4.7 Article

Microalgal adaptation to a stressful environment (acidic, metal-rich mine waters) could be due to selection of pre-selective mutants originating in non-extreme environments

Journal

ENVIRONMENTAL AND EXPERIMENTAL BOTANY
Volume 64, Issue 1, Pages 43-48

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.envexpbot.2008.01.001

Keywords

acidic environments; adaptation; Dictyosphaerium; natural selection; pre-selective mutations

Funding

  1. Herbarium, Department of Botany and Plant Pathology, Oregon State University, USA [CGL2004-02701/HID, CGL2005-01938/BOS, P05-RNM-00935]

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At least six species of eukaryotic microalgae inhabit the acidic (pH 2.4-2.7), metal-rich mine waters from ponds in the copper mine district of Mynydd Parys (N Wales, UK). Consequently, these ponds constitute interesting natural laboratories for analysis of adaptation by microalgae to extremely stressful conditions. To distinguish between the pre-selective and post-selective origin of adaptation processes that allow the existence of microalgae in these ponds, a Luria-Delbruck fluctuation analysis was performed with the chlorophycean Dictyosphaerium chlorelloides isolated from non-acidic waters. In this analysis, natural Mynydd Parys pond water (MPW) was used as selective factor. Pre-selective, resistant D. chlorelloides cells appeared with a frequency of 1.6 x 10(-6) per cell per generation. MPW-resistant mutants, with a diminished Malthusian fitness, are maintained in non-extreme waters as the result of a balance between new MPW-resistant cells arising by mutation and MPW-resistant mutants eliminated by natural selection (equilibrium at ca. 19 MPW-resistant per 10(7) wild-type cells). We propose that the microalgae inhabiting these stressful ponds could be the descendents of chance mutants that arrived in the past or are even arriving at the present. (c) 2008 Elsevier B.V. All rights reserved.

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