Control of Aliivibrio fischeri Luminescence and Decrease in Bioluminescence by Fungicides
Author:
Affiliation:
1. Graduate School of Environment Engineering, University of Kitakyushu
2. National Institute of Technology, Oita College
3. Faculty of Environment Engineering, University of Kitakyushu
Publisher
The Society for Antibacterial and Antifungal Agents, Japan
Subject
Public Health, Environmental and Occupational Health,Applied Microbiology and Biotechnology
Link
https://www.jstage.jst.go.jp/article/bio/23/3/23_85/_pdf
Reference55 articles.
1. Adar, Y. Y., Simaan, M., Ulitzur, S. (1992) Formation of the LuxR protein in the Vibrio fischeri lux system is controlled by HtpR through the GroESL proteins. J. Bacteriol., 174, 7138-7143.
2. Arakawa, Y., Nonomura, M., Kurita, K., and Sugimori, H. (2007) Simple toxicity testing method using oceanic luminescence bacteria (in Japanese) . Bulletin of TIRI, no.2, 110-111.
3. Baumann, P., Baumann, L., and Reichelt, J. L. (1973) Taxonomy of marine bacteria Beneckea parahaemolytica and Beneckea alginilytica. J. Bacteriol., 113, 1144-1155.
4. Berglind, R., Leffler, P., and Sjöström, M. (2010) Interactions between pH, potassium, calcium, bromide, and phenol and their effects on the bioluminescence of Vibrio fischeri. J. Toxicol. Environ. Health, Part A, 73, 1102-1112.
5. Bjǿrnlund, L., Ekelund, F., Christensen, S., Jacobsen, C. S., Krogh, P. H., Johnsen, K. (2000) Interactions between saprotrophic fungi, bacteria and protozoa on decomposing wheat roots in soil influenced by the fungicide fenpropimorph (Corbel®) : a field study. Soil Biol. Biochem., 32, 967-975.
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