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07 February 2018 Photo ICC
Raynard named captain of the Team of the Tournament at U-19 World Cup
Raynard van Tonder, right, is congratulated by fellow player Hermann Rolfes after scoring his second century against Bangladesh at the U-19 Cricket World Cup in New Zealand.

Raynard van Tonder was rewarded for an outstanding U-19 World Cup in New Zealand when he was named as the captain of the Team of the Tournament, announced by the International Cricket Council on Sunday.

The Kovsie cricketer, who captained the South African team to fifth place, ended with the third-most runs in the tournament; 348 in six matches at an impressive average of 69.6. He scored two centuries (one of three players to achieve this) and one 50. It included a knock of 143 against Kenya, which was the fifth-highest in the tournament. With that, the 19-year-old also recorded the third-highest score ever by a South African in an U-19 One Day International.

Van Tonder is studying a BSocSci at the University of the Free State (UFS).

Congratulations from CSA

“It is heartening to know
that we continue to produce
quality players and leaders.”
—Thabang Moroe
Acting Chief Executive
of Cricket South Africa

“Raynard deserves a special commendation for being chosen as the best leader at the tournament. This follows on our 2014 captain, Aiden Markram (currently leading the Proteas in the one-day series against India), who was chosen as Player of the Tournament back then.

“It is heartening to know that we continue to produce quality players and leaders through our talent pipeline system,” commented acting chief executive of Cricket South Africa (CSA), Thabang Moroe.

The Team of the ICC U-19 Cricket World Cup was selected by a panel that comprised former Windies fast bowler Ian Bishop, former India women’s captain Anjum Chopra, former New Zealand captain Jeff Crowe, journalist Shashank Kishore and former Australia all-rounder Tom Moody.

News Archive

Breeding of unique game requires a balance between conservation and sustainable use
2014-05-20

 

Game bred for qualities such as unconventional hair colour or horn quality, may on the long term have unexpected consequences for biodiversity and game farming.

This is according to the inaugural lecture of Prof Paul Grobler from the Department of Genetics at the University of the Free State (UFS).

Prof Grobler feels that the consequences of selective breeding should be examined carefully, as there is currently much speculation on the subject without sound scientific information to back it.

“At the moment, colour variation invokes much interest among game farmers and breeders. Unusual colour variants are already available in different game species. These unusual animals usually fetch much higher prices at auctions compared to prices for the ‘normal’ individuals of the species.”

Examples of these unusual variants are springbuck being bred in white, black or copper colours, the black-backed or ‘saddleback’ impala, and the gold-coloured and royal wildebeest.

A black-backed impala was recently sold for R5,7 million.

“Based on genetic theory, good reason exists why these practices need to be monitored, but one should also take care not to make the assumption that selective breeding will inevitably lead to problems,” warns Prof Grobler.

Grobler says that negative characteristics in a species can sometimes unwittingly be expressed during the selection process for a unique colour. “It is seen, for example, in purebred dogs where the breeding of a new race sometimes brings underlying genetic deviations in the species to the front.” He also believes that some of these animals may not be able to adapt to changing environmental conditions.

“However, one should also look at the positive side: because of the good demand for game, including unusual variants, there is much more game in South Africa today than in many decades. Balance should be found between the aims of conservation and the sustainable utilisation of game.”

Research at the UFS’s Department of Genetics is now trying to establish the genetic effects of intensive game breeding and predict the impact on biodiversity.

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