African Journal of
Microbiology Research

  • Abbreviation: Afr. J. Microbiol. Res.
  • Language: English
  • ISSN: 1996-0808
  • DOI: 10.5897/AJMR
  • Start Year: 2007
  • Published Articles: 5233

Full Length Research Paper

Characterization of novel potential probiotic strains of lactic acid bacteria from rat faeces

Dieudonné Nyamaifofe
  • Dieudonné Nyamaifofe
  • Department of Molecular Biology and Biotechnology, Pan African University Institute for Basic Sciences, Technology and Innovation, Juja, Kenya.
  • Google Scholar
Amos Mbugua
  • Amos Mbugua
  • Department of Medical Laboratory Sciences, Jomo Kenyatta University of Agriculture and Technology, Juja, Kenya.
  • Google Scholar
Kevin Mbogo
  • Kevin Mbogo
  • Department of Biochemistry, Jomo Kenyatta University of Agriculture and Technology, Juja, Kenya.
  • Google Scholar


  •  Received: 14 February 2024
  •  Accepted: 14 March 2024
  •  Published: 31 March 2024

References

Aditya A, Peng M, Young A, Biswa D (2020). Antagonistic Mechanism of Metabolites Produced by Lactobacillus casei on Lysis of Enterohemorrhagic Escherichia coli. Frontiers in Microbiology 11(11):1-13.
Crossref

 

Altschul SF, Gish W, Miller W, Myers EW, Lipman DJ (1990). Basic local alignment search tool. Journal of Molecular Biology 215(3):403-410.
Crossref

 

Ayivi RD, Gyawali R, Krastanov A, Aljaloud SO, Worku M, Tahergorabi R, Silva RC, Ibrahim SA (2020). Lactic Acid Bacteria: Food Safety and Human Health Applications. Dairy 1(3):202-232.
Crossref

 

Baccouri O, Boukerb AM, Farhat LB, Zébré A, Zimmermann K, Domann E, Cambronel M, Barreau M, Maillot O, Rincé I, Muller C, Marzouki MN, Feuilloley M, Abidi F, Connil N (2019). Probiotic Potential and Safety Evaluation of Enterococcus faecalis OB14 and OB15, Isolated from Traditional Tunisian Testouri Cheese and Rigouta, Using Physiological and Genomic Analysis. Frontiers in Microbiology 10(4):1-15.
Crossref

 

Barcenilla C, Ducic M, López M, Prieto M, Álvarez-Ordóñez A (2022). Application of lactic acid bacteria for the biopreservation of meat products: A systematic review. Meat Science 183 p.
Crossref

 

Barzegar H, Alizadeh Behbahani B, Falah F (2021). Safety, probiotic properties, antimicrobial activity, and technological performance of Lactobacillus strains isolated from Iranian raw milk cheeses. Food Science and Nutrition 9(8):4094-4107.
Crossref

 

Bazireh H, Shariati P, Azimzadeh Jamalkandi S, Ahmadi A, Boroumand MA (2020). Isolation of Novel Probiotic Lactobacillus and Enterococcus Strains from Human Salivary and Fecal Sources. Frontiers in Microbiology 11(12):1-12.
Crossref

 

Byakika S, Mukisa IM, Byaruhanga YB, Muyanja C (2019). A Review of Criteria and Methods for Evaluating the Probiotic Potential of Microorganisms. Food Reviews International 35(5):427-466).
Crossref

 

Casarotti SN, Carneiro BM, Todorov SD, Nero LA, Rahal P, Penna ALB (2017). In vitro assessment of safety and probiotic potential characteristics of Lactobacillus strains isolated from water buffalo mozzarella cheese. Annals of Microbiology 67(4):289-301.
Crossref

 

Celiberto LS, Pinto RA, Rossi EA, Vallance BA, Cavallini DCU (2018). Isolation and characterization of potentially probiotic bacterial strains from mice: proof of concept for personalized probiotics. Nutrients 10(11).
Crossref

 

Clinical and Laboratory Standards Institute (CLSI) (2020). Performance Standards for Antimicrobial Susceptibility Testing. In M100 (Ed.), Clsi (30th Edition, 40:1).

 

Edgar RC (2004). MUSCLE: Multiple sequence alignment with high accuracy and high throughput. Nucleic Acids Research 32(5):1792-1797.
Crossref

 

Fan S, XueT, Bai B, Bo T, Zhang J (2022). Probiotic Properties Including the Antioxidant and Hypoglycemic Ability of Lactic Acid Bacteria from Fermented Grains of Chinese Baijiu. Foods 11(21).
Crossref

 

Gil-Rodríguez AM, Beresford T (2021). Bile salt hydrolase and lipase inhibitory activity in reconstituted skim milk fermented with lactic acid bacteria. Journal of Functional Foods 77:104342.
Crossref

 

Gopal V, Dhanasekaran D (2021). Probiotics as a Growth Promotant for Livestock and Poultry Production. In Advances in Probiotics (pp. 349-364). Academic Press.
Crossref

 

Gupta M, Raut R, Manandhar S, Chaudhary A, Shrestha U, Dangol S, Sudarshan GC, Budha KR, Karki G, Díaz-Sánchez S, Gortazar C, de la Fuente J, Rajbhandari P, Manandhar P, Napit R, Karmacharya D (2023). Identification and characterization of probiotics isolated from indigenous chicken (Gallus domesticus) of Nepal. PLoS ONE 18(1 January):1-12.
Crossref

 

Halder D, Mandal M, Chatterjee SS, Pal NK, Mandal S (2017). Indigenous probiotic Lactobacillus isolates presenting antibiotic like activity against human pathogenic bacteria. Biomedicines 5(2):1-11.
Crossref

 

Hall TA (1999). BioEdit: a user friendly biological seque. In Nucleid Acids Symposium Series 41:95-98.

 

Hanchi H, Mottawea W, Sebei K, Hammami R (2018). The genus Enterococcus: Between probiotic potential and safety concerns-an update. Frontiers in Microbiology 9(AUG), 1-16.
Crossref

 

Jena PK, Trivedi D, Thakore K, Chaudhary H, Giri SS, Seshadri S (2013). Isolation and characterization of probiotic properties of lactobacilli isolated from rat fecal microbiota. Microbiology and Immunology 57(6):407-416.
Crossref

 

Kimura M (1980). A simple method for estimating evolutionary rates of base substitutions through comparative studies of nucleotide sequences. Journal of Molecular Evolution 16(2):111-120.
Crossref

 

Kort R (2014). Personalized therapy with probiotics from the host by TripleA. Trends in Biotechnology 32(6):291-293.
Crossref

 

Lei W, Liu C, Pan L, Peng C, Wang J, Zhou H (2021). Screening of probiotic Lactobacilli with potential anti-allergic activity based on hyaluronidase inhibition and degranulation of RBL-2H3 cells in vitro. Lwt 140(1):110707.
Crossref

 

Nascimento LCS, Casarotti SN,Todorov SD, Penna ALB (2019). Probiotic potential and safety of enterococci strains. Annals of Microbiology 69(3):241-252.
Crossref

 

Ngene AC, Onwuakor CE, Aguiyi JC, Ifeanyi VO, Ohaegbu CG, Okwuchukwu CP, Kim EG, Egbere JO (2019). Screening of Some Lactic Acid Bacteria Isolated from Selected Nigerian Fermented Foods for Vitamin Production. Advances in Microbiology 09(11):943-955.
Crossref

 

Paiva IHR, Duarte-Silva E, Peixoto CA (2020). The role of prebiotics in cognition, anxiety, and depression. European Neuropsychopharmacology 34:1-18.
Crossref

 

Patel P, Patel B, Amaresan N, Joshi B, Shah R, Krishnamurthy R (2020). Isolation and characterization of Lactococcus garvieae from the fish gut for in vitro fermentation with carbohydrates from agro-industrial waste. Biotechnology Reports 28:e00555.
Crossref

 

Pessoa WFB, Melgaço ACC, De Almeida ME, Ramos LP, Rezende RP, Romano CC (2017). In Vitro Activity of Lactobacilli with Probiotic Potential Isolated from Cocoa Fermentation against Gardnerella vaginalis. BioMed Research International.
Crossref

 

Qin S, Du H, Zeng W, Bai A, Liu J, Chen F, Ma L, Qin S, Zhu P, Wu J (2023). Identification and Characterisation of Potential Probiotic Lactic Acid Bacteria Extracted from Pig Faeces. Journal of Pure and Applied Microbiology 17(2):788-798.
Crossref

 

Quinto EJ, Jiménez P, Caro I, Tejero J, Mateo J, Girbés T (2014). Probiotic Lactic Acid Bacteria: A Review. Food and Nutrition Sciences 05(18):1765-1775.
Crossref

 

Rittiphairoj T, Pongpirul K, Janchot K, Mueller NT, Li T (2021). Probiotics Contribute to Glycemic Control in Patients with Type 2 Diabetes Mellitus: A Systematic Review and Meta-Analysis. Advances in Nutrition 12(3):722-734.
Crossref

 

Roe AL, Boyte ME, Elkins CA, Goldman VS, Heimbach J, Madden E, Oketch-Rabah H, Sanders ME, Sirois J, Smith A (2022). Considerations for determining safety of probiotics: A USP perspective. Regulatory Toxicology and Pharmacology 136:1-36.
Crossref

 

Saboori B, Shahidi F, Hedayati S, Javadmanesh A (2022). Investigating the Probiotic Properties and Antimicrobial Activity of Lactic Acid Bacteria Isolated from an Iranian Fermented Dairy Product, Kashk. Foods 11(23).
Crossref

 

Shahbazi R, Sharifzad F, Bagheri R, Alsadi N, Yasavoli-Sharahi H, Matar C (2021). Anti-inflammatory and immunomodulatory properties of fermented plant foods. Nutrients 13(5):1-20.
Crossref

 

Shehata MG, El Sohaimy SA, El-Sahn MA, Youssef MM (2016). Screening of isolated potential probiotic lactic acid bacteria for cholesterol lowering property and bile salt hydrolase activity. Annals of Agricultural Sciences 61(1):65-75.
Crossref

 

Sornplang P, Piyadeatsoontorn S (2016). Probiotic isolates from unconventional sources: a review. Journal of Animal Science and Technology 58:1-11.
Crossref

 

Tamura K, Stecher G, Kumar S (2021). MEGA11: Molecular Evolutionary Genetics Analysis Version 11. Molecular Biology and Evolution 38(7):3022-3027.
Crossref

 

Wang G, Si Q, Yang S, Jiao T, Zhu H, Tian P, Wang L, Li X, Gong L, Zhao J, Zhang H, Chen W (2020). Lactic acid bacteria reduce diabetes symptoms in mice by alleviating gut microbiota dysbiosis and inflammation in different manners. Food and Function 11(7):5898-5914.
Crossref

 

Wei M, Gu E, Luo J, Zhang Z, Xu D, Tao X, Shah NP, Wei H (2020). Enterococcus hirae WEHI01 isolated from a healthy Chinese infant ameliorates the symptoms of type 2 diabetes by elevating the abundance of Lactobacillales in rats. Journal of Dairy Science 103(4):2969-2981.
Crossref

 

Zhang T, Xie J, Zhang M, Fu N, Zhang Y (2016). Effect of a potential probiotics Lactococcus garvieae B301 on the growth performance, immune parameters and caecum microflora of broiler chickens. Journal of Animal Physiology and Animal Nutrition 100(3):413-421.
Crossref