Human food security depends on bees because they pollinate so many of our crop plants. As a result, worldwide declines in both honey bee colonies and solitary bees are causing widespread concern. But faced with declines that seem due to the combination of several factors, including diseases, agricultural chemicals and loss of habitat, researchers urgently need better ways of studying bees in the laboratory.
Now, a team of ecologists from the University of Würzburg, Germany has devised a better way of rearing honey bee larvae in the laboratory that should make it easier to study the causes of their decline.
The current method of rearing bees in the laboratory has major drawbacks. It involves a process known as “grafting”, where the tiny first instar bee larvae around 1mm long are collected using feathers, brushes or needles. As well as being time consuming and demanding considerable skill, the mechanical stress involved in handling causes mortality among the tiny larvae.
To avoid handling the larvae, the researchers allowed honey bee queens to lay eggs directly into an artificial plastic honeycomb about the size of a cigar box. The plastic honeycomb is widely used by professional honey bee queen breeders, and by using in the laboratory the team found rearing bee larvae much easier and more successful.
According to lead author and keen bee-keeper Harmen Hendriksma: “The artificial comb has a hexagonal pattern with 110 holes the size of wax cells. The queen lays her eggs directly into these small plastic cells. Because the back of each cell has a small plastic cup, we can collect the larvae without handling them.”
Before starting his PhD in 2008, Hendriksma spent four years working with a new Dutch company producing honey for medical uses. Seeing it used by queen breeders, he decided to try out the plastic honeycomb in the laboratory.
“Like many people I am a bit lazy and wanted to find a quicker, easier way of rearing honey bees in the laboratory. When I tried using the plastic honeycomb system I found it was just perfect,” he says.
Hendriksma and his colleagues found that when using the plastic honeycomb, almost all (97%) larvae survived. And because it is straightforward and simple to use, researchers were able to collect more than 1,000 larvae in 90 minutes.
By introducing a robust, standardised way of rearing larvae the technique should also help improve the quality of bee research because the results of experiments conducted in different laboratories will be more directly comparable.
The study also shows that applying statistical approaches used in other areas of ecological science can help bee researchers to better analyse their results.
Says Hendriksma: “Bee research is like an arms race, where researchers try and keep up with monitoring emerging new risks to bees. Because so many factors – such as environmental pollution, new agricultural pesticides, bee diseases, changing habitats and bees' genes – may be playing a part in the loss of our bees we need better ways of analysing our results.”
The study was funded by the German ministry for education and research (BMBF, Berlin).
Harmen Pieter Hendriksma, Stephan Härtel and Ingolf Steffan-Dewenter (2011), 'Honey bee risk assessment: New approaches for in vitro larvae rearing and data analyses', doi: 10.1111/j.2041-210X.2011.00099.x, is published in Methods in Ecology and Evolution on Tuesday 22 March 2011.
Notes for editors
1. For further information and photographs please contact Harmen Hendriksma, University of Würzburg, tel: +49 (0)931 31-82385, mob: + 49 (0)15159 996927, email: harmen-pieter.hendriksma@uni-wuerzburg.de
2. Copies of the paper are available from Ben Norman, Wiley-Blackwell, tel: +44 (0)1243 770375, email: lifesciencenews@wiley.com or Gunnar Bartsch, Press Officer, University of Würzburg, tel: +49 (0)931 31-82172, email: bartsch@zv.uni-wuerzburg.de
3. Methods in Ecology and Evolution is published by Wiley-Blackwell for the British Ecological Society. Contents lists are available at www.methodsinecologyandevolution.org
4. The British Ecological Society is a learned society, a registered charity and a company limited by guarantee. Established in 1913 by academics to promote and foster the study of ecology in its widest sense, the Society has 4,000 members in the UK and abroad. Further information is available at www.britishecologicalsociety.org
Gunnar Bartsch | Source: Informationsdienst Wissenschaft
Further information: www.uni-wuerzburg.de
Further Reports about: bee populations > crop plant > Ecological Impact > Ecology > Evolution > honey bee populations > mystery of vanishing bees
More articles from Life Sciences:
The secret of DNA methylation
19.06.2013 | Université de Genève
Study Shows How the Nanog Protein Promotes Growth of Head and Neck Cancer
19.06.2013 | Ohio State University Medical Center
- Biological fermentation process converts CO and CO2 into bioethanol and platform chemicals
- Process uses energy contained in steel plant off-gases
- Ten-year co-operation to develop and market integrated environmental solutions for the steel industry worldwide
Siemens Metals Technologies and LanzaTech have signed a ten-year co-operation agreement to develop and market integrated environmental solutions for the steel industry worldwide. The collaboration will utilize the ground-breaking fermentation technology developed by LanzaTech transforming carbon-rich off-gases generated by the steel industry into low carbon bioethanol and other platform chemicals. ...
Novel application of 3D printing could enable the development of miniaturized medical implants, compact electronics, tiny robots, and more
3D printing can now be used to print lithium-ion microbatteries the size of a grain of sand. The printed microbatteries could supply electricity to tiny devices in fields from medicine to communications, including many that have lingered on lab benches for lack of a battery small enough to fit the ...
... two engines aircraft project “Elektro E6”.
The countdown has been started for opening the gates again for the worldwide leading aviation and space event in Le Bourget, Paris from June 17th - 23rd, 2013.
EADCO & PC-Aero will present at the Paris Air Show in Hall H4 booth F-7 their new future aircraft and innovative project: ...
Siemens scientists have developed new kinds of ceramics in which they can embed transformers.
The new development allows power supply transformers to be reduced to one fifth of their current size so that the normally separate switched-mode power supply units of light-emitting diodes can be integrated into the module's heat sink.
The new technology was developed in cooperation with industrial and research partners who ...
Cheaper clean-energy technologies could be made possible thanks to a new discovery.
Led by Raymond Schaak, a professor of chemistry at Penn State University, research team members have found that an important chemical reaction that generates hydrogen from water is effectively triggered -- or catalyzed -- by a nanoparticle composed of nickel and phosphorus, two inexpensive elements that are abundant on Earth. ...
19.06.2013 | Life Sciences
Rice blast research reveals details on how a fungus invades plants
19.06.2013 | Agricultural and Forestry Science
Gel or whitening? Consumer choice and product organization
19.06.2013 | Studies and Analyses
International Symposium on Morphogenesis
14.06.2013 | Event News
ESMT Annual Forum: CEOs discuss “The Future of Jobs” with international academics and policymakers
13.06.2013 | Event News
Invitation: Mathematics for Industry and Society in the French Embassy Berlin, 04. - 05.07.2013
10.06.2013 | Event News