Please use this identifier to cite or link to this item: http://hdl.handle.net/11189/8738
Title: Investigation into the bacterial diversity of sediment samples obtained from Berg River, Western Cape, South Africa
Authors: Alegbeleye, Oluwadara Oluwaseun 
Alisoltani, Arghavan 
Abia, Akebe Luther King 
Awe, Adetunji Ajibola 
Adetunji, Adewole Tomiwa 
Rabiu, Saidat 
Opeolu, Beatrice Olutoyin 
Keywords: Investigation;bacterial diversity;sediment samples;Berg River,;Western Cape;South Africa
Issue Date: 2021
Publisher: Springer Link
Source: Alegbeleye, O., Alisoltani, A., Adetunji, A.T. et al. 2021. Investigation into the bacterial diversity of sediment samples obtained from Berg River, Western Cape, South Africa. Folia Microbiologica, 66, 931-947. [https://doi.org/10.1007/s12223-021-00893-x]
Journal: Folia Microbiologica 
Abstract: This study used conventional culturing and 16S rRNA metagenomics analyses to assess the diversity of bacterial communities in sediment samples obtained from the Berg River, Western Cape, South Africa. Samples were collected from six points: a residential and recreational area, an industrial area, an informal residential settlement, a point next to a wastewater treatment plant (WWTP), a pumping station, and a residential and agricultural farming area along the river. High bacterial counts recorded on general selective and differential culture media signify substantial microbial contamination along the sampling sites. The most prevalent bacterial phyla detected (through metagenomics analyses) along the sampling sites were Proteobacteria (61%), Planctomycetes (9.5%), Firmicutes (7.8%), Bacteroidetes (5%), Acidobacteria (4.6%), and Actinobacteria (4.6%). Some members of the identified predominant bacterial phyla, genera, and classes are important public health bacteria that have been implicated in human diseases and outbreaks, while some others are metal or hydrocarbon tolerant, indicating possible significant environmental pollution. Notable human pathogenic genera such as Bacillus, Clostridium, Shigella, Legionella, Mycobacterium, and Pseudomonas were identified in varying percentages at five of the six sampling areas. Fecal contamination was particularly rife at all residential areas, with the informal housing area being the most notably polluted. Diverse functional pathways were predicted for identified bacteria, such as those associated with different chronic and infectious human diseases as well as those related to hydrocarbon and metal remediation. The point next to a WWTP contained vastly diverse groups of bacterial contaminants as well as the most abundant pathway identities and titles.
URI: http://hdl.handle.net/11189/8738
ISSN: 0015-5632
1874-9356
DOI: https://doi.org/10.1007/s12223-021-00893-x
Appears in Collections:Appsc - Journal Articles (DHET subsidised)

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