Newsletter Subscription
Your e-mail:

Current News

Country:
Operation:
Search for:
Overview Companies Countries Top News Tag Clouds
All   Business   Career   Cooperation   Finances   Laws   Manufacturing   Market
People   Politics   Products   Research   Technology

Contact | Print version | PDF version | Send article | RSS-FeedRSS-Feed

New research may reduce global need for nitrogen fertilizers

30 Jun 2006 - Scientists at the John Innes Centre (JIC), Norwich and Washington State University, USA have managed to trigger nodulation in legumes, a key element of the nitrogen fixing process, without the bacteria normally necessary. This is an important step towards transferring nodulation, and possibly nitrogen fixation, to non-legume crops which could reduce the need for inorganic fertilizers.

 
The researchers, funded by the Biotechnology and Biological Sciences Research Council (BBSRC), the Royal Society and the US National Science Foundation, have used a key gene that legumes require to establish the interaction with the nitrogen-fixing bacteria to trigger the growth of root nodules, even in the absence of the bacteria.
 
The fixation of nitrogen by some plants is critical to maintaining the health of soil as it converts the inert atmospheric form of nitrogen into compounds usable by plants. Legumes, as used in this study, are an important group of plants as they have the ability to fix nitrogen - which they owe to a symbiotic relationship with nitrogen-fixing bacteria in root nodules. Legumes are often used as a rotation crop to naturally enhance the nitrogen content of soils. Scientists have been working for a number of years to understand the symbiosis between legumes and rhizobial bacteria, with the hope that one day they can transfer this trait to crop plants, the majority of which cannot fix nitrogen themselves.
 
Intensive crop agriculture depends heavily on inorganic fertilisers that are often used to provide nutrients particularly nitrogen that are critical for plant growth. The production of nitrogen fertilisers requires a large amount of energy and is estimated to constitute approximately 50 per cent of the fossil fuel usage of the modern agricultural process. Inorganic fertilizers also cause environmental problems associated with leeching into our water systems.
 
Dr Giles Oldroyd is the research leader at JIC. He said: "We now have a good understanding of the processes required to activate nodule development. The nodule is an essential component of this nitrogen fixing interaction as it provides the conditions required for the bacteria. Nodules are normally only formed when the plant perceives the presence of the bacteria. The fact that we can induce the formation of nodules in the plant in the absence of the bacteria is an important first step in transferring this process to non-legumes. If this could be achieved we could dramatically reduce the need for inorganic nitrogen fertilizers, in turn reducing environmental pollution and energy use. However, we still have a lot of work before we can generate nodulation in non-legumes."
 
Contact / Request Information

Additional information

Biotechnology and Biological Sciences Research Council (BBSRC)
Swindon, Wiltshire, United Kingdom

News

-  27 Mar 2008 - Popular apple variety harbors unusual cell growth
-  17 Oct 2006 - Caterpillars tell us how bacteria cause disease
-  16 May 2006 - Scientists unlock more secrets of HIV and SARS
 more news

John Innes Centre
Norwich, United Kingdom

News

-  10 Aug 2006 - Medicago and PBL sign license agreements for PBL's bipartite expression and related technologies
 
MyBionity.COM
Top  
© 2001-2008 Chemie.DE Information Service GmbH
a Life Science Network Division
 www.Chemie.DE   www.Bionity.COM   www.ChemEurope.COM   www.ChemieKarriere.NET   www.BioKarriere.NET