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27 September 2019 | Story Ruan Bruwer | Photo Tania Allen
Netball
The Kovsies will face the Maties in the semi-finals of Varsity Netball in search of their fourth appearance in a final.

On Monday (30 September), the University of the Free State (UFS) netball team will have an ideal opportunity for revenge for what happened in this year’s Varsity Cup. In the semi-finals of the Varsity Cup back in April, the Shimla rugby team received a decent hiding from the Maties.

Now the UFS and Maties will face each other in another semi-final, this time in the netball version of the Varsity Cup, called Varsity Netball. The teams square off in the Callie Human Centre at 17:00.

Since losing to Tuks in the opening round, Kovsies have built up good momentum and confidence with six consecutive victories, including one over the Stellenbosch students on Monday (23 September). The score was 65-61.

The other wins were against UJ (69-35), TUT (64-20), NWU (59-55), Madibaz (70-41), and UWC (99-18), earning them the second spot on the log behind Tuks. The 99 goals against UWC were their best ever in the competition.The Free State women also won their encounter against Maties at this year’s USSA tournament by 38-31.

A victory would earn the team a shot at another Varsity Netball title. They have never lost a final, having appeared in three previous finals (2013, 2014, and 2018). Kovsies have won three of their previous five Varsity Netball semi-finals. They had met Maties only once before in a semi-final. This was last year in Bloemfontein when Kovsies prevailed by 56-45.
Khomotso Mamburu, goal defence of Maties, and Adéle Niemand, their assistant coach, both represented the Kovsies for many years.

News Archive

Researcher works on finding practical solutions to plant diseases for farmers
2017-10-03

 Description: Lisa read more Tags: Plant disease, Lisa Ann Rothman, Department of Plant Sciences, 3 Minute Thesis,  

Lisa Ann Rothman, researcher in the Department of
Plant Sciences.
Photo: Supplied

 


Plant disease epidemics have wreaked havoc for many centuries. Notable examples are the devastating Great Famine in Ireland and the Witches of Salem. 

Plant diseases form, due to a reaction to suitable environments, when a susceptible host and viable disease causal organism are present. If the interactions between these three factors are monitored over space and time the outcome has the ability to form a “simplification of reality”. This is more formally known as a plant disease model. Lisa Ann Rothman, a researcher in the Department of Plant Sciences at the University of the Free State (UFS) participated in the Three Minute Thesis competition in which she presented on Using mathematical models to predict plant disease. 

Forecast models provide promise fighting plant diseases
The aim of Lisa’s study is to identify weather and other driving variables that interact with critical host growth stages and pathogens to favour disease incidence and severity, for future development of risk forecasting models. Lisa used the disease, sorghum grain mold, caused by colonisation of Fusarium graminearum, and concomitant mycotoxin production to illustrate the modelling process. 

She said: “Internationally, forecasting models for many plant diseases exist and are applied commercially for important agricultural crops. The application of these models in a South African context has been limited, but provides promise for effective disease intervention technologies.

Contributing to the betterment of society
“My BSc Agric (Plant Pathology) undergraduate degree was completed in combination with Agrometeorology, agricultural weather science. I knew that I wanted to combine my love for weather science with my primary interest, Plant Pathology. 
“My research is built on the statement of Lord Kelvin: ‘To measure is to know and if you cannot measure it, you cannot improve it’. Measuring the changes in plant disease epidemics allows for these models to be developed and ultimately provide practical solutions for our farmers. Plant disease prediction models have the potential ability to reduce the risk for famers, allowing the timing of fungicide applications to be optimised, thus protecting their yields and ultimately their livelihoods. I am continuing my studies in agriculture in the hope of contributing to the betterment of society.” 

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