Enzyme-Linked Immunofiltration Assay To Estimate Attachment of Thiobacilli to Pyrite

Author:

Dziurla Marie-Antoinette1,Achouak Wafa1,Lam Bach-Tuyet1,Heulin Thierry1,Berthelin Jacques1

Affiliation:

1. Centre de Pédologie Biologique du CNRS, UPR 6831 Associée à l’Université Henri Poincaré (Nancy I) B.P. 5, 54501 Vandoeuvre-les-Nancy Cedex, France

Abstract

ABSTRACT An enzyme-linked immunofiltration assay (ELIFA) has been developed in order to estimate directly and specifically Thiobacillus ferrooxidans attachment on sulfide minerals. This method derives from the enzyme-linked immunosorbent assay but is performed on filtration membranes which allow the retention of mineral particles for a subsequent immunoenzymatic reaction in microtiter plates. The polyclonal antiserum used in this study was raised against T. ferrooxidans DSM 583 and recognized cell surface antigens present on bacteria belonging to the genus Thiobacillus . This antiserum and the ELIFA allowed the direct quantification of attached bacteria with high sensitivity (10 4 bacteria were detected per well of the microtiter plate). The mean value of bacterial attachment has been estimated to be about 10 5 bacteria mg −1 of pyrite at a particle size of 56 to 65 μm. The geometric coverage ratio of pyrite by T. ferrooxidans ranged from 0.25 to 2.25%. This suggests an attachment of T. ferrooxidans on the pyrite surface to well-defined limited sites with specific electrochemical or surface properties. ELIFA was shown to be compatible with the measurement of variable levels of adhesion. Therefore, this method may be used to establish adhesion isotherms of T. ferrooxidans on various sulfide minerals exhibiting different physicochemical properties in order to understand the mechanisms of bacterial interaction with mineral surfaces.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference33 articles.

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3. Isolation and study of two strains of Leptospirillum-like bacteria from a natural mixed population cultured on a cobaltiferous pyrite substrate.;Battaglia F.;Antonie Leeuwenhoek,1994

4. Dziurla M. A. Ph.D. thesis. 1995 University of Nancy I Nancy France

5. Ehrlich H. L. Biogenesis and biodegradation of sulfide minerals on the Earth’s surface Geomicrobiology 3rd ed. Ehrlich H. L. 1996 578 614 Marcel Dekker Inc. New York N.Y

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