{"id":{"repo_id":"venda","oai_identifier":"oai:univendspace.univen.ac.za:11602/2736"},"canonical_url":"https://search.dev.ndltd.org/etd/venda/oai:univendspace.univen.ac.za:11602/2736","repository":{"repo_id":"venda","name":"University of Venda","base_url":"https://univendspace.univen.ac.za/server/oai/request"},"display":{"title":"Genetic divesity of Human Herpesvirus Type 8 in Northern South Africa","abstract":"Background: Human herpesvirus type 8 (HHV-8), is an oncogenic virus responsible for causing all forms of Kaposi`s sarcoma (KS). HHV-8 prevalence varies globally, however, it is more prevalent in African countries, with South Africa having over 50% of HHV-8 infections. HHV-8 encodes a highly diverse open reading frame (ORF) K1 gene, which has led to the identification of seven major genotypes (A-F and Z) that are heterogeneously distributed across the world. The viral genetic landscape of any geographical area is of paramount importance in vaccine development and diagnostics. However, data on HHV-8 genotypes is scarce in northern South Africa. Therefore, this study will provide genetic diversity of HHV-8 in northern South Africa, and this may aid in the selection of genes for vaccine development. Objective: The main objective of the study was to describe the genetic diversity of human herpesvirus type 8 in northern South Africa. Methodology: Deoxyribonucleic acid (DNA) was extracted from 115 archived mouthwash samples collected from five healthcare facilities in northern South Africa. The partial open reading frame (ORF) K1 gene (~840bp) was amplified in a two round conventional PCR using JumpStart REDTaq master mix. The band of interest was extracted by phenol-freeze protocol and enriched using conventional PCR. Enriched amplicons were purified and sequenced in an Illumina MiniSeq platform. K1 genotypes were inferred using an online BioAfrica HHV-8 subtyping tool and confirmed by computing a phylogenetic tree. Intra-genetic diversity among HHV-8 genotypes was described by aligning study sequences with their respective prototype strains. Synonymous and nonsynonymous mutation rates were computed by the online SNAP tool. Results: K1 gene was successfully amplified in 61.7% (71/115) samples, along with unspecified DNA bands. The band of interest was successfully recovered in 67 amplicons (94.4%). Sixty-five gel extracted products (65/67; 97%) were successfully enriched and purified using magnetic beads. Of the 65 purified samples, 63 were sequenced using Illumina MiniSeq platform. Thirty-seven sequences had an acceptable nucleotide base call. The prevalence of HHV-8 in the study sequences was 94% (35/37) and majority of the sequences (24/35;68%) had sequence reads that span partial or complete K1 gene. Two major genotypes were detected (A and B); genotype B (19/24;79%) had a higher prevalence than genotype A (5/24; 21%). All sequences which grouped with genotype A were further classified as subtype A5. Interestingly, all sequences that were classified as genotype B did not cluster to any of the B subtypes. A higher genetic drift was observed among the study sequences reaching up to 33.7% at the amino acid level. Genotypes A and B exhibited 16.67% and 7.41% intra-genetic diversity at the amino acid level, respectively. Several amino acid polymorphisms were observed at the ITAM region of genotype A sequences (OUHC 013 and ODF 029), while the ITAM region of the B sequence was conserved. Conclusion: In this study, a predominance of HHV-8 genotype B was observed in northern South Africa. Additionally, there was a high degree of evolutionary divergence among the studied sequences. A higher frequency of nonsynonymous mutations was detected at the ITAM region of A5 sequences and these mutations may potentially affect the functionality of ITAM.","abstract_html":"Background: Human herpesvirus type 8 (HHV-8), is an oncogenic virus responsible for causing all forms of Kaposi`s sarcoma (KS). HHV-8 prevalence varies globally, however, it is more prevalent in African countries, with South Africa having over 50% of HHV-8 infections. HHV-8 encodes a highly diverse open reading frame (ORF) K1 gene, which has led to the identification of seven major genotypes (A-F and Z) that are heterogeneously distributed across the world. The viral genetic landscape of any geographical area is of paramount importance in vaccine development and diagnostics. However, data on HHV-8 genotypes is scarce in northern South Africa. Therefore, this study will provide genetic diversity of HHV-8 in northern South Africa, and this may aid in the selection of genes for vaccine development. Objective: The main objective of the study was to describe the genetic diversity of human herpesvirus type 8 in northern South Africa. Methodology: Deoxyribonucleic acid (DNA) was extracted from 115 archived mouthwash samples collected from five healthcare facilities in northern South Africa. The partial open reading frame (ORF) K1 gene (~840bp) was amplified in a two round conventional PCR using JumpStart REDTaq master mix. The band of interest was extracted by phenol-freeze protocol and enriched using conventional PCR. Enriched amplicons were purified and sequenced in an Illumina MiniSeq platform. K1 genotypes were inferred using an online BioAfrica HHV-8 subtyping tool and confirmed by computing a phylogenetic tree. Intra-genetic diversity among HHV-8 genotypes was described by aligning study sequences with their respective prototype strains. Synonymous and nonsynonymous mutation rates were computed by the online SNAP tool. Results: K1 gene was successfully amplified in 61.7% (71/115) samples, along with unspecified DNA bands. The band of interest was successfully recovered in 67 amplicons (94.4%). Sixty-five gel extracted products (65/67; 97%) were successfully enriched and purified using magnetic beads. Of the 65 purified samples, 63 were sequenced using Illumina MiniSeq platform. Thirty-seven sequences had an acceptable nucleotide base call. The prevalence of HHV-8 in the study sequences was 94% (35/37) and majority of the sequences (24/35;68%) had sequence reads that span partial or complete K1 gene. Two major genotypes were detected (A and B); genotype B (19/24;79%) had a higher prevalence than genotype A (5/24; 21%). All sequences which grouped with genotype A were further classified as subtype A5. Interestingly, all sequences that were classified as genotype B did not cluster to any of the B subtypes. A higher genetic drift was observed among the study sequences reaching up to 33.7% at the amino acid level. Genotypes A and B exhibited 16.67% and 7.41% intra-genetic diversity at the amino acid level, respectively. Several amino acid polymorphisms were observed at the ITAM region of genotype A sequences (OUHC 013 and ODF 029), while the ITAM region of the B sequence was conserved. Conclusion: In this study, a predominance of HHV-8 genotype B was observed in northern South Africa. Additionally, there was a high degree of evolutionary divergence among the studied sequences. A higher frequency of nonsynonymous mutations was detected at the ITAM region of A5 sequences and these mutations may potentially affect the functionality of ITAM.","abstract_has_math":false,"creators":["Raphalalani, Mulalo"],"institution":null,"degree_name":null,"degree_level":null,"degree_discipline":null,"degree_department":null,"school":null,"contributors":[],"advisors":["Bessong, Pascal Obong","Mavhandu-Ramarumo, Lufuno Grace"],"committee_chairs":[],"committee_members":[],"year":2024,"date_issued":"2024-09-06","date_published":"2024-09-06","updated_at":"2026-07-27T21:57:16Z","subjects":["HHV-8","Genetic diversity","KI gene","Kaposis sarcoma","South Africa","UCTD"],"languages":["en"],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://univendspace.univen.ac.za/handle/11602/2736","outbound_label":"Repository record","outbound_source":"dc:identifier.uri"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor.advisor","label":"Advisor","values":["Bessong, Pascal Obong","Mavhandu-Ramarumo, Lufuno Grace"]},{"key":"dc:creator","label":"Author","values":["Raphalalani, Mulalo"]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"dc:date","label":"Dc Date","values":["2024"]},{"key":"dc:date.accessioned","label":"Dc Date Accessioned","values":["2024-10-04T12:35:00Z"]},{"key":"dc:date.available","label":"Dc Date Available","values":["2024-10-04T12:35:00Z"]},{"key":"dc:date.issued","label":"Date","values":["2024-09-06"]},{"key":"dc:relation","label":"Dc Relation","values":["PDF"]},{"key":"dc:type","label":"Dc Type","values":["Dissertation"]}]},{"id":"subjects_keywords","label":"Subjects and Keywords","entries":[{"key":"dc:subject","label":"Dc Subject","values":["HHV-8","Genetic diversity","KI gene","Kaposis sarcoma","South Africa","UCTD"]}]},{"id":"language_rights","label":"Language and Rights","entries":[{"key":"dc:language.iso","label":"Language (ISO)","values":["en"]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier.uri","label":"Identifier URI","values":["https://univendspace.univen.ac.za/handle/11602/2736"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description","label":"Description","values":["M.Sc. (Microbiology)","Department of Biochemistry and Microbiology"]},{"key":"dc:description.abstract","label":"Abstract","values":["Background: Human herpesvirus type 8 (HHV-8), is an oncogenic virus responsible for causing all forms of Kaposi`s sarcoma (KS). HHV-8 prevalence varies globally, however, it is more prevalent in African countries, with South Africa having over 50% of HHV-8 infections. HHV-8 encodes a highly diverse open reading frame (ORF) K1 gene, which has led to the identification of seven major genotypes (A-F and Z) that are heterogeneously distributed across the world. The viral genetic landscape of any geographical area is of paramount importance in vaccine development and diagnostics. However, data on HHV-8 genotypes is scarce in northern South Africa. Therefore, this study will provide genetic diversity of HHV-8 in northern South Africa, and this may aid in the selection of genes for vaccine development. Objective: The main objective of the study was to describe the genetic diversity of human herpesvirus type 8 in northern South Africa. Methodology: Deoxyribonucleic acid (DNA) was extracted from 115 archived mouthwash samples collected from five healthcare facilities in northern South Africa. The partial open reading frame (ORF) K1 gene (~840bp) was amplified in a two round conventional PCR using JumpStart REDTaq master mix. The band of interest was extracted by phenol-freeze protocol and enriched using conventional PCR. Enriched amplicons were purified and sequenced in an Illumina MiniSeq platform. K1 genotypes were inferred using an online BioAfrica HHV-8 subtyping tool and confirmed by computing a phylogenetic tree. Intra-genetic diversity among HHV-8 genotypes was described by aligning study sequences with their respective prototype strains. Synonymous and nonsynonymous mutation rates were computed by the online SNAP tool. Results: K1 gene was successfully amplified in 61.7% (71/115) samples, along with unspecified DNA bands. The band of interest was successfully recovered in 67 amplicons (94.4%). Sixty-five gel extracted products (65/67; 97%) were successfully enriched and purified using magnetic beads. Of the 65 purified samples, 63 were sequenced using Illumina MiniSeq platform. Thirty-seven sequences had an acceptable nucleotide base call. The prevalence of HHV-8 in the study sequences was 94% (35/37) and majority of the sequences (24/35;68%) had sequence reads that span partial or complete K1 gene. Two major genotypes were detected (A and B); genotype B (19/24;79%) had a higher prevalence than genotype A (5/24; 21%). All sequences which grouped with genotype A were further classified as subtype A5. Interestingly, all sequences that were classified as genotype B did not cluster to any of the B subtypes. A higher genetic drift was observed among the study sequences reaching up to 33.7% at the amino acid level. Genotypes A and B exhibited 16.67% and 7.41% intra-genetic diversity at the amino acid level, respectively. Several amino acid polymorphisms were observed at the ITAM region of genotype A sequences (OUHC 013 and ODF 029), while the ITAM region of the B sequence was conserved. Conclusion: In this study, a predominance of HHV-8 genotype B was observed in northern South Africa. Additionally, there was a high degree of evolutionary divergence among the studied sequences. A higher frequency of nonsynonymous mutations was detected at the ITAM region of A5 sequences and these mutations may potentially affect the functionality of ITAM."]},{"key":"dc:title","label":"Title","values":["Genetic divesity of Human Herpesvirus Type 8 in Northern South Africa"]}]}],"canonical_facts":{"dc:contributor.advisor":["Bessong, Pascal Obong","Mavhandu-Ramarumo, Lufuno Grace"],"dc:creator":["Raphalalani, Mulalo"],"dc:date":["2024"],"dc:date.accessioned":["2024-10-04T12:35:00Z"],"dc:date.available":["2024-10-04T12:35:00Z"],"dc:date.issued":["2024-09-06"],"dc:description":["M.Sc. (Microbiology)","Department of Biochemistry and Microbiology"],"dc:description.abstract":["Background: Human herpesvirus type 8 (HHV-8), is an oncogenic virus responsible for causing all forms of Kaposi`s sarcoma (KS). HHV-8 prevalence varies globally, however, it is more prevalent in African countries, with South Africa having over 50% of HHV-8 infections. HHV-8 encodes a highly diverse open reading frame (ORF) K1 gene, which has led to the identification of seven major genotypes (A-F and Z) that are heterogeneously distributed across the world. The viral genetic landscape of any geographical area is of paramount importance in vaccine development and diagnostics. However, data on HHV-8 genotypes is scarce in northern South Africa. Therefore, this study will provide genetic diversity of HHV-8 in northern South Africa, and this may aid in the selection of genes for vaccine development. Objective: The main objective of the study was to describe the genetic diversity of human herpesvirus type 8 in northern South Africa. Methodology: Deoxyribonucleic acid (DNA) was extracted from 115 archived mouthwash samples collected from five healthcare facilities in northern South Africa. The partial open reading frame (ORF) K1 gene (~840bp) was amplified in a two round conventional PCR using JumpStart REDTaq master mix. The band of interest was extracted by phenol-freeze protocol and enriched using conventional PCR. Enriched amplicons were purified and sequenced in an Illumina MiniSeq platform. K1 genotypes were inferred using an online BioAfrica HHV-8 subtyping tool and confirmed by computing a phylogenetic tree. Intra-genetic diversity among HHV-8 genotypes was described by aligning study sequences with their respective prototype strains. Synonymous and nonsynonymous mutation rates were computed by the online SNAP tool. Results: K1 gene was successfully amplified in 61.7% (71/115) samples, along with unspecified DNA bands. The band of interest was successfully recovered in 67 amplicons (94.4%). Sixty-five gel extracted products (65/67; 97%) were successfully enriched and purified using magnetic beads. Of the 65 purified samples, 63 were sequenced using Illumina MiniSeq platform. Thirty-seven sequences had an acceptable nucleotide base call. The prevalence of HHV-8 in the study sequences was 94% (35/37) and majority of the sequences (24/35;68%) had sequence reads that span partial or complete K1 gene. Two major genotypes were detected (A and B); genotype B (19/24;79%) had a higher prevalence than genotype A (5/24; 21%). All sequences which grouped with genotype A were further classified as subtype A5. Interestingly, all sequences that were classified as genotype B did not cluster to any of the B subtypes. A higher genetic drift was observed among the study sequences reaching up to 33.7% at the amino acid level. Genotypes A and B exhibited 16.67% and 7.41% intra-genetic diversity at the amino acid level, respectively. Several amino acid polymorphisms were observed at the ITAM region of genotype A sequences (OUHC 013 and ODF 029), while the ITAM region of the B sequence was conserved. Conclusion: In this study, a predominance of HHV-8 genotype B was observed in northern South Africa. Additionally, there was a high degree of evolutionary divergence among the studied sequences. A higher frequency of nonsynonymous mutations was detected at the ITAM region of A5 sequences and these mutations may potentially affect the functionality of ITAM."],"dc:identifier.uri":["https://univendspace.univen.ac.za/handle/11602/2736"],"dc:language.iso":["en"],"dc:relation":["PDF"],"dc:subject":["HHV-8","Genetic diversity","KI gene","Kaposis sarcoma","South Africa","UCTD"],"dc:title":["Genetic divesity of Human Herpesvirus Type 8 in Northern South Africa"],"dc:type":["Dissertation"]},"updated_at":"2026-07-27T21:57:16Z"}