Fungal Toxicity of Mobilized Soil Aluminum and Manganese

Author:

Firestone M. K.1,Killham K.1,McColl J. G.1

Affiliation:

1. Department of Plant and Soil Biology, University of California, Berkeley, California 94720

Abstract

Inhibition of Aspergillus flavus growth from spores was used as a simple bioassay for toxicity of Al and Mn mobilized by simulated acid precipitation. Al was identified as being toxic in soil leachates resulting from acid inputs of pH less than 2.7. Inhibition by Mn was not detectable. The addition of fluoride significantly reduced Al toxicity, suggesting that biotoxicity of Al is partially dependent on the anionic composition of the soil solution.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference12 articles.

1. Baker J. B. and C. L. Schofield. 1980. Aluminum toxicity to fish as related to acid precipitation and Adirondack surface water quality p. 292-293. In D. Drablos and H. Tollan (ed.) Ecological impact of acid precipitation. Proceedings of the International Conference on the Ecological Impact of Acid Precipitation. SNSF Project Oslo-Aas Norway.

2. Bohn H. B. McNeal and G. O'Connor. 1979. Soil chemistry. John Wiley & Sons Inc. New York. NOTES 761

3. The physiology of metal toxicity in plants. Annu;Foy C. D.;Rev. Plant Physiol.,1978

4. Germination and growth of Glomus caledonius spores: the effects of inhibitors and nutrients;Hepper C. M.;Soil Biol. Biochem.,1979

5. Effects of calcium, manganese, and aluminum on growth of Rhizobia in acid media. Soil Sci;Keyser H. H.;Soc. Am. J.,1979

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