From Genes to Genomes: Beyond Biodiversity in Spain’s Rio Tinto
Open Access
- 1 April 2003
- journal article
- Published by University of Chicago Press in The Biological Bulletin
- Vol. 204 (2) , 205-209
- https://doi.org/10.2307/1543560
Abstract
Spain's Rio Tinto, or Red River, an example of an extremely acidic (pH 1.7-2.5) environment with a high metal content, teems with prokaryotic and eukaryotic microbial life. Our recent studies based on small-subunit rRNA genes reveal an unexpectedly high eukaryotic phylogenetic diversity in the river when compared to the relatively low prokaryotic diversity. Protists can therefore thrive in and dominate extremely acidic, heavy-metal-laden environments. Further, because we have discovered protistan acidophiles closely related to neutrophiles, we can hypothesize that the transition from neutral to acidic environments occurs rapidly over geological time scales. How have these organisms adapted to such environments? We are currently exploring the alterations in physiological mechanisms that might allow for growth of eukaryotic microbes at acid extremes. To this end, we are isolating phylogenetically diverse protists in order to characterize and compare ion-transporting ATPases from cultured acidophiles with those from neutrophilic counterparts. We predict that special properties of these ion transporters allow protists to survive in the Rio Tinto.Keywords
This publication has 7 references indexed in Scilit:
- Eukaryotic diversity in Spain's River of FireNature, 2002
- Microbial Community Composition and Ecology of an Acidic Aquatic Environment: The Tinto River, SpainMicrobial Ecology, 2001
- A Comparative Ecological Study of Two Acidic Rivers in Southwestern SpainMicrobial Ecology, 1999
- Bioleaching and interrelated acidophilic microorganisms from río tinto, SpainGeomicrobiology Journal, 1993
- A tandem pair of Leishmania donovani cation transporting ATPase genes encode isoforms that are differentially expressedMolecular and Biochemical Parasitology, 1989
- Protozoa in Planktonic Food Webs1,2The Journal of Protozoology, 1985
- Effects of Environmental pH on the Internal pH of Chlorella pyrenoidosa, Scenedesmus quadricauda, and Euglena mutabilisPlant Physiology, 1981