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22 July 2019 | Story Ruan Bruwer | Photo Allan McKenzie
Karla Pretorius
Karla Pretorius (left) receiving the trophy as the Player of the Tournament at the Netball World Cup.

Karla Pretorius downplayed all the praise and rather credited her team after she received the biggest accolade in world netball.

The former netball player of the University of the Free State was named Player of the Tournament after the conclusion of the Netball World Cup on Sunday 21 July 2019, making her officially the world’s best netballer.

“I feel very honoured and grateful to have been named the best player. You are only as good as those you surround yourself with. So, a massive thanks to the team who did so well,” she said about the Proteas who had their best showing at the tournament in 24 years. They finished fourth. 

“This good run was obviously what inspired me to play as well as I did, and I am grateful to have been given this very special award,” Pretorius said. 

‘Carried herself with huge distinction’

She represented and later captained the Kovsies between 2009 and 2015. During that time, she scooped one award after the other. In 2014 and 2015, she was the Varsity Player of the Year.

Pretorius was twice named as the Player of the Match during the World Cup, and her 20 intercepts were the joint third most.

She completed her master’s in Dietetics at the UFS last year (2018) and is now playing professional netball in Australia.

According to the organisers, the Player of the Tournament celebrates “the outstanding performance of one particular player who, more than anyone else, exemplified her country’s desire to put themselves back among the elite of world netball”. 
“The fact that South Africa reached the final four for the first time since 1995, is in no small way thanks to her impeccable reading of the game, timing, and composure. She has carried herself both on and off court with huge distinction, and has rightly claimed this honour,” they said.

News Archive

Extending new discoveries in the deep subsurface – UFS paper published in Nature Communications
2015-11-30



Scanning electron microscopy of some of the Eukarya recovered from two different mines. (a) Dochmiotrema sp. (Plathyelminthes), (b) A. hemprichi (Annelida), (c) Mylonchulus brachyurus (Nematoda), (d) Amphiascoides (Arthropoda). Scale bar, 50 µm (a,b), 100 µm (c), 20 µm (d).

Following the discovery of the first Eukarya in the deep subsurface (Nature, 2010) by a research group from the Department of Microbial, Biochemical, and Food Biotechnology at the University of the Free State (UFS) and their international collaborators, intense interest has developed in understanding the diversity of more complex organisms living in these extreme environments.

Prof Gaetan Borgonie from Extreme Life Isyensya, together with a group of UFS researchers, took this research further, resulting in a paper on this research released in Nature Communications – impact factor 11.47.  This paper is an extension of the first reports of more complex life at great depths, and their abilities to survive these harsh conditions.

Ten authors from the UFS contributed with the array of expertise needed to define this discovery. The group was supported by staff from the different mining groups, long-term leading collaborators from the USA and Canada, and the idea specialist driver of the paper, Prof Borganie.

“After a sampling campaign that lasted more than two years, we identified that Platyhelminthes, Rotifera, Annelida and Arthropoda are thriving at 1.4 km depths in fissure water up to 12,000-years old in the South African mines of Driefontein and Kopanang,” said Prof Borgonie, who was appointed as associated researcher in the Department of Microbial, Biochemical, and Food Biotechnology.

This paper really opens a “can of worms” so to speak. According to Prof Esta van Heerden from the Department of Microbial, Biochemical and Food Biotechnology at the UFS they extended to define protozoa and fungi. “However, they are present in low numbers,” she said.

Characterisation of the different species reveals that many are opportunistic organisms. In house-adapted video equipment was used to film inside the fissure for the home of the organisms.

This is the first-known study to demonstrate the in situ distribution of biofilms on fissure rock faces using video documentation. Calculations suggest that food, not dissolved oxygen, is the limiting factor for population growth. The discovery of a group of complex multicellular organisms in the underground has important implications for the search for life on other planets in our solar system.

More articles

The strange beasts that live in solid rock deep underground
A microscopic ‘zoo’ is found deep, deep underground

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