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08 October 2020 | Story Leonie Bolleurs | Photo Supplied
Dr Cornel Bender
Dr Cornel Bender received her PhD qualification at the virtual graduation ceremonies in October. The title of her thesis is: Stem rust resistance in South African wheat and triticale.

The rapid distribution of disease-causing organisms such as Ug99, a wheat stem-rust pathotype, pointed out just how vulnerable global cereal production is to disease outbreaks.

These cereals include wheat, barley, rye, oats, triticale, rice, maize, and millet and are one of the most important food sources for human consumption.

According to Dr Cornel Bender, the projected world population of 10 billion in 2057 requires a growth of more than 40% in cereal production. Wheat is grown on more hectares than any other cereal and is one of the most important sources of calories for humans. However, the growth rate of wheat yields has declined from the 1960s to the 1990s. Therefore, it is essential to increase global wheat production.

“With the regular appearance of more aggressive stem rust pathotypes in South Africa, there is a constant need to discover new sources of resistance, understand the genetic base of presently deployed sources in wheat, triticale and barley cultivars, and to manipulate the deployment of resistant sources through a more sustainable approach,” says Dr Bender.

Her PhD thesis, titled: Stem rust resistance in South African wheat and triticale, includes various fundamental aspects for the effective management of stem rust in South Africa.

Dr Bender is a Professional Officer in the Division of Plant Pathology in the Department of Plant Sciences, who received her PhD at the virtual graduation ceremonies in October.

Innovative and cost effective

Her promotors, Prof Zakkie Pretorius, Research Fellow, and Dr Willem Boshoff, Senior Lecturer in the Department of Plant Sciences, believe that she used an innovative approach to develop a cost-effective phenotyping method to select for more durable resistance types in a controlled greenhouse environment.

“In the past, results obtained from field trials used to assess adult plants for stem-rust resistance, were often influenced by abiotic factors, were seasonable in nature, expensive, and time consuming; therefore, the development of a dependable greenhouse screening system provides an important additional instrument for rust research,” says Dr Bender.

She adds that the greenhouse technique is used worldwide to screen for adult plant resistance and contribute to save time and money.

Broadening our knowledge

“Inheritance studies were undertaken to determine the genetic base of stem-rust resistance in selected South African wheat and triticale cultivars (developed from wheat/rye crosses) through seedling analysis as well as greenhouse and fieldwork,” she says.

Dr Bender believes the use and development of different resistance screening methods, the elucidation of host genetics, as well as the use of histological and microscopic methods to study early resistance responses, broaden our knowledge and understanding of stem-rust resistance in South African wheat and triticale cultivars.

Ultimately, rust researchers, grain producers, and also the general public – through access to their daily bread – will benefit from her study.

News Archive

UFS receives R3,284 million to research biosafety of genetically modified crops
2009-03-17

A testing facility at the University of the Free State (UFS), which is the only one of its kind in South Africa and a leader in its field in Africa, has received a grant of R3,284 million from the South African National Biodiversity Institute (SANBI) to do research on the biosafety of genetically modified crops in South Africa.

Prof. Chris Viljoen of the Genetically Modified Organisms (GMO) Testing Facility at the UFS says the grant forms part of a collaborative agreement between South Africa and Norway on the biosafety of GMOs.

The grant also makes provision for two M.Sc. bursaries as well as a regional biosafety workshop.

The research will focus on gene flow between genetically modified (GM) maize and non-GM maize and the potential impact thereof on the development of insect resistance.

Prof. Viljoen, who is head of Human Molecular Biology in the Department of Haematology and Cell Biology, says it is an honour to be selected to take part in the project and is groundbreaking in terms of GM maize on the environment. The project was initiated in 2009 and will run until the end of 2010.

The multi-institutional research include partners from the UFS, research groups from the University of North-West, the University of Fort Hare as well as SANBI and GenØk, the Norwegian centre for Gene Ecology. The GMO Testing Facility at the UFS was established in 2003 to perform routine GM detection for grain and food products in South Africa. The activities also include research into GM detection and biosafety of GM crops.

Media Release
Issued by: Lacea Loader
Assistant Director: Media Liaison
Tel: 051 401 2584
Cell: 083 645 2454
E-mail: loaderl.stg@ufs.ac.za
17 March 2009
 
 
Prof. Chris Viljoen of the Genetically Modified Organisms (GMO) Testing Facility at the UFS.
Photo: Supplied

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