Published May 30, 2007 | Version v1
Journal article Open

Experimental Selection for Drosophila Survival in Extremely Low O2 Environment

  • 1. University of California San Diego
  • 2. The Scripps Research Institute
  • 3. Albert Einstein College of Medicine
  • 4. University of Rochester
  • 5. University of Chicago

Description

Background: Cellular hypoxia, if severe enough, results usually in injury or cell death. Our research in this area has focused on the molecular mechanisms underlying hypoxic tissue injury to explore strategies to prevent injury or enhance tolerance. The current experiments were designed to determine the genetic basis for adaptation to long term low O2 environments.

Methodology/Principal Findings: With long term experimental selection over many generations, we obtained a Drosophila melanogaster strain that can live perpetually in extremely low, normally lethal, O2 condition (as low as 4% O2). This strain shows a dramatic phenotypic divergence from controls, including a decreased recovery time from anoxic stupor, a higher rate of O2 consumption in hypoxic conditions, and a decreased body size and mass due to decreased cell number and size. Expression arrays showed that about 4% of the Drosophila genome altered in expression and about half of the alteration was down-regulation. The contribution of some altered transcripts to hypoxia tolerance was examined by testing the survival of available corresponding P-element insertions (and their excisions) under extremely low O2 conditions. We found that down-regulation of several candidate genes including Best1, broad, CG7102, dunce, lin19-like and sec6 conferred severe hypoxia tolerance in Drosophila.

Conclusions/Significance: We have identified a number of genes that play an important role in the survival of a selected Drosophila strain in extremely low O2 conditions, selected by decreasing O2 availability over many generations. Because of conservation of pathways, we believe that such genes are critical in hypoxia adaptation in physiological or pathological conditions not only in Drosophila but also in mammals.

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Additional details

Identifiers

DOI
10.1371/journal.pone.0000490
Other
oai:uchicago.tind.io:10788

Funding

National Institutes of Health
RO1NS037756
National Institutes of Health
PO1HD032573
Helen Hay Whitney Foundation
postdoctoral fellowship
W.M. Keck Foundation
Beckman Foundation

UChicago Information

Division(s)
Biological Sciences Division
Department(s)
Ecology and Evolution, Human Genetics
Center(s) or Institute(s)
Institute for Genomics and Systems Biology