Forum for Science, Industry and Business
Sponsored by:     Siemens  n-tv 
Search our Site:

Topic (optional):

 

Home Reports Life Sciences Content

Transformational Fruit Fly Genome Catalog Completed

next article
09.02.2012

Scientists searching for the genomics version of the holy grail – more insight into predicting how an animal’s genes affect physical or behavioral traits – now have a reference manual that should speed gene discoveries in everything from pest control to personalized medicine.

 

In a paper published today in Nature, North Carolina State University genetics researchers team with scientists from across the globe to describe the new reference manual – the Drosophila melanogaster Reference Panel, or DGRP.


Dr. Trudy Mackay, William Neal Reynolds and Distinguished University Professor of Genetics and one of the paper’s lead authors, says that the reference panel contains 192 lines of fruit flies that differ enormously in their genetic variation but are identical within each line, along with their genetic sequence data.

These resources are publicly available to researchers studying so-called quantitative traits, or characteristics that vary and are influenced by multiple genes – think of traits like aggression or sensitivity to alcohol. Mackay expects the reference panel will benefit researchers studying everything from animal evolution to animal breeding to fly models of disease.

Environmental conditions also affect quantitative traits. But studying the variations of these different characteristics, or phenotypes, of inbred fruit flies under controlled conditions, Mackay says, can greatly aid efforts to unlock the secrets of quantitative traits.

“Each fly line in the reference panel is essentially genetically identical, but each line is also a different sample of genetic variation among the population,” Mackay says. “So the lines can be shared among the research community to allow researchers to measure traits of interest.”

The Nature paper showed that, in general, many genes were associated with three quantitative traits studied in fruit flies – resistance to starvation stress, chill coma recovery time and startle response – and that the effects of these genes were quite large.

“Until now, we had the information necessary to understand what makes a fruit fly different from, say, a mosquito,” Mackay says. “Now we understand the genetic differences responsible for individual variation, or why one strain of flies lives longer or is more aggressive than another strain.”

The study was funded by the National Institutes of Health, the National Human Genome Research Institute and the NVIDIA Foundation’s “Compute the Cure” program. Dr. Eric Stone, associate professor of genetics at NC State, is also a lead author of the paper, along with colleagues from Baylor College of Medicine and the Universitat Autonoma de Barcelona in Spain.

Note to editors: An abstract of the paper follows.

The Drosophila melanogaster Genetic Reference Panel
Authors: Trudy F.C. Mackay, Eric A. Stone, Michael M. Magwire, Mary Anna Carbone, Robert R.H. Anholt, Laura Duncan, Zeke Harris, Katherine W. Jordan, Faye Lawrence, Richard F. Lyman, Lavanya Turlapati, Akihiko Yamamoto, North Carolina State University; Stephen Richards, Baylor College of Medicine; Antonio Barbadilla, Campus Universitat Autonoma de Barcelona; et al

Published: Feb. 9, 2012, in Nature

Abstract: A major challenge of biology is understanding the relationship between molecular genetic variation and variation in quantitative traits, including fitness. This relationship determines our ability to predict phenotypes from genotypes and to understand how evolutionary forces shape variation within and between species. Previous efforts to dissect the genotype-phenotype map were based on incomplete genotypic information. Here, we describe the Drosophila melanogaster Genetic Reference Panel (DGRP), a community resource for analysis of population genomics and quantitative traits. The DGRP consists of fully sequenced inbred lines derived from a natural population. Population genomic analyses reveal reduced polymorphism in centromeric autosomal regions and the X chromosome, evidence for positive and negative selection, and rapid evolution of the X chromosome. Many variants in novel genes, most at low frequency, are associated with quantitative traits and explain a large fraction of the phenotypic variance. The DGRP facilitates genotype-phenotype mapping using the power of Drosophila genetics.

Media Contacts: Dr. Trudy Mackay, 919/515-5810 or trudy_mackay@ncsu.edu
Mick Kulikowski, News Services, 919/515-8387 or mick_kulikowski@ncsu.edu

Dr. Trudy Mackay | Source: Newswise Science News
Further information: www.ncsu.edu

next article

More articles from Life Sciences:

nachricht New technique reveals unseen information in DNA code
18.05.2012 | University of Chicago

nachricht Biologists Produce Potential Malarial Vaccine from Algae
18.05.2012 | University of California, San Diego

All articles from Life Sciences >>>
The most recent press releases about innovation >>>

Overview of the latest five Focus news of the innovations-report:
In the focus: A supernova cocoon breakthrough

The first evidence in X-rays of a supernova shock wave breaking through a cocoon of gas around the star has been found.

This discovery may help explain why some supernova explosions are more powerful than others.

This supernova is called SN 2010jl and is found in a galaxy about 160 million light years from Earth.

SN 2010jl was first spotted by astronomers on November 3, 2010, and probably exploded about a month before that.

Observations with NASA's Chandra X-ray Observatory have provided the first X-ray evidence of a supernova shock wave breaking through a cocoon of gas surrounding the star that exploded. This discovery may help astronomers understand why some supernovas are much more powerful than others.

On November 3, 2010, a supernova was ...

In the focus: Fuel for the black hole

An international research team led by Gerd Weigelt from the Max-Planck-Institut für Radioastronomie in Bonn reports on high-resolution studies of an active galactic nucleus.

The use of near-infrared interferometry allowed the team to resolve a ring-shaped dust distribution (generally called "dust torus") in the inner region of the nucleus of the active galaxy NGC 3783. This method is able to achieve an angular resolution equivalent to the resolution of a telescope with a diameter ...

In the focus: Big-mouthed babies drove the evolution of giant island snakes

Some populations of tiger snakes stranded for thousands of years on tiny islands surrounding Australia have evolved to be giants, growing to nearly twice the size of their mainland cousins. Now, new research in The American Naturalist suggests that the enormity of these elapids was driven by the need to have big-mouthed babies.

Mainland tiger snakes, which generally max out at 35 inches (89 cm) long, patrol swampy areas in search of frogs, their dietary staple. When sea levels rose around 10,000 years ago, some tiger snakes found themselves marooned on islands that would become dry and frog-free. With their favorite food gone, ...

In the focus: Black holes turn up the heat for the Universe

HITS astrophysicists discover a new heating source in cosmological structure formation

So far, astrophysicists thought that super-massive black holes can only influence their immediate surroundings. A collaboration of scientists at the Heidelberg Institute for Theoretical Studies (HITS) and in Canada and the US now discovered that diffuse gas in the universe can absorb luminous gamma-ray emission from black holes, heating it ...

In the focus: German astronomers finish Europe’s largest solar telescope on Tenerife

After ten years of development, the new German solar telescope GREGOR will start operating at the Spanish Observatorio del Teide of the Instituto de Astrofísica de Canarias on Tenerife. It is the largest solar telescope in Europe and number three worldwide.

It will provide the German and the international community of solar physicists with new and better instrumentation which will enable them to investigate our home star in unprecedented detail.

Studying the Sun is a key to understand the physical processes on and in the majority of stars. Moreover, there is ...

All Focus news of the innovations-report >>>

B2B Search

Product / Service
Company / Organisation

Latest News

New technique reveals unseen information in DNA code

18.05.2012 | Life Sciences

Biologists Produce Potential Malarial Vaccine from Algae

18.05.2012 | Life Sciences

Listening to Chickens Could Improve Poultry Production

18.05.2012 | Agricultural and Forestry Science

VideoLinks
B2B-VideoLinks
More VideoLinks >>>

Event News

SecureCloud 2012 in Frankfurt

10.05.2012 | Event News

WWU hosts Germany’s Biggest Giftedness Congress

09.05.2012 | Event News

Neuroscientists Discuss Latest Research Results in Potsdam

08.05.2012 | Event News