Full Length Research Paper
References
Abdulkadir M, Waliyu S (2012). Screening and isolation of the soil bacteria for ability to produce antibiotics. European Journal of Applied Sciences 4(5):211-215. |
|
Ahmad M, Khan AU (2019). Global economic impact of antibiotic resistance: A review: Journal of Global Antimicrobial Resistance 19:313-316. |
|
Alabi OS, Mendonça N, Adeleke OE, da Silva GJ (2017). Molecular screening of antibiotic-resistant determinants among multidrug-resistant clinical isolates of Proteus mirabilis from South West Nigeria. African Health Sciences 17(2):356-365. |
|
Al-Turk A, Odat N, Massadeh MI (2020). Isolation and Molecular characterization of antibiotic producing Bacillus licheniformis strains isolated from soil. Journal of Pure and Applied Microbiology 14(4):2363-2370. |
|
Babalola OO, Emmanuel OC, Adeleke BS, Odelade KA, Nwachukwu BC, Ayiti OE, Adegboyega TT, Igiehon NO (2021). Rhizosphere Microbiome Cooperations: Strategies for Sustainable Crop Production. Current Microbiology pp. 1-17. |
|
Basak S, Singh P, Rajurkar M (2016). Multidrug resistant and extensively drug resistant bacteria: A study. Journal of Pathogens 2016. |
|
Bavishi A, Dalal R, Singh S (2017). Screening, isolation, and identification of antibiotics producing microorganisms from potential soil samples of western regions of Mumbai. Journal of Global Biosciences 6(6):5070-5076. |
|
Cassini A, Högberg LD, Plachouras D, Quattrocchi A, Hoxha A, Simonsen GS, Colomb-Cotinat M, Kretzschmar ME, Devleesschauwer B, Cecchini M, Ouakrim DA, Oliveira TC, Struelens MJ, Suetens C, Monnet DL, Strauss R, Mertens K, Struyf T, Catry B, Hopkins S (2019). Attributable deaths and disability-adjusted life-years caused by infections with antibiotic-resistant bacteria in the EU and the European Economic Area in 2015: A population-level modelling analysis. The Lancet Infectious Diseases 19(1):56-66. |
|
Chopra I (2013). The 2012 Garrod Lecture: Discovery of antibacterial drugs in the 21st century. Journal of Antimicrobial Chemotherapy 68(3):496-505. |
|
Clinical and Laboratory Standards Institute, CLSI (2016). Methods for Dilution Antimicrobial Susceptibility Tests for Bacteria That Grow Aerobically; Approved Standard - Tenth Edition. CLSI document M07-A11,Wayne, PA. Clinical and Laboratory Standard Institute. |
|
Cole ME, Ceja-Navarro JA, Mikaelyan A (2021). The power of poop: Defecation behaviors and social hygiene in insects. PLoS Pathogens 17(10):e1009964. |
|
Dwivedi GR, Sisodia BS (2019). Secondary Metabolites: Metabolomics for Secondary Metabolites. In New and Future Developments in Microbial Biotechnology and Bioengineering. Elsevier. Pp. 333-344. |
|
Elkholy YN, Elkhatib WF, Aboshanab KM, Aboulwafa M, Hassouna NA (2019). Evaluation of antimicrobial activity and in vitro safety of the methanolic extract of Streptomyces manipurensis soil isolate H21 for potential industrial applications. Archives of Pharmaceutical Sciences Ain Shams University 3(1):1-10. |
|
Fira D, Dimki? I, Beri? T, Lozo J, Stankovi? S (2018). Biological control of plant pathogens by Bacillus species. Journal of Biotechnology 285:44-55. |
|
Ghai S, Sood SS, Jain RK (2007). Antagonistic and antimicrobial activities of some bacterial isolates collected from soil samples. Indian Journal of Microbiology 47(1):77. |
|
He S, Johnston PR, Kuropka B, Lokatis S, Weise C, Plarre R, Kunte HJ, McMahon DP (2018). Termite soldiers contribute to social immunity by synthesizing potent oral secretions. Insect Molecular Biology: 27(5):564-576. |
|
Hu L, Robert CAM, Cadot S, Zhang X, Ye M, Li B, Manzo D, Chervet N, Steinger T, Van Der Heijden MGA (2018). Root exudate metabolites drive plant-soil feedbacks on growth and defense by shaping the rhizosphere microbiota. Nature Communications 9:2738. |
|
Kiesewalter HT, Lozano-Andrade CN, Strube ML, Kovács ÁT (2020). Secondary metabolites of Bacillus subtilis impact the assembly of soil-derived semisynthetic bacterial communities. Beilstein Journal of Organic Chemistry 16(1):2983-2998. |
|
Makut M, Owolewa O (2011). Antibiotic-producing fungi present in the soil environment of Keffi metropolis, Nasarawa state, Nigeria. Eubacteria 10(18):19. |
|
Nadeem SF, Gohar UF, Tahir SF, Muktar H, Pornpukdeewattana S, Nukthamna P, Ali AMM, Bavisetty SCB, Massa S (2020) Antimicrobial Resistance: more than 70 years of war between humans and bacteria. Critical Reviews in Microbiology 46(5):578-599. |
|
Okiemute ES, Ono MN, Oluyori PD (2018). Comparison of Two Polynomial Geoid Models of GNSS/Leveling Geoid Development for Orthometric Heights in FCT, Abuja. International Journal of Engineering Research and Advanced Technology 4(10):1-9. |
|
O'Neill J (2017). "Tackling Drug-resistant infections Globally: Final Report and Recommendations- The Review on Antimicrobial Resistance Chaired by Jim O'Neill". Well Come Trust and HM Government, London (May 2016). |
|
Pomastowski P, Z\loch M, Rodzik A, Ligor M, Kostrzewa M, Buszewski B (2019). Analysis of bacteria associated with honeys of different geographical and botanical origin using two different identification approaches: MALDI-TOF MS and 16S rDNA PCR technique. PloS One 14(5):e0217078. |
|
Rafiq A, Khan SA, Akbar A, Shafi M, Ali I, Rehman FU, Rashid R, Shakoor G, Anwar M (2018). Isolation and identification of antibiotic producing microorganisms from soil. International Journal of Pharmaceutical Sciences and Research 9(3):1002-1011. |
|
Rajivgandhi G, Ramachandran G, Maruthupandy M, Vaseeharan B, Manoharan N (2019). Molecular identification and structural characterization of marine endophytic actinomycetes Nocardiopsis sp. GRG 2 (KT 235641) and its antibacterial efficacy against isolated ESBL producing bacteria. Microbial Pathogenesis 126:138-148. |
|
Rather IA, Kim BC, Bajpai VK, Park YH (2017). Self-medication and antibiotic resistance: Crisis, current challenges, and prevention. Saudi Journal of Biological Sciences 24(4):808-812. |
|
Rolain JM, Abat C, Jimeno MT, Fournier PE, Raoult D (2016). Do we need new antibiotics? Clinical Microbiology and Infection 22(5):408-415. |
|
Rossolini GM (2015). Multidrug-Resistant and Extremely Drug-Resistant Bacteria: Are We Facing the End of the Antibiotic Era? Journal of the Siena Academy of Sciences 7:1. |
|
Sautter RL, Halstead DC (2018). Need of the Hour: Addressing the Challenges of Multi-Drug-Resistant Health Care-Associated Infections and the Role of the Laboratory in Lowering Infection Rates. Clinical Microbiology Newsletter 40(2):11-16. |
|
Schulz-Bohm K, Gerards S, Hundscheid M, Melenhorst J, de Boer W, Garbeva P (2018). Calling from distance: Attraction of soil bacteria by plant root volatiles. The ISME Journal 12(5):1252-1262. |
|
Shatzkes K, Connell ND, Kadouri DE (2017). Predatory bacteria: A new therapeutic approach for a post-antibiotic era. Future Microbiology 12(6):469-472. |
|
Ventola CL (2015). The antibiotic resistance crisis: Part 1: causes and threats. Pharmacy and Therapeutics 40(4):277. |
|
Vos P, Garrity G, Jones D, Krieg NR, Ludwig W, Rainey FA, Schleifer KH, Whitman WB (2011). Bergey's manual of systematic bacteriology: Volume 3: The Firmicutes (Vol. 3). Springer Science and Business Media. |
|
Wang T, Liang Y, Wu M, Chen Z, Lin J, Yang L (2015). Natural products from Bacillus subtilis with antimicrobial properties. Chinese Journal of Chemical Engineering 23(4):744-754. |
|
World Health Organization (WHO) (2014). Antimicrobial resistance: Global report on surveillance. Geneva: World Health Organization; 2014. Google Scholar 232 p. |
|
Yilmaz M, Soran H, Beyatli Y (2006). Antimicrobial activities of some Bacillus spp. Strains isolated from the soil. Microbiological Research 161(2):127-131. |
|
Zhalnina K, Louie KB, Hao Z, Mansoori N, da Rocha UN, Shi S, Cho H, Karaoz U, Loqué D, Bowen BP (2018). Dynamic root exudate chemistry and microbial substrate preferences drive patterns in rhizosphere microbial community assembly. Nature Microbiology 3(4):470-480. |
Copyright © 2023 Author(s) retain the copyright of this article.
This article is published under the terms of the Creative Commons Attribution License 4.0