Mathabatha Frank Maleka obtained BSc, BSc (Hons) Genetics and MSc (Genetics) degrees from the University of Pretoria between 2002 and 2007. Research projects completed during BSc (Hons) and MSc studies were on the molecular evolution of cell wall biosynthetic genes in Arabidopsis thaliana and Eucalyptus urophylla, respectively. In 2007, Frank was appointed to his current position of lecturer in the Department of Genetics. He is also registered for a PhD (Genetics) degree under the supervision of Prof JJ Spies. In addition to conducting his own research, Frank is also involved in postgraduate student supervision with only one MSc student having successfully completed the degree under his supervision. Currently, Frank is involved in research projects of five students (three MSc and two Hons) as either project supervisor or co-supervisor.
Publications
Conferences
Frank’s research interest is on the genetics of flower pigmentation in clivias. Clivias are sold worldwide as ornamental crops in the floriculture industry. Interest in these plants lie particularly in their flowers which display variable colours and forms (i.e. shapes). The biggest challenge facing clivia breeders is to produce cultivars with novel flower colours and forms. So far, this has been achieved by utilizing conventional plant breeding approaches that enable trait (i.e. colour) assessment to be performed only in mature plants. However, this approach can be improved by incorporating information on the molecular genetics of trait formation and variation in the breeding strategy. Therefore, Frank`s current project aims to understand the genetics of flower pigmentation and colour variation in clivias.
Previously, Frank used a high-throughput sequencing technology (Illumina Genome Analyzer) to sequence the Clivia miniata flower transcirptome. Preliminary analysis of the sequence data yielded more than 37000 transcript-derived contigs that were analyzed using various bioinformatic databases (e.g. Pfam, GO, KEGG) and software packages. So far, a total of 60 contigs were identified that are homologous to various genes involved in flavonoid (including anthocyanins), carotenoid and betalain biosynthetic pathways. Furthermore, 15 contigs were identified that are homologous to regulatory genes involved in flavonoid pigmentation. All these genes are currently being studied further particularly in terms of their expression during flower development and how they evolve.
Plant Molecular Biology
Molecular Evolution
Population Genetics and Genomics
Molecular Genetics and Genomics
Bioinformatics
GENE3713 – Genomics
GENM6804 – Recombinant DNA Technology
GENE8900 – Genetics Dissertation
GENI8900 – Genetics Interdisciplinary Dissertation
GENE9100 – Genetics Thesis
Elfrieda van den Berg (Marketing Manager)T: +27 51 401 2531E:vdberge@ufs.ac.za QWAQWA CAMPUS FACULTY CONTACT
Dilahlwane Mohono (Faculty Officer)T: +27 58 718 5284E:naturalscienceqq@ufs.ac.za
We use cookies to make interactions with our websites and services easy and meaningful, to better understand how they are used and to tailor advertising. You can read more and make your cookie choices here. By continuing to use this site you are giving us your consent to do this.