collection | Jenkins and Bean 2020 |
Prokaryota | Staphylococcus Epidermidis | | American Type Culture Collection | Jenkins and Bean 2020 |
Eukaryota | Goffeauzyma Gilvescens | inhibitory and promoting effects on the growth of different microorganisms | isolate from Saxifraga cespitosa, Ny-Ålesund (Svalbard Archipelago, Arctic); CCTCC (China Center for Type Culture Collection, Wuhan, Hubei, China) | Niu et al. 2022 |
Eukaryota | Rhodotorula Mucilaginosa | inhibitory and promoting effects on the growth of different microorganisms | isolate from Dryas octopetala, Ny-Ålesund (Svalbard Archipelago, Arctic); CCTCC (China Center for Type Culture Collection, Wuhan, Hubei, China) | Niu et al. 2022 |
Eukaryota | Vishniacozyma Victoriae | inhibitory and promoting effects on the growth of different microorganisms | isolate from Dryas octopetala, Ny-Ålesund (Svalbard Archipelago, Arctic); CCTCC (China Center for Type Culture Collection, Wuhan, Hubei, China) | Niu et al. 2022 |
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 Sp. | n/a | NA | Zou et al. 2007 |
Prokaryota | Stenotrophomonas Maltophilia | n/a | NA | Zou et al. 2007 |
Prokaryota | Alcaligenes Faecalis | n/a | NA | Zou et al. 2007 |
Prokaryota | Arthrobacter Nitroguajacolicus | n/a | NA | Zou et al. 2007 |
Prokaryota | Lysobacter Gummosus | n/a | NA | Zou et al. 2007 |
Prokaryota | Sporosarcina Ginsengisoli | n/a | NA | Zou et al. 2007 |
Eukaryota | Pleurotus Cystidiosus | na | na | Usami et al. 2014 |
Prokaryota | Streptomyces Sp. | n/a | NA | Dickschat et al. 2005_2 |
Prokaryota | Cytophaga-Flavobacterium-Bacteroides | n/a | NA | Dickschat et al. 2005_3 |
Prokaryota | Stenotrophomonas Maltophilia | | clinic | Preti et al. 2009 |
Prokaryota | Citrobacter Freundii | | American Type Culture Collection | Robacker and Bartelt 1997 |
Prokaryota | Klebsiella Pneumoniae | | American Type Culture Collection | Robacker and Bartelt 1997 |
Eukaryota | Fusarium Sp. | | NA | Dickschat 2017 |
Eukaryota | Aspergillus Sp. | | NA | Dickschat 2017 |
Prokaryota | Pseudomonas Putida | na | black pepper root | Sheoran et al. 2015 |
Prokaryota | Pseudomonas Putida | positive influence of the plant root growth and protection against soil-borne pathogens | NA | Sheoran et al. 2015 |
Prokaryota | Staphylococcus Equorum | NA | NA | Toral et al. 2021 |
Prokaryota | Bacillus Atrophaeus | NA | NA | Toral et al. 2021 |
Prokaryota | Peribacillus Sp. | NA | NA | Toral et al. 2021 |
Prokaryota | Pseudomonas Segetis | NA | NA | Toral et al. 2021 |
Prokaryota | Bacillus Velezensis | NA | NA | Toral et al. 2021 |
Prokaryota | Psychrobacillus Vulpis | NA | NA | Toral et al. 2021 |
Prokaryota | Pseudomonas Putida | NA | NA | Patel et al. 2020 |
Prokaryota | Bacillus Subtilis | NA | NA | Lee et al. 2023 |