Comparison of DNA restriction fragment length polymorphisms of Nostoc strains in and from cycads |
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Authors: | Peter Lindblad Robert Haselkorn Birgitta Bergman Sandra A. Nierzwicki-Bauer |
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Affiliation: | (1) Department of Physiological Botany, University of Uppsala, Box 540, S-751 21 Uppsala, Sweden;(2) Department of Molecular Genetics and Cell Biology, University of Chicago, 60637 Chicago, IL, USA;(3) Plant Science Group, Department of Biology, Rensselaer Polytechnic Institute, 12181 Troy, NY, USA |
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Abstract: | DNA was prepared from cyanobacteria freshly isolated from coralloid roots of natural populations of five cycad species: Ceratozamia mexicana mexicana (Mexico), C. mexicana robusta (Mexico), Dioon spinulosum (Mexico), Zamia furfuraceae (Mexico) and Z. skinneri (Costa Rica). Using the Southern blot technique and cloned Anabaena PCC 7120 nifK and glnA genes as probes, restriction fragment length polymorphisms of these cyanobacterial symbionts were compared. The five cyanobacterial preparations showed differences in the sizes of their DNA fragments hybridizing with both probes, indicating that different cyanobacterial species and/or strains were in the symbiotic associations. On the other hand, a similar comparison of cyanobacteria freshly collected from a single Encephalartos altensteinii coralloid root and from three independently subcultured isolates from the same coralloid root revealed that these were likely to be one and the same organism. Moreover, the complexity of restriction patterns shows that a mixture of Nostoc strains can associate with a single cycad species although a single cyanobacterial strain can predominate in the root of a single cycad plant. Thus, a wide range of Nostoc strains appear to associate with the coralloid roots of cycads.Non-standard abbreviations bp base pairs - kbp kilobase pairs - RFLP's restriction fragment length polymorphisms |
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Keywords: | Cycad DNA restriction fragment length polymorphisms glnA nifK Nostoc Specificity Symbiosis |
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