Biology Reference
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Rasmussen, U., Johansson, C., Renglin, A., Peterson, C., and Bergman, B. (1996) A molecular characterization of the
Gunnera - Nostoc symbiosis: Comparison with the Rhizobium -plant and Agrobacterium -plant interactions. New Phytol
133: 391 - 398.
Ray, T. B., Mayne, B. C., Toia, R. E. Jr., and Peters, G. A. (1979) Azolla - Anabaena relationship VIII. Photosynthetic characterization
of the association and individual partners. Plant Physiol 64: 791 - 795.
Ray, T. B., Peters, G. A., Toia, R. E. Jr., and Mayne, B. C. (1978) Azolla - Anabaena relationship VII. Distribution of ammonia-
assimilating enzymes, protein, and chlorophyll between host and symbiont. Plant Physiol 62: 463 - 467.
Reinke, J. (1872) Parasitiscbe Anabaena in Wurzelen der Cycadeen. Gott Nachr 107.
Reiswig, H. M. (1971) Particle feeding in natural populations of three marine demosponges. Biol Bull 141: 568 - 591.
Reiswig, H. (1974) Water transport, respiration and energetics of three tropical marine sponges. J Exp Mar Biol Ecol 14:
231 - 249.
Renner, B., and Galloway, D. J. (1982) Photosymbiodemes in Pseudocyphellaria in New Zealand. Mycotaxon 16: 197 - 231.
Renzaglia, K. S. (1982) A comparative developmental investigation of the gametophyte generation in the Metzgeriales
(Hepatophyta). Bryophyt Bibl 24: 1 - 253.
Renzaglia, K. S., Duff, R. J., Nickrent, D. L., and Garbary, D. (2000) Vegetative and reproductive innovations of early land
plants: Implications for a unifi ed phylogeny. Trans R Soc B London 355: 769 - 793.
Rhoades, F. R. (1995) In: Lowman, N. D., and Nadkarni, N. M. (Eds.) Forest Canopies . Academic Press, Toronto, Ontario,
Canada. pp. 353 - 408.
Richardson, D. H. S., and Cameron, R. P. (2004) Cyanolichens: Their response to pollution and possible management strategies
for their conservation in northeastern North American Naturalist 11: 1 - 22.
Ridley, C. P., Faulkner, D. J., and Haygood, M. G. (2005) Investigation of Oscillatoria spongeliae -dominated bacterial communities
in four dictyoceratid sponges. Appl Environ Microbiol 71: 7366 - 7375.
Rikkinen, J. (2003) Ecological and evolutionary role of photobiont-mediated guilds in lichens. Symbiosis 34: 99 - 110.
Rikkinen J. (2004) Ordination analysis of tRNA Leu (UAA) intron sequences from lichen-forming Nostoc strains and other
cyanobacteria. Symbolae Botanicae Upsalienses 34: 377-391.
Rikkinen, J., and Virtanen, V. (2008) Genetic diversity in cyanobacterial symbionts of thalloid bryophytes. J Exp Bot 59:
1013 - 1021. doi: 10.1093/jxb/em003.
Rikkinen, J., Oksanen, I., and Lohtander, K. (2002) Lichen guilds share related cyanobacterial symbionts. Science 297: 357.
Rippka, R., Deruelles, J., Waterbury, J. B., Herdman, M., and Stanier, R. Y. (1979) Generic assignments, strain histories and
properties of pure cultures of cyanobacteria. J Gen Microbiol 111: 1 - 61.
Robertson, A. (1998) The boreal felt lichen, Erioderma pedicellatum (Hue) P. M. Jorg, in Newfoundland, Report to Department
of Forest Recources and Agrifoods, Government of Newfoundland and Labrador, St. Johns. pp. 63.
Rodgers, G. A., and Stewart, W. D. P. (1977) The cyanophyte-hepatic symbiosis. I. Morphology and physiology. New Phytol
78: 441 - 458.
Rose, F. (1976) Lichenological indicators of age and environmental continuity in woodlands. In: Brown, D. H., Hawksworth,
D. L., and Bailey, R. H. (Eds.) Lichenology: Progress and Problems . Academic Press, London, UK. pp. 279 - 307.
Rose, F. (1988) Phytogeographical and ecological aspects of Lobarian communities in Europe. Bot J Linn Soc 96: 69 - 79.
Rossbach, M., and Lambrecht, S. (2006) Lichens as biomonitors: Global, regional and local aspects. Croatica Chemica Acta 79:
119 - 124.
Rouhiainen, L., Sivonen, K., Buikema, W. J., and Haselkorn, R. (1995) Characterization of toxin-producing cyanobacteria by
using an oligonucleotide probe containing a tandemly repeated heptamer. J Bacteriol 177: 6021 - 6026.
Rowan, R. (1998) Diversity and ecology of zooxanthellae on coral reefs. J Phycol 34: 407 - 417.
Rudi, K., and Jakobsen, K. S. (1997) Cyanobacterial tRNA Leu (UAA) group I introns have polyphyletic origin. FEMS Microbiol
Lett 156: 293 - 298.
Rudi, K., and Jakobsen, K. S. (1999) Complex evolutionary patterns of tRNA Leu (UAA) group I introns in cyanobacterial
radiation. J Bacteriol 181: 3445 - 3451.
Rudi, K., Fossheim, T., and Jakobsen, K. S. (2002) Nested evolution of a tRNA Leu (UAA) group I intron by both horizantal
intron transfer and recombination of the entire tRNA locus. J Bacteriol 184: 666 - 671.
Rützler, K. (1985) Association between Caribbean sponges and photosynthetic organisms. In : Rützler, K. (Ed.) New Perspectives
in Sponge Biology , Smithsonian Institution Press, Washington, D. C. USA. pp. 455 - 466.
Sacristán, M., Millanes, A. M., Legaz, M. E., and Vicente, C. (2006) A lichen lectin specifi cally binds to the α-1,4-polygalactoside
moiety of urease located in the cell wall of homologous algae. Plant Signal Behav 1: 23 - 27.
Sacristán, M., Millanes, A. M., Fontaniella, B., Legaz, M. E., and Vicente, C. (2008) A fi rst attempt to elucidate amino acid
sequence of some lichen lectins. Phyton (Austria) 77: 253 - 262.
Sacristán, M., Vivas, M., Millanes, A. M., Fontaniella, B., Vicente, C., and Legaz, M. E. (2007) The recognition pattern of green
algae by lichenized fungi can be extended to lichens containing cyanobacterium as photobiont. In: Mendez-Vilas, A.
(Ed.) Communicating Current Research and Educational Topics and Trends in Applied Microbiology . Formatex Research Center,
Badajoz, Spain pp. 213 - 219.
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