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Alistair Naidoo, second-year master’s student in Conservation Genetics and full-time technician in the Department of Genetics; Prof Paul Grobler, Head of the Department of Genetics; Prof Gordon Luikart; and Hannah Janse van Vuuren, third-year master’s student in Conservation Genetics.

It is an important and exciting time to be doing research in conservation genetics. This is according to Prof Gordon Luikart, Professor of Conservation Ecology and Genetics at the Flathead Lake Bio Station at the University of Montana in the United States. 

Prof Luikart, whose primary research focus is the application of genetics to the conservation of natural and managed populations, recently delivered a lecture, The Expanding Role of Genetics/omics in Wildlife Research and Conservation, on the Bloemfontein Campus of the University of the Free State (UFS). The lecture, hosted by the Department of Genetics, was attended by a group of students and lecturers in conservation and a number of related fields. 

He is one of the leading scientists in the field of conservation genetics, including integration of genomics in conservation projects. He is also co-author of the textbook Conservation and the Genomics of populations – the current prescribed textbook for GENE3744.

Species threatened with extinction

In 2008, the International Union for Conservation of Nature (IUCN) stated that approximately 10-20% of all vertebrate and plant species are threatened with extinction over the next few decades. In 1984, American biologist Edward O Wilson also said that it will take millions of years to correct the ongoing loss of genetics and species diversity caused by the destruction of natural habitats. “This is the folly our descendants are least likely to forgive us.”

Prof Luikart is of the opinion that genetics has enormous potential to help manage wildlife and prevent extirpation. “My research works to realise this potential and help wildlife managers conserve populations and ecosystems,” he says. 

Conservation managers and biologists have understood the risks of inbreeding for more than 100 years. In his lecture, one of the aspects of genetic conservation he focused on, was the negative effects of inbreeding and how this can be reversed using genetic rescue. 

With the genetic rescue study, they found that the gene flow into recently isolated populations can increase individual fitness and population growth. He proposed that conservation managers should consider genetic principles and rescue as practical and important tools. 

Prof Luikart also provided a list of information that can be retrieved from molecular genetic data to help conservation managers. This includes intel on census and effective population size, gene flow and dispersal, local adaptation and selection, forensics, genetic identification and law enforcement, and disease ecology and transmission. 

Non-invasive genetic monitoring

In terms of detecting gene flow, he focused on a study about non-invasive genetic monitoring that was conducted in the Yellowstone Park. Prof Luikart and a group of students collected the shed hair and faeces of the grizzly bear, obtained from trees and hair traps, which were used as a source of DNA. 

They established, for instance, that inbreeding depression is more common and stronger than previously thought in natural populations. Genetic monitoring, using non-invasive methods as described, has been found to be an effective tool that conservation managers should consider for detecting inbreeding and loss of genome-wide variation.

His research on the bighorn sheep, the alpine ibex, and the black bear informed most of the findings he discussed during his lecture.

News Archive

Groundbreaking research underway to improve health in the Free State
2009-04-06

 
Some of the researchers in the project, are from the left, back: Dr Sanet van Zyl, Dr Lynette van der Merwe (both of Basic Medical Sciences), Ms Michélle Pienaar (Ph.D. student Nutrition and Dietetics), Prof. Corinna Walsh (project leader, Nutrition and Dietetics) and Dr Dries Groenewald (Chemical Pathology); front: Mr Llewellyn Fourie (M.Sc. student, Nutrition and Dietetics) and Mrs Marleze van Rhyn (Van Rensburg Patoloë).
Photo: Supplied.
Groundbreaking research underway to improve health in the Free State

Ahead of World Health Day on Tuesday 7 April, researchers at the University of the Free State (UFS) have announced that they are involved in an extensive research project to determine how life in urban and rural areas influences the lifestyle of the communities and contributes to lifestyle illnesses such as obesity, diabetes and heart diseases, as well malnutrition.

According to the researchers of the Faculty of Health Sciences at the UFS, the study in various suburbs of Mangaung is a long-term project known as Assuring Health for All in the Free State (AHA-FS) and will monitor communities every three years for a period of twelve years.

Prof. Corinna Walsh of the Department Nutrition and Dietetics is the project leader and works closely with researchers in the departments of Basic Medical Sciences and Chemical Pathology of the School of Medicine in the faculty.

A total of 36 researchers and field workers are involved in the project and information on various nutrition and health aspects are gathered. Those include diet, physical activity, health, knowledge, practices and attitude towards nutrition.

Medical examinations, anthropometric measuring (of the human body) and various blood tests will be done in the study and extensive data on 1 200 people will be available in the end.

The data gathered will be used in intervention programmes planned to prevent and address health programme in these communities.

Media Release
Issued by: Mangaliso Radebe
Assistant Director: Media Liaison
Tel: 051 401 2828
Cell: 078 460 3320
E-mail: radebemt.stg@ufs.ac.za  
06 April 2009

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