Farming News - Scientists collaborate to combat crop rusts

Scientists collaborate to combat crop rusts


Seven scientific teams from the John Innes Centre (JIC), The Sainsbury Laboratory (TSL) and The Genome Analysis Centre (TGAC), have joined forces in the fight against rust fungi which can cut crop yields by up to 80 percent.

 

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The newly formed Norwich Rust Group (NRG) aims to develop improved resistance in crops. Exploiting advances in genomics, scientists will investigate how parasitic rust fungi invade and feed off plants. They will also use the new knowledge and techniques to locate genes in some varieties of crops that can resist invasion.

 

The task won't be easy, though; there are more than 7,000 species of rust fungi, some of which are among agriculture's most devastating pathogens. These include Wheat Stem Rust, Wheat Yellow (Stripe) Rust , Asian Soybean Rust and Coffee Rust.

 

Rust fungi cause billions of pounds of losses every year worldwide. Counter-measures to control rust diseases rely on fungicides, which are highly regulated, environmentally unfriendly and expensive. In the developing world where growers often cannot afford fungicides, rust fungi have the potential to cause rising food prices, hunger and malnutrition.


Professor Cyril Zipfel, Senior Group Leader and Head of TSL, said, "World-wide, the many different varieties of fungal rust cost billions annually in crop losses and fungicidal treatments. In developing countries they can lead to hunger and malnutrition. Until recently we simply didn't have the technology to understand how they worked. Advances in genomics and scientific research in this area mean we are able to get a better grip of rust pathogens and to investigate how to make plants resistant to them."


According to the newly-founded collaboration, it has been estimated that the annual global loss of flour as a result of wheat stem rust alone would almost meet the annual calorie needs of the entire undernourished population of sub-Saharan Africa.

 

The biology of rust fungi is still poorly understood compared to other important plant pests, mostly because they only grow and spread on a living host, which has made it harder to research rusts in laboratories.

 

The fungi's genes have also presented problems to scientists. However, recent advances in sequencing technology have allowed researchers to obtain the genomes of many rust fungi and their respective hosts. This has revolutionised the way scientists carry out their research; it is now possible to understand the mechanisms these fungi use to infect plants, as well as key genes that plants have to resist infections.

 

The Norwich Rust Group (NRG) is made up of Drs Peter van Esse, Ksenia Krasileva, Matthew Moscou, Benjamin Petre, Diane Saunders, Cristobal Uauy and Brande Wulff. Their combined research interests range from detailed understanding of how pathogens cause disease through to the breeding of resistance in the host plants. They specifically focus on rust pathogens that infect agriculturally and economically important plants such as wheat, barley and soybean.

 

NRG aims to become a hub for rust research and already has 52 collaborators in 23 countries around the world - all driven to develop new technologies and approaches to combat rust fungi efficiently.


Commenting on the collaboration, which was announced last week, Professor Dale Sanders, Director of the John Innes Centre said, "This is a very exciting collaboration between three institutes with world-leading scientific expertise in genetics, plants and plant pathogens. The fact that the seven scientific teams in the Norwich Rust Group are within walking distance of each other on the Norwich Research Park means they can work as a single force, with open access to each other's complementary expertise and technologies."